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Scientists find excess nitrogen favors plants that respond poorly to rising CO2

Two grass species that had been relatively rare in the plots, Spartina patens and Distichlis spicata, began to respond vigorously to the excess nitrogen. Eventually the grasses became much more abundant. Nitrogen ultimately changed the composition of the ecosystem as well as its capacity to store carbon.

The post Scientists find excess nitrogen favors plants that respond poorly to rising CO2 appeared first on Smithsonian Insider.




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High CO2 spurs wetlands to absorb more carbon

Under elevated carbon dioxide levels, wetland plants can absorb up to 32 percent more carbon than they do at current levels, according to a 19-year […]

The post High CO2 spurs wetlands to absorb more carbon appeared first on Smithsonian Insider.




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The strange, controversial way plants trap CO2

Plants are among the world’s best carbon sinks, but there’s a side to the plant-CO2 love affair that’s rarely discussed. When carbon dioxide rises, plants […]

The post The strange, controversial way plants trap CO2 appeared first on Smithsonian Insider.




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Agustín Stahl: Scientist Who Introduced the “Arbol de Navidad” (Christmas Tree) to Puerto Rico

Ubiquitous as they may be today, the origin of the Christmas tree is unknown to most. The tradition of decorating a tree, usually an evergreen […]

The post Agustín Stahl: Scientist Who Introduced the “Arbol de Navidad” (Christmas Tree) to Puerto Rico appeared first on Smithsonian Insider.




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Discovery: Rising CO2 depletes pollen’s nutritional potency, bees suffer

Unless you’ve been living under a rock for the last few years, you’ve doubtless caught at least a passing reference to the plight of the […]

The post Discovery: Rising CO2 depletes pollen’s nutritional potency, bees suffer appeared first on Smithsonian Insider.




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Smithsonian To Convene Earth Optimism Summit April 21–23

On Earth Day weekend, the Smithsonian will convene the first Earth Optimism Summit, a three-day event featuring more than 150 scientists, thought leaders, philanthropists, conservationists […]

The post Smithsonian To Convene Earth Optimism Summit April 21–23 appeared first on Smithsonian Insider.



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  • Smithsonian Tropical Research Institute
  • Smithsonian's National Zoo

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Comparison of two MnIVMnIV-bis-μ-oxo complexes, {[MnIV{N4(6-Me-DPEN)}]2(μ-O)2}2+ and {[MnIV{N4(6-Me-DPPN)}]2(μ-O)2}2+

The addition of tert-butyl hydro­peroxide (tBuOOH) to two MnII complexes, differing by a small synthetic alteration from an ethyl to a propyl linker in the ligand scaffold, results in the formation of the high-valent bis-oxo complexes, {[MnIV{N4(6-Me-DPEN)}]2(μ-O)2}2+ (1) and {[MnIV{N4(6-Me-DPPN)}]2(μ-O)2}2+ (2).




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The missing crystal structure in the series of N,N',N''-tris­(pyridin-2-yl)benzene-1,3,5-tricarboxamides: the 2-pyridinyl derivative

In the first reported crystal structure involving the potential ligand N,N',N''-tris­(2-pyridin­yl)-1,3,5-benzene­tricarboxamide, inter­molecular N—H⋯O hydrogen bonds link the mol­ecules via their amide groups into slanted ladder-like chains. Only two of the three amide groups in the mol­ecule are involved in hydrogen bonding, which influences the degree of out-of-plane twisting at each amide group.




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Crystal structure and Hirshfeld surface analysis of 4,4'-(propane-1,3-diyl)bis(4H-1,2,4-triazol-1-ium) penta­fluorido­oxidovanadate(V)

In the structure of the title salt, second-order Jahn–Teller distortion of the coordination octa­hedra around V ions is reflected by coexistence of short V—O bonds and trans-positioned long V—F bonds, with four equatorial V—F distances being inter­mediate in magnitude. Hydrogen bonding of the anions is restricted to F-atom acceptors only, with particularly strong N–H⋯F inter­actions [N⋯F = 2.5072 (15) Å] established by axial and cis-positioned equatorial F atoms.




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Synthesis and crystal structure of (1,10-phenanthroline-κ2N,N')[2-(1H-pyrazol-1-yl)phenyl-κ2N2,C1]iridium(III) hexa­fluorido­phosphate with an unknown number of solvent mol­ecules

The cationic cyclo­metallated iridium(III) complex [Ir(C9H7N2)2(C12H8N2)](PF6) has been synthesized and crystallized by the inter-diffusion method. It contains an unknown number of solvent mol­ecules and has a different space-group symmetry (C2/c) structure than its solvatomorph (P21/c).




2

Crystal structure and characterization of a new copper(II) chloride dimer with meth­yl(pyridin-2-yl­methyl­idene)amine

The new copper(II) complex [CuLCl2]2, where L is a product of Schiff base condensation between methyl­amine and 2-pyridine­carbaldehyde, is built of discrete centrosymmetric dimers.




2

Crystal structure, Hirshfeld surface analysis and DFT studies of 2-(2,3-di­hydro-1H-perimidin-2-yl)phenol

The asymmetric unit of the title compound contains two independent mol­ecules, consisting of perimidine and phenol units, which are linked through an N—H⋯O hydrogen bond. Intra­molecular O—H⋯N hydrogen bonds are observed in both independent mol­ecules.




2

The crystal structure and Hirshfeld surface analysis of 1-(2,5-di­meth­oxy­phen­yl)-2,2,6,6-tetra­methyl­piperidine

The title compound, 1-(2,5-di­meth­oxy­phen­yl)-2,2,6,6-tetra­methyl­piperidine, was synthesized as a side-product during the synthesis of the inter­mediate, methyl 3,6-dimeth­oxy-2-(2-meth­oxy-2-oxoeth­yl)benzoate, necessary for the total synthesis of the isocoumarin 5,8-dimeth­oxy-3-methyl-1H-isochromen-1-one.




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Crystal structure and Hirshfeld surface analysis of 4-{2,2-di­chloro-1-[(E)-(4-fluoro­phen­yl)diazen­yl]ethen­yl}-N,N-di­methyl­aniline

The dihedral angle between the two aromatic rings of the title compound is 64.12 (14)°. The crystal structure is stabilized by a short Cl⋯H contact, C—Cl⋯π and van der Waals inter­actions.




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Gjønnes Medal in Electron Crystallography – call for nominations




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Report of the Executive Committee for 2017

The report of the Executive Committee for 2017 is presented.




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MATLAB - When opening a text file with UTF-16 or UTF-32 encoding using the Import Tool, a warning message is shown, and if you proceed, the data may not be imported correctly.

If you try to open a text file with UTF-16 or UTF-32 encoding, the Import Tool displays a warning message stating that the encoding is not supported.  If you continue to load the file anyways, it is opened with UTF-8 encoding, and the file may not be displayed or imported as expected.This bug exists in the following release(s):
R2020a

This bug has a workaround

Interested in Upgrading?




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DataVisor Fraud Index Report: Q2 2019

Customers online want convenience, ease, and access. Fortunately, your business offers it all. Unfortunately, thats what fraudsters want too.





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The Open Banking Report 2019 - Insights into the Global Open Banking Landscape

The Open Banking Report 2019 clarifies the role of key key-players in a post-September 14th world and assesses how the landscape has shifted within Europe and beyond.




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Fraud Prevention and Online Authentication Report 2019/2020

The new edition of the Fraud Prevention and Online Authentication Report 2019/2020 offers an overview of the latest challenges, innovations, and perspectives in the fraud landscape.




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Cross-Border Payments and Commerce Report 2019 – 2020

The new Cross-Border Payments and Commerce Report 2019 – 2020 depicts the major trends driving growth in cross-border payments, cross-border commerce, and marketplaces.




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Digital onboarding begins the moment a customer wants to use your products and services and it requires a careful mix of technology and data




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Who's Who in Payments 2020 – Complete Overview of Key Payment Providers

Who’s Who in Payments – Complete Overview of Key Payment Providers encompasses key trends in the payments industry.




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Does the PSD2 SCA mandate in payment processing prevent fraud under GDPR Recital 47?

The GDC Compliance Advisory Board (CAB) provides insight into how to interpret the Strong Consumer Authentication (SCA) mandate described in PSD 2 without jeopardizing data privacy concerns protected by GDPR. 




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Crystal structure and Hirshfeld surface analysis of 4-{2,2-dichloro-1-[(E)-(4-fluorophenyl)diazenyl]ethenyl}-N,N-dimethylaniline

In the title compound, C16H14Cl2FN3, the dihedral angle between the two aromatic rings is 64.12 (14)°. The crystal structure is stabilized by a short Cl...H contact, C—Cl...π and van der Waals interactions. The Hirshfeld surface analysis and two-dimensional fingerprint plots show that H...H (33.3%), Cl...H/H...Cl (22.9%) and C...H/H...C (15.5%) interactions are the most important contributors towards the crystal packing.