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Bioinformatic prediction of potential T cell epitopes for SARS-Cov-2




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FDA-approved disulfiram inhibits pyroptosis by blocking gasdermin D pore formation




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Critical role of water in the formation of continental crust




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Podcast: Camille François on COVID-19 and the ABCs of disinformation

Camille François is a leading investigator of disinformation campaigns and author of the well-known "ABC" or "Actor-Behavior-Content" disinformation framework, which has informed how many of the biggest tech companies tackle disinformation on their platforms. Here, she speaks with Lawfare's Quinta Jurecic and Evelyn Douek for that site's series on disinformation, "Arbiters of Truth." Earlier this…

       




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COVID-19 misinformation is a crisis of content mediation

Amid a catastrophe, new information is often revealed at a faster pace than leaders can manage it, experts can analyze it, and the public can integrate it. In the case of the COVID-19 pandemic, the resulting lag in making sense of the crisis has had a profound impact. Public health authorities have warned of the…

       




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Trends in online disinformation campaigns

Ben Nimmo, director of investigations at Graphika, discusses two main trends in online disinformation campaigns: the decline of large scale, state-sponsored operations and the rise of small scale, homegrown copycats.

       




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HRT slammed for 'misleading information' by supplier

One of HRT's suppliers has accused the team of providing "misleading information" and claims the team went in to liquidation in early November




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The Economic Gains of Cloud Computing: An Address by Federal Chief Information Officer Vivek Kundra

Event Information

April 7, 2010
9:00 AM - 11:00 AM EDT

Falk Auditorium
The Brookings Institution
1775 Massachusetts Ave., NW
Washington, DC

Register for the Event

Cloud computing services over the Internet have the potential to spur a significant increase in government efficiency and decrease technology costs, as well as to create incentives and online platforms for innovation. Adoption of cloud computing technologies could lead to new, efficient ways of governing.

On April 7, the Brookings Institution hosted a policy forum that examines the economic benefits of cloud computing for local, state, and federal government. Federal Chief Information Officer Vivek Kundra delivered a keynote address on the role of the government in developing and promoting cloud computing. Brookings Vice President Darrell West moderated a panel of experts and detailed the findings in his paper, "Saving Money through Cloud Computing," which analyzes its governmental cost-savings potential.

After the program, panelists took audience questions.

Video

Audio

Transcript

Event Materials

     
 
 




format

COVID-19 misinformation is a crisis of content mediation

Amid a catastrophe, new information is often revealed at a faster pace than leaders can manage it, experts can analyze it, and the public can integrate it. In the case of the COVID-19 pandemic, the resulting lag in making sense of the crisis has had a profound impact. Public health authorities have warned of the…

       




format

Trends in online disinformation campaigns

Ben Nimmo, director of investigations at Graphika, discusses two main trends in online disinformation campaigns: the decline of large scale, state-sponsored operations and the rise of small scale, homegrown copycats.

       




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China steps up its information war in Taiwan

       




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Trends in online disinformation campaigns

Ben Nimmo, director of investigations at Graphika, discusses two main trends in online disinformation campaigns: the decline of large scale, state-sponsored operations and the rise of small scale, homegrown copycats.

       




format

COVID-19 misinformation is a crisis of content mediation

Amid a catastrophe, new information is often revealed at a faster pace than leaders can manage it, experts can analyze it, and the public can integrate it. In the case of the COVID-19 pandemic, the resulting lag in making sense of the crisis has had a profound impact. Public health authorities have warned of the…

       




format

Trends in online disinformation campaigns

Ben Nimmo, director of investigations at Graphika, discusses two main trends in online disinformation campaigns: the decline of large scale, state-sponsored operations and the rise of small scale, homegrown copycats.

       




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Does Access to Information Technology Make People Happier?


Access to information and communication technology through cell phones, the internet, and electronic media has increased exponentially around the world. While a few decades ago cell phones were a luxury good in wealthy countries, our data show that today over half of respondents in Sub-Saharan Africa and about 80 percent of those in Latin America and Southeast Asia have access to cell phones. In addition to making phone calls and text messaging, cell phones are used for activities such as accessing the internet and social network sites. Meanwhile, the launch of mobile banking gives access to these technologies an entirely new dimension, providing access to financial services in addition to information and communication technology. It is estimated that in Kenya, where the mobile banking “revolution” originated, there are some 18 million mobile money users (roughly 75 percent of all adults). Given the expanding role of information technology in today’s global economy, in this paper we explore whether this new access also enhances well-being.

Neither of the authors is an expert on information technology. The real and potential effect of information technology on productivity, development, and other economic outcomes has been studied extensively by those who are. Building on past research on the economics of well-being and on the application of the well-being metrics to this particular question, we hope to contribute an understanding of how the changes brought about by information and communication technology affect well-being in general, including its non-income dimensions.

Our study has two related objectives. The first is to understand the effects of the worldwide increase in communications capacity and access to information technology on human well-being. The second is to contribute to our more general understanding of the relationship between well-being and capabilities and agency. Cell phones and information technology are giving people around the world – and particularly the poor – new capabilities for making financial transactions and accessing other services which were previously unavailable to them. We explore the extent to which the agency effect of having access to these capabilities manifests itself through both hedonic and evaluative aspects of well-being.

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Image Source: © Adriane Ohanesian / Reuters
     
 
 




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Podcast: Camille François on COVID-19 and the ABCs of disinformation

Camille François is a leading investigator of disinformation campaigns and author of the well-known "ABC" or "Actor-Behavior-Content" disinformation framework, which has informed how many of the biggest tech companies tackle disinformation on their platforms. Here, she speaks with Lawfare's Quinta Jurecic and Evelyn Douek for that site's series on disinformation, "Arbiters of Truth." Earlier this…

       




format

COVID-19 misinformation is a crisis of content mediation

Amid a catastrophe, new information is often revealed at a faster pace than leaders can manage it, experts can analyze it, and the public can integrate it. In the case of the COVID-19 pandemic, the resulting lag in making sense of the crisis has had a profound impact. Public health authorities have warned of the…

       




format

Trends in online disinformation campaigns

Ben Nimmo, director of investigations at Graphika, discusses two main trends in online disinformation campaigns: the decline of large scale, state-sponsored operations and the rise of small scale, homegrown copycats.

       




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Encouraging transformations in Central Asia

Nearly 30 years ago, the countries of Central Asia emerged from decades of Soviet domination. The rapid disintegration of production and trade linkages established in the Soviet Union led to deep recessions, with per capita incomes falling to about half of their pre-independence levels by the middle of the 1990s. In 1997, the private sector…

       




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Demographic Transformation in the Seattle Metropolitan Area

Bruce Katz presented a speech on demographic shifts in the country's largest 100 metropolitan areas and how various leaders, including those in Seattle, will meet the policy challenges of a changing nation.

Introduction:
Today, I would like to present our findings from a major research initiative at the Metropolitan Policy Program, which is accompanied by an interactive website: the State of Metropolitan America. Our report examines the demographic trends that have affected the top 100 metropolitan areas so far this decade, covering the year 2000 through the year 2008. We find a nation in demographic transformation along five dimensions of change.

Watch video of the speech on the Seattle Channel »

We are a growing nation.  Our population exceeded 300 million back in 2006 and we are now on our way to hit 350 million around 2025.

We are diversifying.  An incredible 83 percent of our growth this decade was driven by racial and ethnic minorities. 

We are aging.  The number of seniors and boomers exceeded 100 million this decade.

We are selectively educating. Whites and Asians are now more than twice as likely to hold a bachelors degree as blacks and Hispanics.

We are a nation divided by income. Low-wage workers saw hourly earnings decline by 8 percent this decade; high wage workers saw an increase of 3 percent.  

With this background, I will make three main points today.

First, America’s top 100 metropolitan areas are on the front lines of our nation’s demographic transformation.  The trends I’ve identified—growth, diversity, aging, educational disparities, income inequities—are happening at a faster pace, a greater scale and a higher level of intensity in our major metropolitan areas.  

Second, the shape and scale of demographic transformation is profoundly uneven across metropolitan America.  This variation only partially reflects the traditional division of our country into regions like New England or the Middle Atlantic or the Mountain West. Rather a new “Metro Map” of the nation is emerging that unites far flung communities by their demographic realities rather than their physical proximity. 

Finally, demographic transformation requires action at both the macro and metro scale.  The federal government and the states need to lead where they must to address the super-sized challenges wrought by fast change.  Metropolitan areas must innovate where they should in ways that are tailored to their distinct challenges and opportunities.  And the geography of transformation at the metro scale requires new institutions and ways of governing.

These policy and institutional changes will not be easy.

But let’s remember one thing.  In the global context, the United States is a demographically blessed nation.  Established competitors like Japan, Britain and Germany are either growing slowly or actually declining; rising nations like China remain relatively homogenous. 

In a fiercely competitive world, our growth and diversity may be America’s ace in the hole.

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Publication: Arctic Club Hotel
     
 
 




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From rescue to recovery, to transformation and growth: Building a better world after COVID-19

       




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From rescue to recovery, to transformation and growth: Building a better world after COVID-19

       




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Convergence or Divergence: Discussing Structural Transformation in Africa during the G-20


The G-20 Summit begins in Brisbane, Australia this Saturday, November 15. Leaders are descending on the city to tackle the biggest economic challenges facing the planet. A major theme of the discussions will likely be convergence—the rapid approach of average incomes in low- and middle-income countries towards those in advanced economies—and its sustainability. In a recent brief in the Brookings Global Think Tank 20 series, I explore this issue in the sub-Saharan African context, examining what has been holding the region back, how Africa might reach the rapid convergence seen by other emerging economies, and if and how convergence might be sustained. For my full brief, see here.

As most know, despite the “growth miracles” happening on the continent, sub-Saharan Africa still has a long way to go. Africa’s economic growth started much later and has gone much slower than the rest of the developing world; thus its per capita income gap against advanced economies still remains quite large. In fact, Africa hasn’t even converged with other emerging economies (see Figure 1). 

In addition to slow growth, Africa faces many, many challenges: Conflict-ridden countries still face a declining income per capita, and inequality is rampant. While Africa’s poverty rate is dropping, its share in global poverty is not: In 1990, 56 percent of Africans lived on under $1.25 a day, meaning that they represented 15 percent of those in poverty worldwide. Over the next 20 years, the region’s poverty rate dropped to 48 percent, but its share of global poverty doubled. At this rate, many predict that by 2030 Africa’s poverty rate will fall to 24 percent, but represent 82 percent of the world’s poor (Chandy et al., 2013). 

Of the utmost importance for convergence, though, is the issue of structural transformation in the region. If sub-Saharan Africa can reduce its reliance on unproductive and volatile sectors, it will build a foundation on which economic growth—and convergence—can be sustained.

Current African Economies: Agriculture, Natural Resources and Services

Currently, African economies are characterized by a reliance on natural resources, agriculture and a budding services sector. Natural resources are, and will likely continue to be, major drivers of Africa’s economic growth: About 20 African countries derived more than 25 percent of their total merchandise exports in 2000-2011 from them. Unfortunately, this dependence on natural resources comes hand-in-hand with challenges such as financial volatility, rent-seeking behavior, and a loss of competitiveness, among many others—making a turn away from them necessary for long-term, sustainable growth. Similarly, most African economies depend heavily on the low-yield agriculture sector—its least productive sector and with the lowest income and consumption levels.

While labor has been moving out of the agriculture sector, it is moving into the services sector. From 2000-2010, the agriculture labor force share fell by about 10 percent while services grew by 8 percent (McMillan and Harttgen, 2014). While much of the movement into the services industry has been into productive areas such as telecommunications and banking, most service sector jobs in sub-Saharan Africa are informal.  Although informal activities offer earning opportunities to many people, they are often unstable and it is far from clear that they can be an engine of sustainable and inclusive high economic growth. In addition, growth in the services sector overall has historically not shown the economic returns that industry has.

If policymakers can enhance productivity in the services sector, then growth could take off even more rapidly, but until then, the highly productive manufacturing sector will be the key to Africa’s convergence. (For more on this, see the attached PowerPoint presentation.)

The Missing Piece: African Industry

Industrialization in Africa is low: Manufacturing–the driver of growth in Asia—employs less than 8 percent of the workforce and makes up only 10 percent of GDP on the continent (Rodrik, 2014). In comparison to the 8 percent growth in the services sector from 2000-2010, manufacturing saw only 2 percent growth (McMillan and Harttgen, 2014). In addition, the region’s manufacturing sector is dominated mostly by small and informal (and thus less productive) firms. Since the research has shown that industry was key to the explosive and continued growth in Asia and Europe, without concentration on or support of the manufacturing sector, African economies are not likely to replicate those convergence dynamics (Rodrik, 2014). Thus, Africa’s slow pace of industrialization means that, in addition to its late start time and its past sluggish growth, the region has another obstacle towards convergence.

There is hope, however; there are already hints that structural transformation might be happening. The recent rebasing of Nigeria’s economy revealed some important new trends. There, the contribution from oil and gas to GDP fell from 32 to 14 percent, and agriculture from 35 to 22 percent. At the same time, the telecommunication’s contribution sector rose from 0.9 to 9 percent, and manufacturing from 2 to 7 percent.

Achieving a successful economic transformation will help capitalize on improved growth fundamentals and achieve high and sustained per capita growth rates. However, for such a process to yield lasting benefits, it is crucial to better understand the ongoing structural changes taking place in Africa. This is an important task for economists studying Africa and, in addition to achieving a “data revolution,” both meta-analysis and case study methods can be useful complements to the current body of research on the continent.

References

Chandy, Laurence, Natasha Ledlie, and Veronika Penciakova. 2013. “Africa’s Challenge to End Extreme Poverty by 2030: Too Slow or Too Far Behind?” The Brookings Institution, Washington D.C. April 2013, http://www.brookings.edu/blogs/up-front/posts/2013/05/29-africachallenge-end-extreme-poverty-2030-chandy

McMillan, Margaret and Ken Harttgen. 2014. “What is Driving the Africa Growth Miracle?” NBER Working Paper No. 20077, April. http://www.nber.org/papers/w20077

Rodrik, Dani. 2014. “An African Growth Miracle?” NBER Working Paper No. 20188, June. http://www.nber.org/papers/w20188


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What genetic information can tell us about economic inequality


Income and wealth inequality in the U.S. is a stark reality.  Research from a variety of fields demonstrates that children born into poor families tend to end up less educated, less healthy, more prone to contact with the police, and less likely to accumulate wealth over a lifetime.  In contrast, children born into well-off families tend to exhibit better outcomes on all of these dimensions.

How should social scientists and policymakers understand and address intergenerational mobility in the U.S.? This question is difficult to answer—and highly politicized.  To start with, there are several possible mechanisms driving high intergenerational persistence of economic outcomes.  These are often characterized as factors related either to “nurture” or “nature.” 

The “nurture” hypothesis asserts that poor parents lack critical resources such as wealth or information.  Such parents may therefore find it difficult to make the education and time investments that would promote better economic outcomes for their children.  If this is true, then children born into poor families never reach their full potential because of a lack of household resources. 

A second possible mechanism is often referred to as the “nature” hypothesis.  Economically successful parents might be more likely to have successful children.  Such an account hinges on the idea that there are heritable biological traits or abilities that more successful parents “pass on” to their children.

To complicate the matter further, the mechanisms of nature and nurture almost certainly operate at the same time.  Moreover, it is likely that abilities and investments interact in complicated ways. For example, a particular investment might do more to improve the outcomes of a lower-ability child than a higher-ability child, or vice versa.  Understanding this process, and how it affects intergenerational mobility, is notoriously difficult.  However, greater clarity is precisely what is needed to guide effective policy. 

If a lack of investment is the dominant mechanism explaining intergenerational persistence in economic outcomes, then we as a society may be wasting human potential.  Policies correcting under-investments in human capital could therefore be justified as economically efficient. In contrast, if the intergenerational transmission of ability plays a role, then investments in poor children’s human capital may not be enough.  To clarify, it is critical to state that the distinction we make here between “high-ability” and “low-ability” individuals should not be interpreted as a claim that some people are naturally or biologically superior to others.  We use “ability” as shorthand to describe those traits that are rewarded in the existing labor market.  Even if these abilities are linked to heritable biological factors, this does not mean that their impact on life outcomes is immutable or fixed.  Modifying environments could substantially affect genetic disparities. The case of vision and eyeglasses offer one classic example.  There may well be biological factors that explain variation in eyesight “ability,” but these biological differences will matter more or less for life outcomes depending on the availability of glasses and other medical interventions.  In short, it is very possible that the consequences of biological differences can be moderated by appropriate changes in the environment.     

Until now, researchers have typically used variables such as cognitive test scores to measure ability endowments related to human capital.  Yet, these traditional measures are subject to the critique that they are the products of earlier investments in human capital. This makes it difficult to distinguish between the “nature” and “nurture” hypotheses using such data.  Two individuals with similar ability endowments but different levels of household resources are likely to exhibit different cognitive test scores, for example. 

Using genetic information to measure ability endowments can help us better understand the intergenerational transmission of human capital.  As a measure, genetic information has a clear advantage over cognitive test scores because it is fixed at conception. Advances in measuring differences in DNA across individuals, together with very recent advances in behavioral genetics research, now make it possible to link genetic differences across people to behavioral traits.  These new discoveries have even extended to educational attainment, which was once thought to be too complicated and removed from direct biological processes for genetic analysis.

In a recent research paper, we use genetic information to better understand the nature of intergenerational mobility.  We follow the cutting edge in behavioral genetics research, which guides us in computing a type of genetic “score” for any individual.  We compute this so-called “polygenic score” for each person in a sample of over 8,000 individuals from the Health and Retirement Study (HRS). The score, which appears to be related to cognition, personality, and facility with learning, has some predictive power for educational attainment. In particular, it explains between 3.2 percent and 6.6 percent of the variation across individuals (depending on the specification). Thus, knowing the exact value of an individual’s score will tell you very little about that person (over 90 percent of the variation is explained by other factors).  However, the average relationship in the population between the score and human capital outcomes can offer some important lessons.  

Using the polygenic score, we believe we can gain new insights into how ability endowments interact with an individual’s environment to generate economic outcomes.  There is a long-standing debate in the economics literature about how ability and investments interact.  One idea is that both ability and investments are needed for success, i.e., that they complement one another. Though our findings show evidence of this type of interaction, the story that emerges from our analysis is somewhat more nuanced.  We show that ability and the environment (measured by parents’ socioeconomic status or SES) complement one another for generating higher degrees, such as college completion, but substitute for one another in generating lower levels of educational attainment such as a high school degree.  In other words, our findings suggest that ability or being born into a well-off family are enough to get an individual through high school.  For college, however, ability and a well-off family are important predictors of success.

"In other words, our findings suggest that ability or being born into a well-off family are enough to get an individual through high school. For college, however, ability and a well-off family are important predictors of success."

Another set of results concerns the wages of high-ability individuals.  We show that individuals who completed college earned substantial returns on their ability starting in the early 2000s.  Individuals without a college degree did not. The post-2000 rise in returns may be driven in part by “skill-biased technological change.”   As new technologies are adopted in the workplace, the people who benefit most are those with the skills required to adapt to and master new ways of working.  It is not difficult to imagine that people with genetic variants associated with higher education may have found it easier to adapt to computers and other new technologies.  However, we also find that a higher polygenic score was not helpful for individuals who did not complete college, likely because the lack of a college degree shut them out of careers that would have allowed them to creatively use new technologies.  This is a troubling finding given the role of childhood SES in predicting college completion.  It means that poor children with high abilities are less likely to attend college and, subsequently, are less likely to benefit from their ability.  Again, these findings suggest wasted human potential.

Using genetic data to compare individuals from different socioeconomic backgrounds, we also find that children from lower SES backgrounds systematically acquire less education when compared to similarly capable individuals from high SES backgrounds.  Among other things, this suggests that access to education may be an important obstacle, even for the highest ability children.  Our analysis offers some suggestive evidence regarding which environments are especially harmful. For example, acute negative events like physical abuse in childhood can lead to a dramatic loss of economic potential—reducing financial wealth in late adulthood for the highest ability individuals by over 50 percent.

Of course, one must be very cautious when interpreting any genetic association.  In particular, it is important to think carefully about correlation versus causality.  The same parents that pass along genetic material predicting educational attainment may also be more likely to have the resources to invest in their children.  Still, since we base our comparisons on individuals from different socioeconomic backgrounds, but with similar polygenic scores, we offer evidence that economic disparities are not solely due to nature.

In summary, recent advances in behavioral genetics have identified specific genetic variants that predict educational attainment.  The fact that such genes exist confirms previous work (largely using data on twins) showing that “nature” matters for economic outcomes.  Our research demonstrates that “nurture” matters, too.  Perhaps more importantly, our research demonstrates that the roles of “nature” and “nurture” are intertwined and that understanding the role of “nurture” (in the form of human capital investments over the life-cycle) is key to understanding how “nature” (in the form of ability endowments) operates.  In particular, we show that similarly apt individuals with different childhood SES see very different returns to their ability.  This means that policies helping children born into disadvantaged circumstances may be justified not solely for ethical reasons rooted in social justice, but perhaps also as an economically efficient way to mitigate wasted human potential.

Finally, we believe that continued progress in understanding the mechanisms underlying how “nature” affects economic outcomes will eventually lead to policies that help people who are born with different abilities.  For example, our findings suggest that some individuals had more difficulty than others in adapting to new workplace technologies, such as computers. With a fuller understanding of this process, policymakers may be able to devise better training programs or improved school curricula that help individuals of all levels of ability to better respond to a changing technological environment.  In other words we believe that our research shows that learning more about the specifics of “nature” may help us to better “nurture” all individuals in society to help them to reach their full potential.      

Editor’s note: The authors contributed equally to this posting and to the research upon which the posting is based. They are listed alphabetically by last name.

Authors

  • Nicholas Papageorge
  • Kevin Thom
Image Source: Kim Kyung Hoon / Reuters
      
 
 




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Hubs of Transformation: Leveraging the Great Lakes Research Complex for Energy Innovation

Policy Brief #173

America needs to transform its energy system, and the Great Lakes region (including Minnesota, Wisconsin, Iowa, Missouri, Illinois, Indiana, Ohio, Michigan, Kentucky, West Virginia, western Pennsylvania and western New York) possesses many of the needed innovation assets. For that reason, the federal government should leverage this troubled region’s research and engineering strengths by launching a region-wide network of collaborative, high intensity energy research and innovation centers.

Currently, U.S. energy innovation efforts remain insufficient to ensure the development and deployment of clean energy technologies and processes. Such deployment is impeded by multiple market problems that lead private firms to under-invest and to focus on short-term, low-risk research and product development. Federal energy efforts—let alone state and local ones—remain too small and too poorly organized to deliver the needed breakthroughs. A new approach is essential.


RECOMMENDATIONS
  The federal government should systematically accelerate national clean energy innovation by launching a series of “themed” research and commercialization centers strategically situated to draw on the Midwest’s rich complex of strong public universities, national and corporate research laboratories, and top-flight science and engineering talent. Organized around existing capacities in a hub-spoke structure that links fundamental science with innovation and commercialization, these research centers would engage universities, industries and labs to work on specific issues that would enable rapid deployment of new technologies to the marketplace. Along the way, they might well begin to transform a struggling region’s ailing economy. Roughly six compelling innovation centers could reasonably be organized in the Great Lakes states with total annual funding between $1 billion and $2 billion.

To achieve this broad goal, the federal government should:

  • Increase energy research funding overall.
  • Adopt more comprehensive approaches to research and development (R&D) that address and link multiple aspects of a specific problem, such as transportation.
  • Leverage existing regional research, workforce, entrepreneurial and industrial assets.

 

 

America needs to transform its energy system in order to create a more competitive “next economy” that is at once export-oriented, lower-carbon and innovation-driven. Meanwhile, the Great Lakes region possesses what may be the nation’s richest complex of innovation strengths—research universities, national and corporate research labs, and top-flight science and engineering talent. Given those realities, a partnership should be forged between the nation’s needs and a struggling region’s assets.

To that end, we propose that the federal government launch a distributed network of federally funded, commercialization-oriented, sustainable energy research and innovation centers, to be located in the Great Lakes region. These regional centers would combine aspects of the “discovery innovation institutes” proposed by the National Academy of Engineering and the Metropolitan Policy Program (as articulated in “Energy Discovery-Innovation Institutes: A Step toward America’s Energy Sustainability”); the “energy innovation hubs” created by the Department of Energy (DOE); and the agricultural experiment station/cooperative extension model of the land-grant universities.

In the spirit of the earlier land-grant paradigm, this network would involve the region’s research universities and national labs and engage strong participation by industry, entrepreneurs and investors, as well as by state and local governments. In response to local needs and capacities, each center could have a different theme, though all would conduct the kinds of focused translational research necessary to move fundamental scientific discoveries toward commercialization and deployment.

The impact could be transformational. If built out, university-industry-government partnerships would emerge at an unprecedented scale. At a minimum, populating auto country with an array of breakthrough-seeking, high-intensity research centers would stage a useful experiment in linking national leadership and local capacities to lead the region—and the nation—toward a more prosperous future.


The Great Lakes Energy System: Predicaments and Possibilities

The Great Lakes region lies at the center of the nation’s industrial and energy system trials and possibilities. No region has suffered more from the struggles of America’s manufacturing sector and faltering auto and steel industries, as indicated in a new Metropolitan Policy Program report entitled “The Next Economy: Rebuilding Auto Communities and Older Industrial Metros in the Great Lakes Region.”

The region also lies at ground zero of the nation’s need to “green” U.S. industry to boost national economic competitiveness, tackle climate change and improve energy security. Heavily invested in manufacturing metals, chemicals, glass and automobiles, as well as in petroleum refining, the Great Lakes states account for nearly one-third of all U.S. industrial carbon emissions.

And yet, the Great Lakes region possesses significant assets and capacities that hold promise for regional renewal as the “next economy” comes into view. The Midwest’s manufacturing communities retain the strong educational and medical institutions, advanced manufacturing prowess, skills base and other assets essential to helping the nation move toward and successfully compete in the 21st century’s export-oriented, lower-carbon, innovation-fueled economy.

Most notably, the region has an impressive array of innovation-related strengths in the one field essential to our nation’s future—energy. These include:

  • Recognized leadership in R&D. The Great Lakes region accounts for 33 percent of all academic and 30 percent of all industry R&D performed in the United States.
  • Strength and specialization in energy, science and engineering. In FY 2006, the Department of Energy sent 26 percent of its federal R&D obligations to the Great Lakes states and is the second largest federal funder of industrial R&D in the region. Also in 2006, the National Science Foundation sent 30 percent of its R&D obligations there.
  • Existing clean energy research investments and assets. The University of Illinois is a key research partner in the BP-funded, $500 million Energy Biosciences Institute, which aims to prototype new plants as alternative fuel sources. Toledo already boasts a growing solar industry cluster; Dow Corning’s Michigan facilities produce leading silicon and silicone-based technology innovations; and the Solar Energy Laboratory at the University of Wisconsin-Madison, the oldest of its kind in the world, has significant proficiency in developing practical uses for solar energy. Finally, the region is home to the largest U.S. nuclear utility (Exelon), the nation’s largest concentration of nuclear plants and some of the country’s leading university programs in nuclear engineering.
  • Industry potential relevant to clean energy. Given their existing technological specializations, Midwestern industries have the potential to excel in the research and manufacture of sophisticated components required for clean energy, such as those used in advanced nuclear technologies, precision wind turbines and complex photovoltaics.
  • Breadth in energy innovation endeavors and resources. In addition to universities and industry, the region’s research laboratories specialize in areas of great relevance to our national energy challenges, including the work on energy storage systems and fuel and engine efficiency taking place at Argonne National Laboratory, research in high-energy physics at the Fermi National Accelerator Laboratory, and the work on bioenergy feedstocks, processing technologies and fuels occurring at the DOE-funded Great Lakes BioEnergy Research Center (GLBRC).
  • Regional culture of collaboration. Finally, the universities of the Great Lakes area have a strong history of collaboration both among themselves and with industry, given their origins in the federal land-grant compact of market and social engagement. GLBRC—one of the nation’s three competitively awarded DOE Bioenergy Centers—epitomizes the region’s ability to align academia, industry and government around a single mission. Another example is the NSF-supported Blue Waters Project. This partnership between IBM and the universities and research institutions in the Great Lakes Consortium for Petascale Computation is building the world’s fastest computer for scientific work—a critical tool for advancing smart energy grids and transportation systems.

In short, the Great Lakes states and metropolitan areas—economically troubled and carbon-reliant as they are—have capabilities that could contribute to their own transformation and that of the nation, if the right policies and investments were in place.

Remaking America’s Energy System within a Federal Policy Framework

America as a whole, meanwhile, needs to overcome the massive sustainability and security challenges that plague the nation’s energy production and delivery system. Transformational innovation and commercialization will be required to address these challenges and accelerate the process of reducing the economy’s carbon intensity.

Despite the urgency of these challenges, however, a welter of market problems currently impedes decarbonization and limits innovation. First, energy prices have generally remained too low to provide incentives for companies to commit to clean and efficient energy technologies and processes over the long haul. Second, many of the benefits of longrange innovative activity accrue to parties other than those who make investments. As a result, individual firms tend to under-invest and to focus on short-term, low-risk research and product development. Third, uncertainty and lack of information about relevant market and policy conditions and the potential benefits of new energy technologies and processes may be further delaying innovation. Fourth, the innovation benefits that derive from geographically clustering related industries (which for many years worked so well for the auto industry) have yet to be fully realized for next-generation energy enterprises. Instead, these innovations often are isolated in secure laboratories. Finally, state and local governments—burdened with budgetary pressures—are not likely to fill gaps in energy innovation investment any time soon.

As a result, the research intensity—and so the innovation intensity—of the energy sector remains woefully insufficient, as pointed out in the earlier Metropolitan Policy Program paper on discovery innovation institutes. Currently, the sector devotes no more than 0.3 percent of its revenues to R&D. Such a figure lags far behind the 2.0 percent of sales committed to federal and large industrial R&D found in the health care sector, the 2.4 percent in agriculture, and the 10 percent in the information technology and pharmaceutical industries.

As to the national government’s efforts to respond to the nation’s energy research shortfalls, these remain equally inadequate. Three major problems loom:

The scale of federal energy research funding is insufficient. To begin with, the current federal appropriation of around $3 billion a year for nondefense energy-related R&D is simply too small. Such a figure remains well below the $8 billion (in real 2008 dollars) recorded in 1980, and represents less than a quarter of the 1980 level when measured as a share of GDP. If the federal government were to fund next-generation energy at the pace it supports advances in health care, national defense, or space exploration, the level of investment would be in the neighborhood of $20 billion to $30 billion a year.

Nor do the nation’s recent efforts to catalyze energy innovation appear sufficient. To be sure, the American Recovery and Reinvestment Act (ARRA) provided nearly $13 billion for DOE investments in advanced technology research and innovation. To date, Great Lakes states are slated to receive some 42 percent of all ARRA awards from the fossil energy R&D program and 39 percent from the Office of Science (a basic research agency widely regarded as critical for the nation’s energy future). However, ARRA was a one-time injection of monies that cannot sustain adequate federal energy R&D.

Relatedly, the Great Lakes region has done well in tapping two other relatively recent DOE programs: the Advanced Research Projects Agency–Energy (ARPA-E) and Energy Frontier Research Centers (EFRCs). Currently, Great Lakes states account for 44 and 50 percent of ARPA-E and EFRC funding. Yet, with ARPA-E focused solely on individual signature projects and EFRC on basic research, neither initiative has the scope to fully engage all of the region's innovation assets.

The character and format of federal energy R&D remain inadequate. Notwithstanding the question of scale, the character of U.S. energy innovation also remains inadequate. In this respect, the DOE national laboratories—which anchor the nation’s present energy research efforts—are poorly utilized resources. Many of these laboratories’ activities are fragmented and isolated from the private sector and its market, legal and social realities. This prevents them from successfully developing and deploying cost-competitive, multidisciplinary new energy technologies that can be easily adopted on a large scale.

For example, DOE activities continue to focus on discrete fuel sources (such as coal, oil, gas or nuclear), rather than on fully integrated end use approaches needed to realize affordable, reliable, sustainable energy. Siloed approaches simply do not work well when it comes to tackling the complexity of the nation’s real-world energy challenges. A perfect example of a complicated energy problem requiring an integrated end-use approach is transportation. Moving the nation’s transportation industry toward a clean energy infrastructure will require a multi-pronged, full systems approach. It will depend not only upon R&D in such technologies as alternative propulsion (biofuels, hydrogen, electrification) and vehicle design (power trains, robust materials, advanced computer controls) but also on far broader technology development, including that related to primary energy sources, electricity generation and transmission, and energy-efficient applications that ultimately will determine the economic viability of this important industry.

Federal programming fails to fully realize regional potential. Related to the structural problems of U.S. energy innovation efforts, finally, is a failure to fully tap or leverage critical preexisting assets within regions that could accelerate technology development and deployment. In the Great Lakes, for example, current federal policy does little to tie together the billions of dollars in science and engineering R&D conducted or available annually. This wealth is produced by the region’s academic institutions, all of the available private- and public-sector clean energy activities and financing, abundant natural resources in wind and biomass, and robust, pre-existing industrial platforms for research, next-generation manufacturing, and technology adoption and deployment. In this region and elsewhere, federal policy has yet to effectively connect researchers at different organizations, break down stovepipes between research and industry, bridge the commercialization “valley of death,” or establish mechanisms to bring federally-sponsored R&D to the marketplace quickly and smoothly.

A New Approach to Regional, Federally Supported Energy Research and Innovation

And so the federal government should systematically accelerate clean energy innovation by launching a series of regionally based Great Lakes research centers. Originally introduced in the Metropolitan Policy Program policy proposal for energy discovery-innovation institutes (or e-DIIs), a nationwide network of regional centers would link universities, research laboratories and industry to conduct translational R&D that at once addresses national energy sustainability priorities, while stimulating regional economies.

In the Great Lakes, specifically, a federal effort to “flood the zone” with a series of roughly six of these high-powered, market-focused energy centers would create a critical mass of innovation through their number, size, variety, linkages and orientation to pre-existing research institutions and industry clusters.

As envisioned here, the Great Lakes network of energy research centers would organize individual centers around themes largely determined by the private market. Based on local industry research priorities, university capabilities and the market and commercialization dynamics of various technologies, each Great Lakes research and innovation center would focus on a different problem, such as renewable energy technologies, biofuels, transportation energy, carbon-free electrical power generation, and distribution and energy efficiency. This network would accomplish several goals at once:

  • Foster multidisciplinary and collaborative research partnerships. The regional centers or institutes would align the nonlinear flow of knowledge and activity across science and non-science disciplines and among companies, entrepreneurs, commercialization specialists and investors, as well as government agencies (federal, state and local) and research universities. For example, a southeastern Michigan collaboration involving the University of Michigan, Michigan State University, the University of Wisconsin and Ford, General Motors, and Dow Chemical could address the development of sustainable transportation technologies. A Chicago partnership involving Northwestern and Purdue Universities, the University of Chicago, the University of Illinois, Argonne National Lab, Exelon and Boeing could focus on sustainable electricity generation and distribution. A Columbus group including Ohio State University and Battelle Memorial Institute could address technologies for energy efficiency. Regional industry representatives would be involved from the earliest stages to define needed research, so that technology advances are relevant and any ensuing commercialization process is as successful as possible.
  • Serve as a distributed “hub-spoke” network linking together campus-based, industry-based and federal laboratory-based scientists and engineers. The central “hubs” would interact with other R&D programs, centers and facilities (the “spokes”) through exchanges of participants, meetings and workshops, and advanced information and communications technology. The goals would be to limit unnecessary duplication of effort and cumbersome management bureaucracy and to enhance the coordinated pursuit of larger national goals.
  • Develop and rapidly deploy highly innovative technologies to the market. Rather than aim for revenue maximization through technology transfer, the regional energy centers would be structured to maximize the volume, speed and positive societal impact of commercialization. As much as possible, the centers would work out in advance patenting and licensing rights and other intellectual property issues.Stimulate regional economic development. Like academic medical centers and agricultural experiment stations—both of which combine research, education and professional practice—these energy centers could facilitate cross-sector knowledge spillovers and innovation exchange and propel technology transfer to support clusters of start-up firms, private research organizations, suppliers, and other complementary groups and businesses—the true regional seedbeds of greater economic productivity, competitiveness and job creation.
  • Build the knowledge base necessary to address the nation’s energy challenges. The regional centers would collaborate with K-12 schools, community colleges, regional universities, and workplace training initiatives to educate future scientists, engineers, innovators, and entrepreneurs and to motivate the region’s graduating students to contribute to the region’s emerging green economy.
  • Complement efforts at universities and across the DOE innovation infrastructure, but be organizationally and managerially separate from either group. The regional energy centers would focus rather heavily on commercialization and deployment, adopting a collaborative translational research paradigm. Within DOE, the centers would occupy a special niche for bottom-up translational research in a suite of new, largely top-down innovation-oriented programs that aim to advance fundamental science (EFRCs), bring energy R&D to scale (Energy Innovation Hubs) and find ways to break the cost barriers of new technology (ARPA-E).

To establish and build out the institute network across the Great Lakes region, the new regional energy initiative would:

  • Utilize a tiered organization and management structure. Each regional center would have a strong external advisory board representing the participating partners. In some cases, partners might play direct management roles with executive authority.
  • Adopt a competitive award process with specific selection criteria. Centers would receive support through a competitive award process, with proposals evaluated by an interagency panel of peer reviewers.
  • Receive as much federal funding as major DOE labs outside the Great Lakes region. Given the massive responsibilities of the proposed Great Lakes energy research centers, total federal funding for the whole network should be comparable to that of comprehensive DOE labs, such as Los Alamos, Oak Ridge and others, which have FY2010 budgets between $1 and $2 billion. Based on existing industry-university concentrations, one can envision as many as six compelling research centers in the Great Lakes region.

Conclusion

In sum, America’s national energy infrastructure—based primarily upon fossil fuels—must be updated and replaced with new technologies. At the same time, no region in the nation is better equipped to deliver the necessary innovations than is the Great Lakes area. And so this strong need and this existing capacity should be joined through an aggressive initiative to build a network of regional energy research and innovation centers. Through this intervention, the federal government could catalyze a dynamic new partnership of Midwestern businesses, research universities, federal laboratories, entrepreneurs and state and local governments to transform the nation’s carbon dependent economy, while renewing a flagging regional economy.

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From rescue to recovery, to transformation and growth: Building a better world after COVID-19

       




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Podcast: Camille François on COVID-19 and the ABCs of disinformation

Camille François is a leading investigator of disinformation campaigns and author of the well-known "ABC" or "Actor-Behavior-Content" disinformation framework, which has informed how many of the biggest tech companies tackle disinformation on their platforms. Here, she speaks with Lawfare's Quinta Jurecic and Evelyn Douek for that site's series on disinformation, "Arbiters of Truth." Earlier this…

       




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Turkey and the Transformation of the Global Political and Economic Landscape

On May 1, the Center on the United States and Europe at Brookings hosted the 10th annual Sakıp Sabancı lecture featuring former Secretary of State Madeleine Albright. In her remarks, Secretary Albright offered perspectives on Turkey’s political and economic development during a period of rapid global transformation. She also explored how Turkey’s evolution is shaping its partnership with…

       




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Patient Medication Information: Keep It Simple, Stakeholders


Erica has a history of cardiac issues. She visits her doctor for a regular checkup and her doctor writes a new prescription to better control her heart disease. Unfortunately, her doctor didn't mention any instructions, except to take it once a day. Erica thanks her doctor and heads to the pharmacy. At the check-out counter, the clerk hands Erica her new prescription drug, in addition to three documents stapled to the bag that he says "will explain everything you need to know about your medication." Later on, while reviewing the materials at home, Erica is overwhelmed by the information, which is in fine print and difficult to understand. She is frustrated and confused, and tosses the documents in the trash.

This scenario is not uncommon. Research suggests that about 50 percent of Americans find it difficult to read health information.[i] Consumers who cannot find the information they need, or who do not understand the information because it is presented in a convoluted manner, are less likely to use it to prevent unnecessary medical errors. In Erica’s case, she could have ended up in the emergency room because she missed some basic warnings about her prescription. For example, one warning might have been that she should not chew the medication because it was an extended release capsule. Chewing the capsule could release the entire day’s dose at once, resulting in an unintended overdose.

We know that consumers are receiving information – sometimes too much information. Not only are consumers receiving pages of medication information, the information they receive is uncoordinated and sometimes conflicting. Some documents are written by the drug manufacturer, and others are written by pharmacies or another third party. Some medication information documents are FDA-approved and others are not.

The real question is – could medication information be presented in such a way that it would be more useful for consumers? The answer is a resounding “yes.” One study found that just 75 percent of consumer medication information met the minimum criteria for usefulness.[ii] That number might be impressive as a field goal percentage in the NBA, but for consumers it represents an unmet need for high quality medication information.

The U.S. Food and Drug Administration (FDA) has spent the past several years working with stakeholders to determine the most effective methods for conveying medication information. One overarching principle that has emerged from FDA’s engagement with the health care community is the need for a single, standardized document to replace the numerous existing documents. This document is identified as Patient Medication Information (PMI).

PMI creates an easier way for consumers to access and understand their medication information. By presenting the most salient pieces of information – including drug uses, warnings, side effects, and directions – on a single page that is easy to navigate, PMI can be a useful tool for enhancing treatments and preventing avoidable medication errors or side effects. PMI holds promise both for consumers and the broader health care system. For consumers, PMI could contribute to better outcomes and an overall improvement in patient experience. For health systems, PMI’s positive impact on medication adherence could improve performance on quality measures, such as hospital readmissions, that could lead to shared savings or other rewards.

Through a cooperative agreement, the Engelberg Center for Health Care Reform at the Brookings Institution has worked in collaboration with FDA over the past few years to convene a series of workshops focused on identifying best PMI practices – for example, how to make PMI both more usable and accessible.  Workshop participants identified several guiding principles for improving the content, format, and distribution of PMI.

PMI Guiding Principles

PMI content should be consumer-friendly. Expert stakeholders identified a lack of consumer-friendly information as one of the most important barriers to effectively communicating critical medication information. To fix this problem, the language used in PMI will need to be simplified, patient-centric, and understandable across the entire spectrum of health literacy levels. The types of information that should be included in PMI must be essential for taking a medication properly. Extraneous information, such as a discussion of previous treatments a consumer must have previously tried and failed before receiving the new prescription, may be more confusing than helpful.

The best PMI formats are simple and easy to navigate. Consumers don’t want to be given a technical-looking instruction manual when they pick up their prescriptions. Participants at the workshops generally agreed that it would be ideal to keep PMI to a single page. They also agreed that actionable headers that help consumers locate the information they are looking for are preferable to the question and answer format (e.g., “Uses” and “Directions” are more effective than “What does the drug treat?” and “How do I use the drug?”). There was consensus on the point that consumers will ultimately decide the best format.

Access to PMI will be bolstered by multiple channels of distribution. Paper is still the primary source of medication information, and is preferred by certain demographics. However, technology is revolutionizing the way consumers receive information. This is generally good for society, but it introduces some challenges, including the fact that consumers now have more access to information of questionable quality.  One method for ensuring access to consistent and high quality PMI would be to have a central repository for all PMI documents. This approach could support distribution of both printed and electronic PMI. Access to PMI could be further enhanced by making it available on smartphones and via email.

On July 1, the Center will convene a public meeting that will provide an opportunity for the health care community to discuss the issues mentioned above. Researchers will give an update on progress made since the previous meetings and share the lessons they learned from recent studies. Diverse stakeholders – including patient advocacy groups, providers, pharmacies, and drug manufacturers – will provide their perspectives on the future of PMI and assess their role in making high quality PMI a reality. 

There are many issues that need to be addressed in exploring the promise of PMI. However, one thing that participants at the July 1 meeting should remember is this: Keep it simple, stakeholders.


[i] Shrank, William, and Jerry Avorn. "Educating Patients About Their Medications: The Potential And Limitations of Written Drug Information." Health Affairs26.3 (2007): 731-40. Healthaffairs.org. Health Affairs, May 2007. 

[ii] Kimberlin, Carole, and Almut Winterstein. Expert and Consumer Evaluation of Consumer Medication Information‐2008. Rep. University of Florida College of Pharmacy, 4 Nov. 2008. Web. 8 June 2014.

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Political decisions and institutional innovations required for systemic transformations envisioned in the post-2015 sustainable development agenda


2015 is a pivotal year. Three major workstreams among all the world’s nations are going forward this year under the auspices of the United Nations to develop goals, financing, and frameworks for the “post-2015 sustainable development agenda.” First, after two years of wide-ranging consultation, the U.N. General Assembly in New York in September will endorse a new set of global goals for 2030 to follow on from the Millennium Development Goals (MDGs) that culminate this year. Second, to support this effort, a financing for development (FFD) conference took place in July in Addis Ababa, Ethiopia, to identify innovative ways of mobilizing private and public resources for the massive investments necessary to achieve the new goals. And third, in Paris in December the final negotiating session will complete work on a global climate change framework. 

These three landmark summits will, with luck, provide the broad strategic vision, the specific goals, and the financing modalities for addressing the full range of systemic threats. Most of all, these three summit meetings will mobilize the relevant stakeholders and actors crucial for implementing the post-2015 agenda—governments, international organizations, business, finance, civil society, and parliaments—into a concerted effort to achieve transformational outcomes. Achieving systemic sustainability is a comprehensive, inclusive effort requiring all actors and all countries to be engaged.

These three processes represent a potential historic turning point from “business-as-usual” practices and trends and to making the systemic transformations that are required to avoid transgressing planetary boundaries and critical tipping points. Missing from the global discourse so far is a realistic assessment of the political decisions and institutional innovations that would be required to implement the post-2015 sustainable development agenda (P2015).

For 2015, it is necessary is to make sure that by the end of year the three workstreams have been welded together as a singular vision for global systemic transformation involving all countries, all domestic actors, and all international institutions. The worst outcome would be that the new Sustainable Development Goals (SDGs) for 2030 are seen as simply an extension of the 2015 MDGs—as only development goals exclusively involving developing countries. This outcome would abort the broader purposes of the P2015 agenda to achieve systemic sustainability and to involve all nations and reduce it to a development agenda for the developing world that by itself would be insufficient to make the transformations required.

Systemic risks of financial instability, insufficient job-creating economic growth, increasing inequality, inadequate access to education, health, water and sanitation, and electricity, “breaking points” in planetary limits, and the stubborn prevalence of poverty along with widespread loss of confidence of people in leaders and institutions now require urgent attention and together signal the need for systemic transformation.

As a result, several significant structural changes in institution arrangements and governance are needed as prerequisites for systemic transformation. These entail (i) political decisions by country leaders and parliaments to ensure societal engagement, (ii) institutional innovations in national government processes to coordinate implementation, (iii) strengthening the existing global system of international institutions to include all actors, (iv) the creation of an international monitoring mechanism to oversee systemic sustainability trajectories, and (v) realize the benefits that would accrue to the entire P2015 agenda by the engagement of the systemically important countries through fuller utilization of  G20 leaders summits and finance ministers meetings as enhanced global steering mechanisms toward sustainable development.   Each of these changes builds on and depends on each other.

I. Each nation makes a domestic commitment to a new trajectory toward 2030

For global goal-setting to be implemented, it is essential that each nation go beyond a formal agreement at the international level to then embark on a national process of deliberation, debate, and decision-making that adapts the global goals to the domestic institutional and cultural context and commits the nation to them as a long-term trajectory around which to organize its own systemic transformation efforts. Such a process would be an explicitly political process involving national leaders, parliaments or rule-making bodies, societal leaders, business executives, and experts to increase public awareness and to guide the public conversation toward an intrinsically national decision which prioritizes the global goals in ways which fit domestic concerns and circumstances. This political process would avoid the “one-size-fits-all” approach and internalize and legitimate each national sustainability trajectory.

So far, despite widespread consultation on the SDGs, very little attention has been focused on the follow-up to a formal international agreement on them at the U.N. General Assembly in September 2015. The first step in implementation of the SDGs and the P2015 agenda more broadly is to generate a national commitment to them through a process in which relevant domestic actors modify, adapt, and adopt a national trajectory the embodies the hopes, concerns and priorities of the people of each country. Without this step, it is unlikely that national systemic sustainability trajectories will diverge significantly enough from business-as-usual trends to make a difference. More attention needs to now be given to this crucial first step.  And explicit mention of the need for it should appear in the UNGA decisions in New York in September.

II. A national government institutional innovation for systemic transformation

The key feature of systemic risks is that each risk generates spillover effects that go beyond the confines of the risk itself into other domains. This means that to manage any systemic risk requires broad, inter-disciplinary, multi-sectoral approaches. Most governments have ministries or departments that manage specific sectoral programs in agriculture, industry, energy, health, education, environment, and the like when most challenges now are inter-sectoral and hence inter-ministerial. Furthermore, spillover linkages create opportunities in which integrated approaches to problems can capture intrinsic synergies that generate higher-yield outcomes if sectoral strategies are simultaneous and coordinated.

The consequence of spillovers and synergies for national governments is that “whole-of-government” coordinating committees are a necessary institutional innovation to manage effective strategies for systemic transformation. South Korea has used inter-ministerial cabinet level committees that include private business and financial executives as a means of addressing significant interconnected issues or problems requiring multi-sectoral approaches. The Korea Presidential Committee on Green Growth, which contained more than 20 ministers and agency heads with at least as many private sector leaders, proved to be an extremely effective means of implementing South Korea’s commitment to green growth.

III.  A single global system of international institutions

The need for a single mechanism for coordinating the global system of international institutions to implement the P2015 agenda of systemic transformation is clear. However, there are a number of other larger reasons why the forging of such a mechanism is crucial now.

The Brettons Woods era is over. It was over even before the initiative by China to establish the Asia Infrastructure Investment Bank (AIIB) in Beijing and the New Development Bank (NDB) in Shanghai. It was over because of the proliferation in recent years of private and official agencies and actors in development cooperation and because of the massive growth in capital flows that not only dwarf official development assistance (concessional foreign aid) but also IMF resources in the global financial system. New donors are not just governments but charities, foundations, NGOs, celebrities, and wealthy individuals. New private sources of financing have mushroomed with new forms of sourcing and new technologies. The dominance of the IMF and the World Bank has declined because of these massive changes in the context.

The emergence of China and other emerging market economies requires acknowledgement as a fact of life, not as a marginal change. China in particular deserves to be received into the world community as a constructive participant and have its institutions be part of the global system of international institutions, not apart from it. Indeed, China’s Premier, Li Keqiang, stated at the World Economic Forum in early 2015 that “the world order established after World War II must be maintained, not overturned.”

The economic, social and environmental imperatives of this moment are that the world’s people and the P2015 agenda require that all international institutions of consequence be part of a single coordinated effort over the next 15 years to implement the post-2015 agenda for sustainable development. The geopolitical imperatives of this moment also require that China and China’s new institutions be thoroughly involved as full participants and leaders in the post-2015 era. If nothing else, the scale of global investment and effort to build and rebuild infrastructure requires it.

It is also the case that the post-2015 era will require major replenishments in the World Bank and existing regional development banks, and significantly stronger coordination among them to address global infrastructure investment needs in which the AIIB and the NDB must now be fully involved. The American public and the U.S. Congress need to fully grasp the crucial importance for the United States, of the IMF quota increase and governance reform.  These have been agreed to by most governments but their implementation is stalled in the U.S. Congress. To preserve the IMF’s role in the global financial system and the role of the U.S. in the international community, the IMF quota increase and IMF governance reform must be passed and put into practice. Congressional action becomes all the more necessary as the effort is made to reshape the global system of international institutions to accommodate new powers and new institutions within a single system rather than stumble into a fragmented, fractured, and fractious global order where differences prevail over common interests.

The IMF cannot carry out its significant responsibility for global financial stability without more resources. Other countries cannot add to IMF resources proportionately without U.S. participation in the IMF quota increase.   Without the US contribution, IMF members will have to fund the IMF outside the regular IMF quota system, which means de-facto going around the United States and reducing dramatically the influence of the U.S. in the leadership of the IMF. This is a self-inflicted wound on the U.S., which will damage U.S. credibility, weaken the IMF, and increase the risk of global financial instability. By blocking the IMF governance reforms in the IMF agreed to by the G-20 in 2010, the U.S. is single-handedly blocking the implementation of the enlargement of voting shares commensurate with increased emerging market economic weights.  This failure to act is now widely acknowledged by American thought leaders to be encouraging divergence rather than convergence in the global system of institutions, damaging U.S. interests.

IV. Toward a single monitoring mechanism for the global system of international institutions

The P2015 agenda requires a big push toward institutionalizing a single mechanism for the coordination of the global system of international institutions.  The international coordination arrangement today, is the Global Partnership for Effective Development Cooperation created at the Busan High-Level Forum on Aid Effectiveness in 2011.  This arrangement, which recognizes the increasingly complex context and the heightened tensions between emerging donor countries and traditional western donors, created a loose network of country platforms, regional arrangements, building blocks and forums to pluralize the architecture to reflect the increasingly complex set of agents and actors. This was an artfully arranged compromise, responding to the contemporary force field four years ago.

Now is a different moment. The issues facing the world are both systemic and urgent; they are not confined to the development of developing countries, and still less to foreign aid. Geopolitical tensions are, if anything, higher now than then.  But they also create greater incentives to find areas of cooperation and consensus among major powers who have fundamentally different perspectives on other issues. Maximizing the sweet spots where agreement and common interest can prevail is now of geopolitical importance.  Gaining agreement on institutional innovations to guide the global system of international institutions in the P2015 era would be vital for effective outcomes but also importantly ease geopolitical tensions.

Measurement matters; monitoring and evaluation is a strategic necessity to implementing any agenda, and still more so, an agenda for systemic transformation.  As a result, the monitoring and evaluation system that accompanies the P2015 SDGs will be crucial to guiding the implementation of them.  The UN, the OECD, the World Bank, and the IMF all have participated in joint data gathering efforts under the IDGs  in the 1990s and the MDGs in the 2000s.   Each of these institutions has a crucial role to play, but they need to be brought together now under one umbrella to orchestrate their contributions to a comprehensive global data system and to help the G20 finance ministers coordinate their functional programs.   

The OECD has established a strong reputation in recent years for standard setting in a variety of dimensions of the global agenda.  Given the strong role of the OECD in relation to the G20 and its broad outreach to “Key Partners” among the emerging market economies, the OECD could be expected to take a strong role in global benchmarking and monitoring and evaluation of the P2015 Agenda.  The accession of China to the OECD Development Centre, which now has over fifty member countries, and the presence and public speech of Chinese Premier Li Keqiang at the OECD on July 1st, bolsters the outreach of the OECD and its global profile.

But national reporting is the centerpiece and the critical dimension of monitoring and evaluation.  To guide the national reporting systems and evaluate their results, a  new institutional arrangement is needed that is based on national leaders with responsibility for implementation of the sustainable development agendas from each country and is undertaken within the parameters of the global SDGs and the P2015 benchmarks.

V.   Strengthening global governance and G20 roles

G-20 leaders could make a significant contribution to providing the impetus toward advancing systemic sustainability by creating a G-20 Global Sustainable Development Council charged with pulling together the national statistical indicators and implementing benchmarks on the SDGs in G-20 countries.  The G-20 Global Sustainable Development Council (G-20 GSDC) would consist of the heads of the presidential committees on sustainable development charged with coordinating P2015 implementation in G-20 countries.  Representing systemically important countries, they would also be charged with assessing the degree to which national policies and domestic efforts by G20 countries generate positive or negative spillover effects for the rest of the world.  This G-20 GSDC would also contribute to the setting of standards for the global monitoring effort, orchestrated perhaps by the OECD, drawing on national data bases from all countries using the capacities of the international institutions to generate understanding of global progress toward systemic sustainability. 

The UN is not in a position to coordinate the global system of international institutions in their functional roles in global sustainable development efforts.  The G-20 itself could take steps through the meetings of G-20 Finance Ministers to guide the global system of international institutions in the implementation phase of the P2015 agenda to begin in 2016. The G-20 already has a track record in coordinating international institutions in the response to the global financial crisis in 2008 and its aftermath. The G-20 created the Financial Stability Board (FSB), enlarged the resources for the IMF, agreed to reform the IMF’s governance structure, orchestrated relations between the IMF and the FSB, brought the OECD into the mainstream of G-20 responsibilities and has bridged relations with the United Nations by bringing in finance ministers to the financing for development conference in Addis under Turkey’s G-20 leadership. 

There is a clear need to coordinate the financing efforts of the IMF, with the World Bank and the other regional multilateral development banks (RMDBs), with the AIIB and the BRICS NDB, and with other public and private sector funding sources, and to assess the global institutional effort as whole in relation to the P2015 SDG trajectories.  The G-20 Finance Ministers grouping would seem to be uniquely positioned to be an effective and credible means of coordinating these otherwise disparate institutional efforts.  The ECOSOC Development Cooperation Forum and the Busuan Global Partnership provide open inclusive space for knowledge sharing and consultation but need to be supplemented by smaller bodies capable of making decisions and providing strategic direction.

Following the agreements reached in the three U.N. workstreams for 2015, the China G-20 could urge the creation of a formal institutionalized global monitoring and coordinating mechanism at the China G-20 Summit in September 2016. By having the G-20 create a G-20 Global Sustainable Development Council (G-20 GSDC), it could build on the national commitments to SDG trajectories to be made next year by U.N. members countries and on the newly formed national coordinating committees established by governments to implement the P2015 Agenda, giving the G-20 GSDC functional effectiveness, clout and credibility.   Whereas there is a clear need to compensate for the sized-biased representation of the G20 with still more intensive G-20 outreach and inclusion, including perhaps eventually considering shifting to a constituency based membership, for now the need in this pivotal year is to use the momentum to make political decisions and institutional innovations which will crystallize the P2015 strategic vision toward systemic sustainability into mechanisms and means of implementation.

By moving forward on these recommendations, the G-20 Leaders Summits would be strengthened by involving G-20 leaders in the people-centered P2015 Agenda, going beyond finance to issues closer to peoples’ homes and hearts. Systemically important countries would be seen as leading on systemically important issues.  The G-20 Finance Ministers would be seen as playing an appropriate role by serving as the mobilizing and coordinating mechanism for the global system of international institutions for the P2015 Agenda.  And the G-20 GSDC would become the effective focal point for assessing systemic sustainability not only within G20 countries but also in terms of their positive and negative spillover effects on systemic sustainability paths of other countries, contributing to standard setting and benchmarking for global monitoring and evaluation.    These global governance innovations could re-energize the G20 and provide the international community with the leadership, the coordination and the monitoring capabilities that it needs to implement the P2015 Agenda. 

Conclusion

As the MDGs culminate this year, as the three U.N. workstreams on SDGs, FFD, and UNFCC are completed, the world needs to think ahead to the implementation phase of the P2015 sustainable development agenda. Given the scale and scope of the P2015 agenda, these five governance innovations need to be focused on now so they can be put in place in 2016.

These will ensure (i) that national political commitments and engagement by all countries are made by designing, adopting, and implementing their own sustainable development trajectories and action plans; (ii) that national presidential committees are established, composed of key ministers and private sector leaders to coordinate each country’s comprehensive integrated sustainability strategy; (iii) that all governments and international institutions are accepted by and participate in a single global system of international institutions;   (iv) that a G-20 monitoring mechanism be created by the China G-20 in September 2016 that is comprised of the super-minister officials heading the national presidential coordinating committees implementing the P2015 agenda domestically in G-20 countries, as a first step;  and (v) that the G-20 Summit leaders in Antalya in November 2015 and in China in September 2016 make clear their own commitment to the P2015 agenda and their responsibility for its adaption, adoption and implementation internally in their countries but also for assessing G-20 spillover impacts on the rest of the world, as well as for deploying their G-20 finance ministers to mobilize and coordinate the global system of international institutions toward achieving the P2015 agenda.

Without these five structural changes, it will be more likely that most countries and actors will follow current trends rather than ratchet up to the transformational trajectories necessary to achieve systemic sustainability nationally and globally by 2030.

References

Ye Yu, Xue Lei and Zha Xiaogag, “The Role of Developing Countries in Global Economic Governance---With a Special Analysis on China’s Role”, UNDP, Second High-level Policy Forum on Global Governance: Scoping Papers, (Beijing: UNDP, October 2014).

Zhang Haibing, “A Critique of the G-20’s Role in UN’s post-2015 Development Agenda”, in Catrina Schlager and Chen Dongxiao (eds), China and the G-20: The Interplay between an Emerging Power and an Emerging Institution, (Shanghai: Shanghai Institutes for International Studies [SIIS] and the Friedrich Ebert Stiftung [FES], 2015) 290-208.

Global Review, (Shanghai:  SIIS, 2015,) 97-105.

Colin I. Bradford, “Global Economic Governance and the Role International Institutions”, UNDP, Second High-level Policy Forum on Global Governance: Scoping Papers, (Beijing: UNDP, October 2014).

Colin I. Bradford, “Action implications of focusing now on implementation of the   post-2015 agenda.”, (Washington: The Brookings Institution, Global Economy and Development paper, September 2015).

Colin I. Bradford, “Systemic Sustainability as the Strategic Imperative for the Future”, (Washington: The Bookings Institution, Global Economy and Development paper; September 2015). 

Wonhyuk Lim and Richard Carey, “Connecting Up Platforms and Processes for Global Development to 2015 and Beyond:  What can the G-20 do to improve coordination and deliver development impact?”, (Paris: OECD  Paper, February 2013).

Xiaoyun Li and Richard Carey, “The BRICS and the International Development System: Challenge and Convergence”, (Sussex: Institute for Development Studies, Evidence Report No. 58, March 2014).

Xu Jiajun and Richard Carey, “China’s Development Finance: Ambition, Impact and Transparency,” (Sussex :  Institute for Development Studies, IDS Policy Brief, 2015).

Soogil Young, “Domestic Actions for Implementing Integrated Comprehensive Strategies:  Lessons from Korea’s Experience with Its Green Growth Strategy”, Washington: Paper for the Brookings conference on “Governance Innovations to Implement the Post-2015 Agenda for Sustainable Development”, March 30, 2015).

Authors

      
 
 




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Transformative Investments: Remaking American Cities for a New Century

Editor's Note: This article was the first published in the June 2008 World Cities Summit edition of ETHOS.

At the dawn of a new century, broad demographic, economic and environmental forces are giving American cities their best chance in decades to thrive and prosper. The renewed relevance of cities derives in part from the very physical characteristics that distinguish cities from other forms of human settlement: density, diversity of uses and functions, and distinctive design.

Across the United States (U.S.), a broad cross section of urban practitioners—private investors and developers, government officials, community and civic leaders—are taking ambitious steps to leverage the distinctive physical assets of cities and maximise their economic, fiscal, environmental and social potential.

A special class of urban interventions—what we call “transformative investments”—is emerging from the millions of transactions that occur in cities every year. The hallmark of transformative investments is their catalytic nature and seismic impact on markets, on people, on the city landscape and urban possibilities—far beyond the geographic confines of the project itself.

Recognising and replicating the magic of transformative investments, and making the exception become the norm is important if U.S. cities are to realise their full potential.

THE URBAN MOMENT
The U.S. is undergoing a period of dynamic change, comparable in scale and complexity to the latter part of the nineteenth century. Against this backdrop, there is a resurgence in the importance of cities due to their fundamental and distinctive physical attributes.

Cities offer a broad range of physical choices—in neighbourhoods, housing stock, shopping venues, green spaces and transportation. These choices suit the disparate preferences of a growing population that is diverse by race, ethnicity and age.

Cities are also rich with physical amenities—mixed-use downtowns, historic buildings, campuses of higher learning, entertainment districts, pedestrian-friendly neighbourhoods, adjoining rivers and lakes—that are uniquely aligned with preferences in a knowledge-oriented, post-industrial economy. A knowledge economy places the highest premium on attracting and retaining educated workers, and an increasing proportion of these workers, particularly young workers, value urban quality of life when making their residential and employment decisions.

Finally, cities, particularly those built in the nineteenth and early twentieth centuries, are compactly constructed and laid out along dense lines and grids, enhancing the potential for the dynamic, random, face-to-face human exchange prized by an economy fuelled by ideas and innovation. Such density also makes cities perfect agents for the efficient delivery of public services as well as the stewardship of the natural environment.

Each of these elements—diversity, amenities and density—distinguishes cities from other forms of human settlement. In prior generations, these attributes were devalued in a nation characterised by the single family house, the factory plant, cheap gas, and environmental profligacy. In recent history, many U.S. cities responded by making the wrong physical bets or by replicating low-density, suburban development—further eroding the very strengths that make cities distinctly urban and competitive.

Yet, the U.S., a nation in demographic and economic transition, is revaluing the quality of life uniquely offered by cities and urban places, potentially altering the calculus by which millions of American families and businesses make location decisions every year.

DELIVERING "CITYNESS": THE RISE OF TRANSFORMATIVE INVESTMENTS
Across the U.S., a practice of city building is emerging that builds on the re-found value and purpose of the urban physical landscape, and recognises that cities thrive when they fully embrace what Saskia Sassen calls “cityness”.1

The move to recapture the American city can be found in all kinds of American cities: global cities like New York, Los Angeles and Chicago that lie at the heart of international trade and finance; innovative cities like Seattle, Austin and San Francisco that are leading the global economic revolution in technology; older industrial cities like Cleveland, Pittsburgh and Rochester that are transitioning to new economies; fast-growing cities like Charlotte, Phoenix and Dallas that are regional hubs and magnets for domestic and international migration.

The new urban practice can also be found in all aspects or “building blocks” of cities: in the remaking of downtowns as living, mixed-use communities; in the creation of neighbourhoods of choice that are attractive to households with a range of incomes; in the conversion of transportation corridors into destinations in their own right; in the reclaiming of parks and green spaces as valued places; and in the revitalisation of waterfronts as regional destinations, new residential quarters and recreational hubs.

Yet, as the new city building practice evolves, it is clear that a subset of urban investments are emerging as truly “transformative” in that they have a catalytic, place-defining impact, creating an entirely new logic for portions of the city and a new set of possibilities for economic and social activity.

We define these transformative investments as “discrete public or private development projects that trigger a profound, ripple effect of positive, multi-dimensional change in ways that fundamentally remake the value and/or function of one or more of a city’s physical building blocks”.

This subset of urban investments share important characteristics:

  • On the economic front, transformative investments uncover the hidden value in a part of the city, creating markets in places where markets either did not exist or were only partially realised.
  • On the fiscal front, transformative investments dramatically enhance the fiscal capacity of local governments, generating revenues through the rise in property values, the growth in city populations, and the expansion of economic activity.
  • On the cognitive front, transformative investments redefine the identity and image of the city. They effectively “re-map” previously forgotten or ignored places by residents, visitors and workers. They create nodes of new activities and new places for people to congregate.
  • On the environmental front, transformative investments enable cities to achieve their “green” potential by cleaning up the environmental residue from prior industrial uses or urban renewal efforts, by enabling repopulation at greater densities to occur and by providing residents, workers and visitors with transportation alternatives.
  • On the social front, transformative investments have the potential, while not always realised, to alter the opportunity structure for low-income residents. When carefully designed, staged and leveraged, they can expand the housing, employment and educational opportunities available to low-income residents and overcome the racial, ethnic and economic disparities that have inhibited city performance for decades.
DISSECTING SUCCESS: HOW AND WHERE TRANSFORMATIVE INVESTMENTS TAKE PLACE
The best way to identify and assess transformative investments is by examining exemplary interventions in the discrete physical building blocks of cities: downtowns, neighbourhoods, corridors, parks and green spaces, and waterfronts.

Downtowns
If cities are going to realise their true potential, downtowns are compelling places to start. Physically, downtowns are equipped to take on an emerging set of uses, activities and functions and have the capacity to absorb real increases in population. Yet, as a consequence to America’s sprawling appetite, urban downtowns have lost their appeal. Economic interests, once the stronghold in downtowns, have moved to suburban town centres and office parks, depressing urban markets and urban value.

Across the US, downtowns are remaking themselves as residential, cultural, business and retail centres. Cities such as Chattanooga, Washington, DC and Denver have demonstrated how even one smart investment can inject new energy and jumpstart new markets. The strategic location of a new sports arena in a distressed area of downtown Washington, DC fits our definition of a transformative investment. Leveraging the proximity of a transit stop, the MCI Arena was nestled within the existing urban fabric on a city-owned urban renewal site. The arena’s pedestrian-oriented design strengthened, rather than interrupted, the continuity of the 7th Street retail corridor.2 Today, the area has been profoundly transformed as scores of new restaurants, retail and bars dot the arena’s surroundings. Residents and visitors rely heavily on the nearby transit to come to this destination.

Neighbourhoods
Ever since the physical, economic and social agglomeration of “city” was established, the function of neighbourhoods has remained relatively untouched. While real estate values of neighbourhoods have shifted over time in response to micro- and macro-economic trends, a subset of inner city communities have remained enclaves of poverty. Victims of earlier urban renewal and public housing efforts, millions of people are consigned to living in neighbourhoods isolated from the economic and social mainstream.

Cities such as St. Louis, Louisville and Atlanta have been at the forefront of public housing (and hence neighbourhood) transformation, supported by smart federal investments in the 1990s. For example, the demolition of the infamous high-rise Vaughn public housing project in St. Louis enabled the construction of a new human scale, mixed-income housing development in one of the poorest, most crime-ridden sections of the city. This redevelopment cured the mistakes made by failed public housing projects, by restoring street grids, providing quality design, and injecting a sense of social and physical connection. Constructing a mix of townhouses, garden apartments and single family homes helped catalyse other public and private sector investments.

What made this investment transformative was that it included the reconstitution of Jefferson Elementary, a nearby public school. Working closely with residents, and with the financial support of corporate and philanthropic interests, the developer helped modernise the school, making it one of the most technologically advanced educational facilities in the region. A new principal, new curriculum, and new school programmes helped it become one of the highest performing inner city schools in the state of Missouri.

Corridors
City corridors are the physical tissue that knit disparate parts of a city together. In the best of conditions, corridors are multi-dimensional in purpose, where they are destinations as much as facilitators of movement. In many cities, however, corridors are simply shuttling traffic past blocks of desolated retail and residential areas or they have become yet another cookie cutter image of suburbia—parking lots abutting the main street, standardised buildings and design, and oversized and cluttered signage.

Cities like Portland, Oregon and urban counties like Arlington, Virginia have used mass transit investments and land use reforms to create physically, economically and socially healthy corridors that give new residents reasons to choose to live nearby and existing residents reasons to stay.

Portland conceived a streetcar to spur high density housing in close-in neighbourhoods that were slowly shedding old industrial uses. The streetcars traverse a three-mile route through residential areas, the water front, to the university. Since its construction, the streetcar has not only expanded transportation choices, it has helped galvanise new destinations along its route—including new neighbourhoods, retail clusters, and economic districts.

Parks and Open Space
City green spaces (such as parks, nature trails, bike paths) were initially designed to provide the lungs of the city and an outlet for recreation, entertainment and social cohesion. As general conditions declined in many cities, the quality of urban parks also declined, to the great consternation of local residents. Green spaces were turned into under-used, if not forgotten, areas of the city; or worse still, hot spots of crime and illegal activity. Such blight discouraged cities to transform outmoded uses (such as manufacturing areas) into more green space. In cities with booming development markets, parks failed to be designed and incorporated into the new urban fabric.

Across the US, cities are pursuing a variety of strategies to reclaim or augment urban green spaces. Cities like Atlanta, for example, have created transformative parks from outmoded economic uses, such as manufacturing land along urban waterfronts or by converting old railway lines into urban trail-ways.

Cities like Scranton have reclaimed existing urban parks consumed by crime and vandalism. This has required creative physical and programmatic investments, including: redesigning parks (removing physical and visibility barriers such as walls, thinning vegetation, and eliminating “dark corners”); increasing the presence of uniformed personnel; increasing the park amenities (such as evening movies and other events to increase patronage);3 and providing regular maintenance of the park and recreational facilities.4

Waterfronts
Many American cities owe their location and initial function to the proximity to water: rivers, lakes and oceans. Waterfronts enabled cities to manufacture, warehouse and ship goods and products. Infrastructure was built and zoning was aligned to carry out these purposes. In a knowledge-intensive economy, however, the function of waterfronts has dramatically changed, reflecting the pent-up demand for new places of enjoyment, activities and uses.

As with the other building blocks, cities are pursing a range of strategies to reclaim their waterfronts, often by addressing head-on the vestiges of an earlier era.

New York has overhauled the outdated zoning guidelines for development along the Brooklyn side of the East River, enabling the construction of mixed-income housing rather than prescribing manufacturing and light industry uses.

Pittsburgh and many of its surrounding municipalities have embarked on major efforts to re-mediate the environmental contamination found in former industrial sites, paving the way for new research centres, office parks and retail facilities.

Milwaukee, Providence and Portland have demolished the freeways that separated (or hid) the waterfront from the rest of the downtown and city, and unleashed a new wave of private investment and public activities.

WHAT IS THE RECIPE FOR SUCCESS?
The following are underlying principles that set these diverse investments apart from other transactions:

Transformative Investments advance “cityness”: Investments embrace the characteristics, attributes, and dynamics that embody “city”—its complexity, its intersection of activities, its diversity of populations and cultures, its distinctively varied designs, and its convergence of the physical environment at multiple scales. Project by project, transformative investments are reclaiming the true urban identity by strengthening aspects of the ‘physical’ that are intrinsically urban—be it density, rehabilitation of a unique building or historic row, or the incorporation of compelling, if not iconic, design.

Transformative Investments require a fundamental rethinking of land use and zoning conventions: In the midst of massive economic global change, 21st century American cities still bear the indelible markings of the 20th century. In the early 20th century, for example, government bodies enacted zoning to establish new rules for urban development. While originally intended to protect “light and air” from immense overbuilding, later versions of zoning added the segregation of uses—isolating housing, office, commercial and manufacturing activities from each other. Thus, transformative investments require, at a minimum, variances from the rigid, antiquated rules that still define the urban landscape. In many cases, examples of successful transformative investments have become the tool to overhaul outdated and outmoded frameworks and transform exceptions into new guidelines.

Transformative Investments require innovative, often customised financing approaches: Cities have distinctive physical forms (e.g., historic buildings) and distinctive physical visions (e.g., distinct districts). Yet private and even public financing of the American physical landscape, for the most part, is standardised and routinised, enabling the production of similar products (e.g., single family homes, commercial strips) at high volume, low cost and low quality. Transformative investments, however, require the marrying of multiple sources of financing (e.g., conventional debt, traditional equity, tax-driven equity investments, innovative financing arrangements, public subsidy, patient philanthropic capital), placing stress on project design and implementation. In addition, achieving social objectives often require building innovative tax and shared equity approaches into particular transactions, so that appreciations in property value can serve higher community purposes (e.g., creating affordable housing trust funds). As with regulatory frames, the evolution from exceptional transactions to routinised forms of investments is required to ensure that transformative investments become more the rule rather than the exception.

Transformative Investments often involve an empirically-grounded vision at the building block level: While a vision is not a necessary pre-requisite for realising transformative investments, cities that proceed without one have a higher probability of making the wrong physical bets, siting them in the wrong places, or ultimately creating a physical landscape that fails to cumulatively add up to “ cityness”. It is easy to find such examples around the country, such as isolated mega-projects (a new stadium or convention centre) or waterfront revitalisation efforts that constructed the wrong projects, having misunderstood the market and the diversifying demographic.

Telescoping the possibilities and developing a bold vision must be done through an empirically-grounded process. A visioning exercise should therefore include: an economic and market diagnostic of the building block; a physical diagnostic; an evaluation of existing projects; and the development of a vision to transform the landscape. From here, disparate actors (public, private, civic, not-for-profit) will have the best instruments to assess whether a physical project could meet specific market, demographic and physical needs—increasing its chances of becoming truly transformative.

Transformative Investments require integrative thinking and action: Transformative investments are often an act in “connecting the dots” between the urban experiences (e.g., transportation, housing, economic activity, education and recreation), which are inextricably linked in reality but separated in action. This requires a significant change in how cities are both planned and managed.

On the public side, it means that transportation agencies must re-channel scarce infrastructure investments to leverage other city building goals beyond facilitating traffic. It means that agencies driving a social agenda, such as schools and libraries, have to re-imagine their existing and new facilities to integrate strong design and move away from isolated projects.

In the private sector, it means understanding the broader vision of the city and carefully siting and designing investments to increase successful city-building and not just project-building. It means increasing their own standards by using exemplary design and construction materials. It means finding financially beneficial approaches to mixed income housing projects and mixed use projects instead of just single uses. In all cases, it requires holistic thinking that cuts across the silos and stovepipes of specialised professions and fragmented bureaucracies.

BUILDING GREAT CITIES
For the first time in decades, American cities have a chance to experience a measurable revival. While broader macro forces have handed cities this chance, city builders are also learning from past mistakes. After investing billions of dollars into city revitalisation efforts, the principles underpinning particularly successful and catalytic projects—transformative investments—are beginning to be clarified. The most important lesson for cities, however, is to embrace “cityness”, to maximise what makes them physically and socially unique and distinctive. Only in this way will American cities reach their true greatness.


  • 1Saskia Sassen defined the term “cityness” to be the concept of embracing the characteristics, attributes, and dynamics that embody “city”: complexity, the convergence of the physical environment at multiple scales, the intersection of differences, the diversity of populations and culture, the distinctively varied designs and the layering of the old and the new. Sassen, S., “Cityness in the Urban Age”, Urban Age Bulletin 2 (Autumn 2005).
  • 2Strauss, Valerie, “Pollin Says He’ll Pay for Sports Complex District, Awaits Economic Boost, Upgraded Image”, Washington Post, Thursday, 29 December 1994.
  • 3Personal communication from Peter Harnik, Director, Center for City Park Excellence, Trust for Public Land, 6 June 2005.
  • 4Harnik, Peter, “The Excellent City Park System: What Makes it Great and How to Get There”. San Francisco, CA: The Trust for Public Land, 2003. Available online at http://www.tpl.org/tier3_cd.cfm?content_item_id=11428&folder_id=175

Publication: World Cities Summit Edition of ETHOS
     
 
 




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