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Seminar on pension foresight: Envisaging retirement income plans of the future

21 June 2017, Paris: Co-organised by the International Network for Pensions, Aging, and Retirement Research (INPARR), the OECD and IOPS, this seminar provided a window into the latest thinking and research that sheds light on where pension plans and designs are headed in the future and challenges to their future sustainability and efficiency.




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The Contribution of Reinsurance Markets to Managing Catastrophe Risk

This report makes use of a unique set of data on premiums and claims provided by global reinsurance companies to examine the contribution that reinsurance has made to enhancing the capacity of the primary insurance market to manage catastrophe risk and to reducing the economic and insurance market disruption that often follows catastrophic events.




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Managing our natural resources: can we build more with less? - Insights Blog

For World Environment Day on 5 June 2014, the OECD Environment Directorate looks at how we use and manage natural resources.




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Understanding and Managing the Unequal Consequences of Environment Pressures and Policies - Insights blog

The consequences of degradation of environmental quality as well as the consequences of environmental policies are typically unevenly distributed. In general, poorer countries and lower income households are more severely affected by environmental degradation and at the same time have less capacity to adapt.




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Managing Hospital Volumes: Germany and Experiences from OECD Countries

To help inform the Conference on Managing Hospital Volumes, co-organised by the German Federal Ministry of Health and the OECD, and held on the 11th April 2013 in Berlin, the OECD Secretariat produced a paper to provide an international perspective on Germany’s situation and the current policy debate.




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Canada: Leveraging Training and Skills Development in SMEs - An analysis of two urban regions Montreal and Winnipeg

This paper looks at a study carried out among 80 small and medium sized enterprises (SMEs) in two Canadian cities, Montréal and Winnipeg, based on a survey and case studies, which show the importance of innovation among Canadian SMEs. These innovations in turn create new demands for skill development, both through formal training and in informal activities.




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Call for papers: Engaging employers in Skills development and utilisation

The work will seek to identify good practices for employer engagement in the areas of both developing and utilising skills, including setting up innovative workplace learning methods, designing effective employer partnerships with the employment and training system as well as financing mechanisms for employer-led training, including how best to reach SMEs.




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Conference on engaging employers in building better local jobs and creating a more responsive skills system

This conference organised jointly by the OECD, Warwick University, the Work Foundation, and the Centre for Cities brought together stakeholders from national government departments, cities, Local Enterprise Partnerships (LEPs) as well as business, NGOs and research institutions to discuss the key challenges facing the United Kingdom in building more and better quality jobs




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'Billy Lynn's Long Halftime Walk': Engaging But Not Exceptional

Director: Ang Lee; Cast: Joe Alwyn, Kristen Stewart, Chris Tucker, Garrett Hedlund, Makenzie Leigh, Vin Diesel, Steve Martin, Brain "Astro" Bradley, Arturo Castro.




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Regulatory Quality and COVID-19: Managing the Risks and Supporting the Recovery

Regulatory decisions are vital at nearly every stage of resolving the health crisis and its social and economic effects. The current situation makes the need for trusted, evidence-based, internationally co-ordinated and well-enforced regulation particularly acute.




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What matters for managing classrooms? (OECD Education Today Blog)

Teaching is a demanding profession. Teachers are responsible for developing the skills and knowledge of their students, helping them overcome social and emotional hurdles and maintaining equitable, cohesive and productive classroom environments. On top of their teaching responsibilities, they are also expected to engage in continued professional development activities throughout their careers.




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Canada: Leveraging Training and Skills Development in SMEs - An analysis of two urban regions Montreal and Winnipeg

This paper looks at a study carried out among 80 small and medium sized enterprises (SMEs) in two Canadian cities, Montréal and Winnipeg, based on a survey and case studies, which show the importance of innovation among Canadian SMEs. These innovations in turn create new demands for skill development, both through formal training and in informal activities.




aging

Call for papers: Engaging employers in Skills development and utilisation

The work will seek to identify good practices for employer engagement in the areas of both developing and utilising skills, including setting up innovative workplace learning methods, designing effective employer partnerships with the employment and training system as well as financing mechanisms for employer-led training, including how best to reach SMEs.




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Draft principles for leveraging local benefits from global sporting events

This document presents draft principles for leveraging local benefits from global sporting events. These draft principles have been prepared as part of a project on optimising the local benefits from hosting the EURO 2016. They build upon previous work on Local Development Benefits from Staging Global Events.




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Conference on engaging employers in building better local jobs and creating a more responsive skills system

This conference organised jointly by the OECD, Warwick University, the Work Foundation, and the Centre for Cities brought together stakeholders from national government departments, cities, Local Enterprise Partnerships (LEPs) as well as business, NGOs and research institutions to discuss the key challenges facing the United Kingdom in building more and better quality jobs




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Managing pesticide risk to insect pollinators: new website

This website gives information about the regulatory approaches adopted by OECD member countries to mitigate pesticide risks to insect pollinators. Following a survey of OECD member countries, it was concluded that mitigation of risks to insect pollinators is important to all its member countries, and that mitigation is a critical component of balancing the benefits of plant protection products with potential risks to insect pollinators.




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The Branch Managar State Bank Of ... vs The Managing Director Nakoda ... on 21 January, 2020

>. Learned counsel for the appellants has also filed written notes of arguments and in reply a further written note of arguments has been filed by learned counsel for the respondent. The respondent, as an account holder in the State Bank of India (SBI), suffered a loss of Rs. 18,35 lakh through 20 internet transactions and the money was transferred to 20 accounts, all with the SBI. The account holder/complainant filed Petition No. 1 of 2013 before the leamed A.O./Secretary to Government, Information Technology, Electronics and Communications Department, Government of Andhra Pradesh. After hearing the parties in detail and taking into consideration the defence of the Bank, which is the appellants herein, and all the relevant documents, learned A.O. by the impugned order dated 12,3.2014 has allowed claim of the complainant who is respondent herein and directed SBI to pay the entire amount of Rs. 18.35 lakh with interest from the date of loss ie. 13.5.2012 till the date of payment along with the costs of Rs. 39,750.00. The rate of interest is 18% per annum. Admittedly, nothing has been paid by SBI so far.




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Meet Jen Gunter: The doctor waging war on the cult of wellness

She's the internet's resident gynaecologist who deals in straight-talk, hard facts and medical science. So profiteering gurus who peddle myths and misinformation make her want to scream




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Punjab cancels holidays, leaves of staff engaged in managing COVID-19




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Apologise for mismanaging pilgrims' return: Sukhbir to Amarinder




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Inebriated man held for creatingruckus, damaging police vehicle

A man was arrested for allegedly creating ruckus and damaging a police vehicle in an inebriated state in east Delhi’s Kalyanpuri, the police said on S




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Coherent Bragg imaging of 60 nm Au nanoparticles under electrochemical control at the NanoMAX beamline

Nanoparticles are essential electrocatalysts in chemical production, water treatment and energy conversion, but engineering efficient and specific catalysts requires understanding complex structure–reactivity relations. Recent experiments have shown that Bragg coherent diffraction imaging might be a powerful tool in this regard. The technique provides three-dimensional lattice strain fields from which surface reactivity maps can be inferred. However, all experiments published so far have investigated particles an order of magnitude larger than those used in practical applications. Studying smaller particles quickly becomes demanding as the diffracted intensity falls. Here, in situ nanodiffraction data from 60 nm Au nanoparticles under electrochemical control collected at the hard X-ray nanoprobe beamline of MAX IV, NanoMAX, are presented. Two-dimensional image reconstructions of these particles are produced, and it is estimated that NanoMAX, which is now open for general users, has the requisites for three-dimensional imaging of particles of a size relevant for catalytic applications. This represents the first demonstration of coherent X-ray diffraction experiments performed at a diffraction-limited storage ring, and illustrates the importance of these new sources for experiments where coherence properties become crucial.




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Progress in HAXPES performance combining full-field k-imaging with time-of-flight recording

An alternative approach to hard-X-ray photoelectron spectroscopy (HAXPES) has been established. The instrumental key feature is an increase of the dimensionality of the recording scheme from 2D to 3D. A high-energy momentum microscope detects electrons with initial kinetic energies up to 8 keV with a k-resolution of 0.025 Å−1, equivalent to an angular resolution of 0.034°. A special objective lens with k-space acceptance up to 25 Å−1 allows for simultaneous full-field imaging of many Brillouin zones. Combined with time-of-flight (ToF) parallel energy recording this yields maximum parallelization. Thanks to the high brilliance (1013 hν s−1 in a spot of <20 µm diameter) of beamline P22 at PETRA III (Hamburg, Germany), the microscope set a benchmark in HAXPES recording speed, i.e. several million counts per second for core-level signals and one million for d-bands of transition metals. The concept of tomographic k-space mapping established using soft X-rays works equally well in the hard X-ray range. Sharp valence band k-patterns of Re, collected at an excitation energy of 6 keV, correspond to direct transitions to the 28th repeated Brillouin zone. Measured total energy resolutions (photon bandwidth plus ToF-resolution) are 62 meV and 180 meV FWHM at 5.977 keV for monochromator crystals Si(333) and Si(311) and 450 meV at 4.0 keV for Si(111). Hard X-ray photoelectron diffraction (hXPD) patterns with rich fine structure are recorded within minutes. The short photoelectron wavelength (10% of the interatomic distance) `amplifies' phase differences, making full-field hXPD a sensitive structural tool.




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Methods for dynamic synchrotron X-ray respiratory imaging in live animals

Small-animal physiology studies are typically complicated, but the level of complexity is greatly increased when performing live-animal X-ray imaging studies at synchrotron and compact light sources. This group has extensive experience in these types of studies at the SPring-8 and Australian synchrotrons, as well as the Munich Compact Light Source. These experimental settings produce unique challenges. Experiments are always performed in an isolated radiation enclosure not specifically designed for live-animal imaging. This requires equipment adapted to physiological monitoring and test-substance delivery, as well as shuttering to reduce the radiation dose. Experiment designs must also take into account the fixed location, size and orientation of the X-ray beam. This article describes the techniques developed to overcome the challenges involved in respiratory X-ray imaging of live animals at synchrotrons, now enabling increasingly sophisticated imaging protocols.




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Formation of a highly dense tetra-rhenium cluster in a protein crystal and its implications in medical imaging

The fact that a protein crystal can serve as a chemical reaction vessel is intrinsically fascinating. That it can produce an electron-dense tetranuclear rhenium cluster compound from a rhenium tri­carbonyl tri­bromo starting compound adds to the fascination. Such a cluster has been synthesized previously in vitro, where it formed under basic conditions. Therefore, its synthesis in a protein crystal grown at pH 4.5 is even more unexpected. The X-ray crystal structures presented here are for the protein hen egg-white lysozyme incubated with a rhenium tri­carbonyl tri­bromo compound for periods of one and two years. These reveal a completed, very well resolved, tetra-rhenium cluster after two years and an intermediate state, where the carbonyl ligands to the rhenium cluster are not yet clearly resolved, after one year. A dense tetranuclear rhenium cluster, and its technetium form, offer enhanced contrast in medical imaging. Stimulated by these crystallography results, the unusual formation of such a species directly in an in vivo situation has been considered. It offers a new option for medical imaging compounds, particularly when considering the application of the pre-formed tetranuclear cluster, suggesting that it may be suitable for medical diagnosis because of its stability, preference of formation and biological compatibility.




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The achievable resolution for X-ray imaging of cells and other soft biological material

X-ray imaging of soft materials is often difficult because of the low contrast of the components. This particularly applies to frozen hydrated biological cells where the feature of interest can have a similar density to the surroundings. As a consequence, a high dose is often required to achieve the desired resolution. However, the maximum dose that a specimen can tolerate is limited by radiation damage. Results from 3D coherent diffraction imaging (CDI) of frozen hydrated specimens have given resolutions of ∼80 nm compared with the expected resolution of 10 nm predicted from theoretical considerations for identifying a protein embedded in water. Possible explanations for this include the inapplicability of the dose-fractionation theorem, the difficulty of phase determination, an overall object-size dependence on the required fluence and dose, a low contrast within the biological cell, insufficient exposure, and a variety of practical difficulties such as scattering from surrounding material. A recent article [Villaneuva-Perez et al. (2018), Optica, 5, 450–457] concluded that imaging by Compton scattering gave a large dose advantage compared with CDI because of the object-size dependence for CDI. An object-size dependence would severely limit the applicability of CDI and perhaps related coherence-based methods for structural studies. This article specifically includes the overall object size in the analysis of the fluence and dose requirements for coherent imaging in order to investigate whether there is a dependence on object size. The applicability of the dose-fractionation theorem is also discussed. The analysis is extended to absorption-based imaging and imaging by incoherent scattering (Compton) and fluorescence. This article includes analysis of the dose required for imaging specific low-contrast cellular organelles as well as for protein against water. This article concludes that for both absorption-based and coherent diffraction imaging, the dose-fractionation theorem applies and the required dose is independent of the overall size of the object. For incoherent-imaging methods such as Compton scattering, the required dose depends on the X-ray path length through the specimen. For all three types of imaging, the dependence of fluence and dose on a resolution d goes as 1/d4 when imaging uniform-density voxels. The independence of CDI on object size means that there is no advantage for Compton scattering over coherent-based imaging methods. The most optimistic estimate of achievable resolution is 3 nm for imaging protein molecules in water/ice using lensless imaging methods in the water window. However, the attainable resolution depends on a variety of assumptions including the model for radiation damage as a function of resolution, the efficiency of any phase-retrieval process, the actual contrast of the feature of interest within the cell and the definition of resolution itself. There is insufficient observational information available regarding the most appropriate model for radiation damage in frozen hydrated biological material. It is advocated that, in order to compare theory with experiment, standard methods of reporting results covering parameters such as the feature examined (e.g. which cellular organelle), resolution, contrast, depth of the material (for 2D), estimate of noise and dose should be adopted.




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Visualization of protein crystals by high-energy phase-contrast X-ray imaging

For the extraction of the best possible X-ray diffraction data from macromolecular crystals, accurate positioning of the crystals with respect to the X-ray beam is crucial. In addition, information about the shape and internal defects of crystals allows the optimization of data-collection strategies. Here, it is demonstrated that the X-ray beam available on the macromolecular crystallo­graphy beamline P14 at the high-brilliance synchrotron-radiation source PETRA III at DESY, Hamburg, Germany can be used for high-energy phase-contrast microtomography of protein crystals mounted in an optically opaque lipidic cubic phase matrix. Three-dimensional tomograms have been obtained at X-ray doses that are substantially smaller and on time scales that are substantially shorter than those used for diffraction-scanning approaches that display protein crystals at micrometre resolution. Adding a compound refractive lens as an objective to the imaging setup, two-dimensional imaging at sub-micrometre resolution has been achieved. All experiments were performed on a standard macromolecular crystallography beamline and are compatible with standard diffraction data-collection workflows and apparatus. Phase-contrast X-ray imaging of macromolecular crystals could find wide application at existing and upcoming low-emittance synchrotron-radiation sources.




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Shack–Hartmann wavefront sensors based on 2D refractive lens arrays and super-resolution multi-contrast X-ray imaging

Different approaches of 2D lens arrays as Shack–Hartmann sensors for hard X-rays are compared. For the first time, a combination of Shack–Hartmann sensors for hard X-rays (SHSX) with a super-resolution imaging approach to perform multi-contrast imaging is demonstrated. A diamond lens is employed as a well known test object. The interleaving approach has great potential to overcome the 2D lens array limitation given by the two-photon polymerization lithography. Finally, the radiation damage induced by continuous exposure of an SHSX prototype with a white beam was studied showing a good performance of several hours. The shape modification and influence in the final image quality are presented.




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Synchrotron multimodal imaging in a whole cell reveals lipid droplet core organization

A lipid droplet (LD) core of a cell consists mainly of neutral lipids, triacylglycerols and/or steryl esters (SEs). The structuration of these lipids inside the core is still under debate. Lipid segregation inside LDs has been observed but is sometimes suggested to be an artefact of LD isolation and chemical fixation. LD imaging in their native state and in unaltered cellular environments appears essential to overcome these possible technical pitfalls. Here, imaging techniques for ultrastructural study of native LDs in cellulo are provided and it is shown that LDs are organized structures. Cryo soft X-ray tomography and deep-ultraviolet (DUV) transmittance imaging are showing a partitioning of SEs at the periphery of the LD core. Furthermore, DUV transmittance and tryptophan/tyrosine auto-fluorescence imaging on living cells are combined to obtain complementary information on cell chemical contents. This multimodal approach paves the way for a new label-free organelle imaging technique in living cells.




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Quantitative three-dimensional nondestructive imaging of whole anaerobic ammonium-oxidizing bacteria

Anaerobic ammonium-oxidizing (anammox) bacteria play a key role in the global nitrogen cycle and in nitrogenous wastewater treatment. The anammox bacteria ultrastructure is unique and distinctly different from that of other prokaryotic cells. The morphological structure of an organism is related to its function; however, research on the ultrastructure of intact anammox bacteria is lacking. In this study, in situ three-dimensional nondestructive ultrastructure imaging of a whole anammox cell was performed using synchrotron soft X-ray tomography (SXT) and the total variation-based simultaneous algebraic reconstruction technique (TV-SART). Statistical and quantitative analyses of the intact anammox bacteria were performed. High soft X-ray absorption composition inside anammoxosome was detected and verified to be relevant to iron-binding protein. On this basis, the shape adaptation of the anammox bacteria response to iron was explored.




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Laser-induced metastable mixed phase of AuNi nanoparticles: a coherent X-ray diffraction imaging study

The laser annealing process for AuNi nanoparticles has been visualized using coherent X-ray diffraction imaging (CXDI). AuNi bimetallic alloy nanoparticles, originally phase separated due to the miscibility gap, transform to metastable mixed alloy particles with rounded surface as they are irradiated by laser pulses. A three-dimensional CXDI shows that the internal part of the AuNi particles is in the mixed phase with preferred compositions at ∼29 at% of Au and ∼90 at% of Au.




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Development of an X-ray imaging detector for high-energy X-ray microtomography

A dedicated X-ray imaging detector for 200 keV high-energy X-ray microtomography was developed to realize high-efficiency high-resolution imaging while keeping the field of view wide.




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Bragg Edge Analysis for Transmission Imaging Experiments software tool: BEATRIX

BEATRIX, is a new tool for performing data analysis of energy-resolved neutron-imaging experiments involving intense fitting procedures of multi-channel spectra. The use of BEATRIX is illustrated for a test specimen, providing spatially resolved 2D maps for residual strains and Bragg edge heights.




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AMi: a GUI-based, open-source system for imaging samples in multi-well plates

Described here are instructions for building and using an inexpensive automated microscope (AMi) that has been specifically designed for viewing and imaging the contents of multi-well plates. The X, Y, Z translation stage is controlled through dedicated software (AMiGUI) that is being made freely available. Movements are controlled by an Arduino-based board running grbl, and the graphical user interface and image acquisition are controlled via a Raspberry Pi microcomputer running Python. Images can be written to the Raspberry Pi or to a remote disk. Plates with multiple sample wells at each row/column position are supported, and a script file for automated z-stack depth-of-field enhancement is written along with the images. The graphical user interface and real-time imaging also make it easy to manually inspect and capture images of individual samples.




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X-Class flares released by the Sun, March 6, captured by Atmospheric Imaging Assembly

The Sun’s Active Region 1429 has been shooting off flares and coronal mass ejections since it rotated into Earth’s view on March 2, 2012. Two X-class flares have been released overnight, an X1.3 and an X5.4.

The post X-Class flares released by the Sun, March 6, captured by Atmospheric Imaging Assembly appeared first on Smithsonian Insider.




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3-D imaging adds remarkable new understanding of North America’s mysterious Clovis people

The only explanation for such symmetry across these vast distances, explains Smithsonian anthropologist Dennis Stanford, is that the method of creating the points was handed down from person to person.

The post 3-D imaging adds remarkable new understanding of North America’s mysterious Clovis people appeared first on Smithsonian Insider.




aging

Ancient mummies reveal atherosclerosis is very likely just a part of aging

Cheeseburgers. Ice cream. French fries. These are a few of the culprits, doctors warn us, responsible for atherosclerosis, a disease commonly known as hardening of […]

The post Ancient mummies reveal atherosclerosis is very likely just a part of aging appeared first on Smithsonian Insider.





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Spectacular June 7 solar flare seen through the Atmospheric Imaging Assembly aboard Solar Dynamics Observatory

On June 7 the Sun unleashed an spectacular solar flare with a substantial coronal mass ejection. A large cloud of plasma mushroomed up, and while some parts fell back into the Sun, most rushed off into space. The first two segments of this video are seen through the Atmospheric Imaging Assembly aboard NASA's Solar Dynamics Observatory. The AIA was developed by Smithsonian scientists.

The post Spectacular June 7 solar flare seen through the Atmospheric Imaging Assembly aboard Solar Dynamics Observatory appeared first on Smithsonian Insider.




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3-D imaging takes Smithsonian from Washington to the world

The Smithsonian has launched an ambitious project to scan millions of items and make them available to the world on a searchable database. CBS reporter […]

The post 3-D imaging takes Smithsonian from Washington to the world appeared first on Smithsonian Insider.




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Otterly engaging: Zoo enrichment

What’s an Asian small-clawed otter’s favorite enrichment toy? Anything it can get its paws on! This species’ dexterous, partially-webbed digits are adept at feeling for […]

The post Otterly engaging: Zoo enrichment appeared first on Smithsonian Insider.




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Encouraging city workers to use green spaces

Changing lifestyles are causing city workers to ignore the positive experiences of urban green spaces during their working week. A recent study suggests city planners could do more to promote the benefits of going outdoors to city dwellers.




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Flexibility is key to managing urban sprawl

As society changes, it places new demands on its surroundings. New research has found that some EU countries are better able to manage the undesirable expansion of cities, the concept known as ‘urban sprawl’, because they have a flexible spatial planning policy that can easily adapt to changes. Urban sprawl is a term used to describe the expansion of residential suburbs around city centres, driven by peoples’ desire to live in larger houses and the ease of transport made possible by cars.




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IBM OS/2 Hard Drive Imaging/Cloning




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Relationships, Rigor, and Relevance - The Three Rs of Engaging Students in Urban High Schools

High schools that successfully engage students in learning have many things in common.




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Population Aging Will Have Long-Term Implications for Economy - Major Policy Changes Needed

The aging of the U.S. population will have broad economic consequences for the country, particularly for federal programs that support the elderly, and its long-term effects on all generations will be mediated by how -- and how quickly -- the nation responds, says a new congressionally mandated report from the National Research Council.




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New Report Informs Social Security’s Process for Determining Whether Beneficiaries Are Capable of Managing Their Benefits

The best indicator of whether a disabled adult who receives Social Security benefits is capable of managing his or her benefits is evidence of real-world performance of meeting his or her own basic needs, rather than an office-based assessment of financial competence, says a new report from the National Academies of Sciences, Engineering, and Medicine.




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Evidence Supporting Three Interventions That Might Slow Cognitive Decline and the Onset of Dementia Is Encouraging but Insufficient to Justify a Public Health Campaign Focused on Their Adoption

Cognitive training, blood pressure management for people with hypertension, and increased physical activity all show modest but inconclusive evidence that they can help prevent cognitive decline and dementia, but there is insufficient evidence to support a public health campaign encouraging their adoption, says a new report from the National Academies of Sciences, Engineering, and Medicine.




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NASA Should Lead a Large Direct Imaging Mission to Study Earth-Like Exoplanets, Says New Report

To answer significant questions about planetary systems, such as whether our solar system is a rare phenomenon or if life exists on planets other than Earth, NASA should lead a large direct imaging mission – an advanced space telescope – capable of studying Earth-like exoplanets orbiting stars similar to the sun, says a new congressionally mandated report by the National Academies of Sciences, Engineering, and Medicine.




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Dispersants Can Be an Effective Tool for Managing Impacts During a Major Marine Oil Spill, Report Concludes

A new report from the National Academies of Sciences, Engineering, and Medicine examines the effects and efficacy of using dispersants in marine oil spill response.