nsit Iterative Bragg peak removal on X-ray absorption spectra with automatic intensity correction By journals.iucr.org Published On :: 2024-04-09 This study introduces a novel iterative Bragg peak removal with automatic intensity correction (IBR-AIC) methodology for X-ray absorption spectroscopy (XAS), specifically addressing the challenge of Bragg peak interference in the analysis of crystalline materials. The approach integrates experimental adjustments and sophisticated post-processing, including an iterative algorithm for robust calculation of the scaling factor of the absorption coefficients and efficient elimination of the Bragg peaks, a common obstacle in accurately interpreting XAS data, particularly in crystalline samples. The method was thoroughly evaluated on dilute catalysts and thin films, with fluorescence mode and large-angle rotation. The results underscore the technique's effectiveness, adaptability and substantial potential in improving the precision of XAS data analysis. While demonstrating significant promise, the method does have limitations related to signal-to-noise ratio sensitivity and the necessity for meticulous angle selection during experimentation. Overall, IBR-AIC represents a significant advancement in XAS, offering a pragmatic solution to Bragg peak contamination challenges, thereby expanding the applications of XAS in understanding complex materials under diverse experimental conditions. Full Article text
nsit X-ray lens figure errors retrieved by deep learning from several beam intensity images By journals.iucr.org Published On :: 2024-07-23 The phase problem in the context of focusing synchrotron beams with X-ray lenses is addressed. The feasibility of retrieving the surface error of a lens system by using only the intensity of the propagated beam at several distances is demonstrated. A neural network, trained with a few thousand simulations using random errors, can predict accurately the lens error profile that accounts for all aberrations. It demonstrates the feasibility of routinely measuring the aberrations induced by an X-ray lens, or another optical system, using only a few intensity images. Full Article text
nsit High-angular-sensitivity X-ray phase-contrast microtomography of soft tissue through a two-directional beam-tracking synchrotron set-up By journals.iucr.org Published On :: 2024-07-15 Two-directional beam-tracking (2DBT) is a method for phase-contrast imaging and tomography that uses an intensity modulator to structure the X-ray beam into an array of independent circular beamlets that are resolved by a high-resolution detector. It features isotropic spatial resolution, provides two-dimensional phase sensitivity, and enables the three-dimensional reconstructions of the refractive index decrement, δ, and the attenuation coefficient, μ. In this work, the angular sensitivity and the spatial resolution of 2DBT images in a synchrotron-based implementation is reported. In its best configuration, angular sensitivities of ∼20 nrad and spatial resolution of at least 6.25 µm in phase-contrast images were obtained. Exemplar application to the three-dimensional imaging of soft tissue samples, including a mouse liver and a decellularized porcine dermis, is also demonstrated. Full Article text
nsit Indirect detector for ultra-high-speed X-ray micro-imaging with increased sensitivity to near-ultraviolet scintillator emission By journals.iucr.org Published On :: 2024-08-28 Ultra-high-speed synchrotron-based hard X-ray (i.e. above 10 keV) imaging is gaining a growing interest in a number of scientific domains for tracking non-repeatable dynamic phenomena at spatio-temporal microscales. This work describes an optimized indirect X-ray imaging microscope designed to achieve high performance at micrometre pixel size and megahertz acquisition speed. The entire detector optical arrangement has an improved sensitivity within the near-ultraviolet (NUV) part of the emitted spectrum (i.e. 310–430 nm wavelength). When combined with a single-crystal fast-decay scintillator, such as LYSO:Ce (Lu2−xYxSiO5:Ce), it exploits the potential of the NUV light-emitting scintillators. The indirect arrangement of the detector makes it suitable for high-dose applications that require high-energy illumination. This allows for synchrotron single-bunch hard X-ray imaging to be performed with improved true spatial resolution, as herein exemplified through pulsed wire explosion and superheated near-nozzle gasoline injection experiments at a pixel size of 3.2 µm, acquisition rates up to 1.4 MHz and effective exposure time down to 60 ps. Full Article text
nsit Synthesis, characterization and structural analysis of complexes from 2,2':6',2''-terpyridine derivatives with transition metals By journals.iucr.org Published On :: 2024-05-16 The synthesis and structural characterization of three families of coordination complexes synthesized from 4'-phenyl-2,2':6',2''-terpyridine (8, Ph-TPY), 4'-(4-chlorophenyl)-2,2':6',2''-terpyridine (9, ClPh-TPY) and 4'-(4-methoxyphenyl)-2,2':6',2''-terpyridine (10, MeOPh-TPY) ligands with the divalent metals Co2+, Fe2+, Mn2+ and Ni2+ are reported. The compounds were synthesized from a 1:2 mixture of the metal and ligand, resulting in a series of complexes with the general formula [M(R-TPY)2](ClO4)2 (where M = Co2+, Fe2+, Mn2+ and Ni2+, and R-TPY = Ph-TPY, ClPh-TPY and MeOPh-TPY). The general formula and structural and supramolecular features were determinated by single-crystal X-ray diffraction for bis(4'-phenyl-2,2':6',2''-terpyridine)nickel(II) bis(perchlorate), [Ni(C21H15N3)2](ClO4)2 or [Ni(Ph-TPY)2](ClO4)2, bis[4'-(4-methoxyphenyl)-2,2':6',2''-terpyridine]manganese(II) bis(perchlorate), [Mn(C22H17N3O)2](ClO4)2 or [Mn(MeOPh-TPY)2](ClO4)2, and bis(4'-phenyl-2,2':6',2''-terpyridine)manganese(II) bis(perchlorate), [Mn(C21H15N3)2](ClO4)2 or [Mn(Ph-TPY)2](ClO4)2. In all three cases, the complexes present distorted octahedral coordination polyhedra and the crystal packing is determined mainly by weak C—H⋯π interactions. All the compounds (except for the Ni derivatives, for which FT–IR, UV–Vis and thermal analysis are reported) were fully characterized by spectroscopic (FT–IR, UV–Vis and NMR spectroscopy) and thermal (TGA–DSC, thermogravimetric analysis–differential scanning calorimetry) methods. Full Article text
nsit High-confidence placement of low-occupancy fragments into electron density using the anomalous signal of sulfur and halogen atoms By journals.iucr.org Published On :: 2024-06-05 Fragment-based drug design using X-ray crystallography is a powerful technique to enable the development of new lead compounds, or probe molecules, against biological targets. This study addresses the need to determine fragment binding orientations for low-occupancy fragments with incomplete electron density, an essential step before further development of the molecule. Halogen atoms play multiple roles in drug discovery due to their unique combination of electronegativity, steric effects and hydrophobic properties. Fragments incorporating halogen atoms serve as promising starting points in hit-to-lead development as they often establish halogen bonds with target proteins, potentially enhancing binding affinity and selectivity, as well as counteracting drug resistance. Here, the aim was to unambiguously identify the binding orientations of fragment hits for SARS-CoV-2 nonstructural protein 1 (nsp1) which contain a combination of sulfur and/or chlorine, bromine and iodine substituents. The binding orientations of carefully selected nsp1 analogue hits were focused on by employing their anomalous scattering combined with Pan-Dataset Density Analysis (PanDDA). Anomalous difference Fourier maps derived from the diffraction data collected at both standard and long-wavelength X-rays were compared. The discrepancies observed in the maps of iodine-containing fragments collected at different energies were attributed to site-specific radiation-damage stemming from the strong X-ray absorption of I atoms, which is likely to cause cleavage of the C—I bond. A reliable and effective data-collection strategy to unambiguously determine the binding orientations of low-occupancy fragments containing sulfur and/or halogen atoms while mitigating radiation damage is presented. Full Article text
nsit Pillar data-acquisition strategies for cryo-electron tomography of beam-sensitive biological samples By journals.iucr.org Published On :: 2024-06-03 For cryo-electron tomography (cryo-ET) of beam-sensitive biological specimens, a planar sample geometry is typically used. As the sample is tilted, the effective thickness of the sample along the direction of the electron beam increases and the signal-to-noise ratio concomitantly decreases, limiting the transfer of information at high tilt angles. In addition, the tilt range where data can be collected is limited by a combination of various sample-environment constraints, including the limited space in the objective lens pole piece and the possible use of fixed conductive braids to cool the specimen. Consequently, most tilt series are limited to a maximum of ±70°, leading to the presence of a missing wedge in Fourier space. The acquisition of cryo-ET data without a missing wedge, for example using a cylindrical sample geometry, is hence attractive for volumetric analysis of low-symmetry structures such as organelles or vesicles, lysis events, pore formation or filaments for which the missing information cannot be compensated by averaging techniques. Irrespective of the geometry, electron-beam damage to the specimen is an issue and the first images acquired will transfer more high-resolution information than those acquired last. There is also an inherent trade-off between higher sampling in Fourier space and avoiding beam damage to the sample. Finally, the necessity of using a sufficient electron fluence to align the tilt images means that this fluence needs to be fractionated across a small number of images; therefore, the order of data acquisition is also a factor to consider. Here, an n-helix tilt scheme is described and simulated which uses overlapping and interleaved tilt series to maximize the use of a pillar geometry, allowing the entire pillar volume to be reconstructed as a single unit. Three related tilt schemes are also evaluated that extend the continuous and classic dose-symmetric tilt schemes for cryo-ET to pillar samples to enable the collection of isotropic information across all spatial frequencies. A fourfold dose-symmetric scheme is proposed which provides a practical compromise between uniform information transfer and complexity of data acquisition. Full Article text
nsit STEM SerialED: achieving high-resolution data for ab initio structure determination of beam-sensitive nanocrystalline materials By journals.iucr.org Published On :: 2024-01-01 Serial electron diffraction (SerialED), which applies a snapshot data acquisition strategy for each crystal, was introduced to tackle the problem of radiation damage in the structure determination of beam-sensitive materials by three-dimensional electron diffraction (3DED). The snapshot data acquisition in SerialED can be realized using both transmission and scanning transmission electron microscopes (TEM/STEM). However, the current SerialED workflow based on STEM setups requires special external devices and software, which limits broader adoption. Here, we present a simplified experimental implementation of STEM-based SerialED on Thermo Fisher Scientific STEMs using common proprietary software interfaced through Python scripts to automate data collection. Specifically, we utilize TEM Imaging and Analysis (TIA) scripting and TEM scripting to access the STEM functionalities of the microscope, and DigitalMicrograph scripting to control the camera for snapshot data acquisition. Data analysis adapts the existing workflow using the software CrystFEL, which was developed for serial X-ray crystallography. Our workflow for STEM SerialED can be used on any Gatan or Thermo Fisher Scientific camera. We apply this workflow to collect high-resolution STEM SerialED data from two aluminosilicate zeolites, zeolite Y and ZSM-25. We demonstrate, for the first time, ab initio structure determination through direct methods using STEM SerialED data. Zeolite Y is relatively stable under the electron beam, and STEM SerialED data extend to 0.60 Å. We show that the structural model obtained using STEM SerialED data merged from 358 crystals is nearly identical to that using continuous rotation electron diffraction data from one crystal. This demonstrates that accurate structures can be obtained from STEM SerialED. Zeolite ZSM-25 is very beam-sensitive and has a complex structure. We show that STEM SerialED greatly improves the data resolution of ZSM-25, compared with serial rotation electron diffraction (SerialRED), from 1.50 to 0.90 Å. This allows, for the first time, the use of standard phasing methods, such as direct methods, for the ab initio structure determination of ZSM-25. Full Article text
nsit Persistence of atoms in molecules: there is room beyond electron densities By journals.iucr.org Published On :: 2024-02-20 Evidence that the electronic structure of atoms persists in molecules to a much greater extent than has been usually admitted is presented. This is achieved by resorting to N-electron real-space descriptors instead of one- or at most two-particle projections like the electron or exchange-correlation densities. Here, the 3N-dimensional maxima of the square of the wavefunction, the so-called Born maxima, are used. Since this technique is relatively unknown to the crystallographic community, a case-based approach is taken, revisiting first the Born maxima of atoms in their ground state and then some of their excited states. It is shown how they survive in molecules and that, beyond any doubt, the distribution of electrons around an atom in a molecule can be recognized as that of its isolated, in many cases excited, counterpart, relating this fact with the concept of energetic promotion. Several other cases that exemplify the applicability of the technique to solve chemical bonding conflicts and to introduce predictability in real-space analyses are also examined. Full Article text
nsit Photoinduced bidirectional mesophase transition in vesicles containing azobenzene amphiphiles By journals.iucr.org Published On :: 2024-05-28 The functionality and efficiency of proteins within a biological membrane are highly dependent on both the membrane lipid composition and the physiochemical properties of the solution. Lipid mesophases are directly influenced by changes in temperature, pH, water content or due to individual properties of single lipids such as photoswitchability. In this work, we were able to induce light- and temperature-driven mesophase transitions in a model membrane system containing a mixture of 1,2-dipalmitoyl-phosphatidylcholine phospholipids and azobenzene amphiphiles. We observed reversible and reproducible transitions between the lamellar and Pn3m cubic phase after illuminating the sample for 5 min with light of 365 and 455 nm wavelengths, respectively, to switch between the cis and trans states of the azobenzene N=N double bond. These light-controlled mesophase transitions were found for mixed complexes with up to 20% content of the photosensitive molecule and at temperatures below the gel-to-liquid crystalline phase transition temperature of 33°C. Our results demonstrate the potential to design bespoke model systems to study the response of membrane lipids and proteins upon changes in mesophase without altering the environment and thus provide a possible basis for drug delivery systems. Full Article text
nsit High-accuracy measurement, advanced theory and analysis of the evolution of satellite transitions in manganese Kα using XR-HERFD By journals.iucr.org Published On :: 2024-06-21 Here, the novel technique of extended-range high-energy-resolution fluorescence detection (XR-HERFD) has successfully observed the n = 2 satellite in manganese to a high accuracy. The significance of the satellite signature presented is many hundreds of standard errors and well beyond typical discovery levels of three to six standard errors. This satellite is a sensitive indicator for all manganese-containing materials in condensed matter. The uncertainty in the measurements has been defined, which clearly observes multiple peaks and structure indicative of complex physical quantum-mechanical processes. Theoretical calculations of energy eigenvalues, shake-off probability and Auger rates are also presented, which explain the origin of the satellite from physical n = 2 shake-off processes. The evolution in the intensity of this satellite is measured relative to the full Kα spectrum of manganese to investigate satellite structure, and therefore many-body processes, as a function of incident energy. Results demonstrate that the many-body reduction factor S02 should not be modelled with a constant value as is currently done. This work makes a significant contribution to the challenge of understanding many-body processes and interpreting HERFD or resonant inelastic X-ray scattering spectra in a quantitative manner. Full Article text
nsit Temperature-dependent solid-state phase transition with twinning in the crystal structure of 4-methoxyanilinium chloride By journals.iucr.org Published On :: 2024-01-01 At room temperature, the title salt, C7H10NO+·Cl−, is orthorhombic, space group Pbca with Z' = 1, as previously reported [Zhao (2009). Acta Cryst. E65, o2378]. Between 250 and 200 K, there is a solid-state phase transition to a twinned monoclinic P21/c structure with Z' = 2. We report the high temperature structure at 250 K and the low-temperature structure at 100 K. In the low-temperature structure, the –NH3 hydrogen atoms are ordered and this group has a different orientation in each independent molecule, in keeping with optimizing N—H⋯Cl hydrogen bonding, some of which are bifurcated: these hydrogen bonds have N⋯Cl distances in the range 3.1201 (8)–3.4047 (8) Å. In the single cation of the high-temperature structure, the NH hydrogen atoms are disordered into the average of the two low-temperature positions and the N⋯Cl hydrogen bond distances are in the range 3.1570 (15)–3.3323 (18) Å. At both temperatures, the methoxy group is nearly coplanar with the rest of the molecule, with the C—C—O—C torsion angles being −7.0 (2)° at 250 K and −6.94 (12) and −9.35 (12)° at 100 K. In the extended orthorhombic structure, (001) hydrogen-bonded sheets occur; in the monoclinic structure, the sheets propagate in the (010) plane. Full Article text
nsit Crystal structure, Hirshfeld surface analysis, calculations of crystal voids, interaction energy and energy frameworks as well as density functional theory (DFT) calculations of 3-[2-(morpholin-4-yl)ethyl]-5,5-diphenylimidazolidine By journals.iucr.org Published On :: 2024-03-26 In the title molecule, C21H23N3O3, the imidazolidine ring slightly deviates from planarity and the morpholine ring exhibits the chair conformation. In the crystal, N—H⋯O and C—H⋯O hydrogen bonds form helical chains of molecules extending parallel to the c axis that are connected by C—H⋯π(ring) interactions. A Hirshfeld surface analysis reveals that the most important contributions for the crystal packing are from H⋯H (55.2%), H⋯C/C⋯H (22.6%) and H⋯O/O⋯H (20.5%) interactions. The volume of the crystal voids and the percentage of free space were calculated to be 236.78 Å3 and 12.71%, respectively. Evaluation of the electrostatic, dispersion and total energy frameworks indicates that the stabilization is dominated by the nearly equal electrostatic and dispersion energy contributions. The DFT-optimized molecular structure at the B3LYP/6-311 G(d,p) level is compared with the experimentally determined molecular structure in the solid state. Moreover, the HOMO–LUMO behaviour was elucidated to determine the energy gap. Full Article text
nsit Reducing heat load density with asymmetric and inclined double-crystal monochromators: principles and requirements revisited By journals.iucr.org Published On :: The major principles and requirements of asymmetric and inclined double-crystal monochromators are re-examined and presented to guide their design and development for significantly reducing heat load density and gradient on the monochromators of fourth-generation synchrotron light sources and X-ray free-electron lasers. Full Article text
nsit Novel high-efficiency 2D position-sensitive ZnS:Ag/6LiF scintillator detector for neutron diffraction By journals.iucr.org Published On :: 2024-05-10 Scintillator-based ZnS:Ag/6LiF neutron detectors have been under development at ISIS for more than three decades. Continuous research and development aim to improve detector capabilities, achieve better performance and meet the increasingly demanding requirements set by neutron instruments. As part of this program, a high-efficiency 2D position-sensitive scintillator detector with wavelength-shifting fibres has been developed for neutron-diffraction applications. The detector consists of a double scintillator-fibre layer to improve detection efficiency. Each layer is made up of two orthogonal fibre planes placed between two ZnS:Ag/6LiF scintillator screens. Thin reflective foils are attached to the front and back scintillators of each layer to minimize light cross-talk between layers. The detector has an active area of 192 × 192 mm with a square pixel size of 3 × 3 mm. As part of the development process of the double-layer detector, a single-layer detector was built, together with a prototype detector in which the two layers of the detector could be read out separately. Efficiency calculations and measurements of all three detectors are discussed. The novel double-layer detector has been installed and tested on the SXD diffractometer at ISIS. The detector performance is compared with the current scintillator detectors employed on SXD by studying reference crystal samples. More than a factor of 3 improvement in efficiency is achieved with the double-layer wavelength-shifting-fibre detector. Software routines for further optimizations in spatial resolution and uniformity of response have been implemented and tested for 2D detectors. The methods and results are discussed in this manuscript. Full Article text
nsit Quality assessment of the wide-angle detection option planned at the high-intensity/extended Q-range SANS diffractometer KWS-2 combining experiments and McStas simulations By journals.iucr.org Published On :: 2024-06-27 For a reliable characterization of materials and systems featuring multiple structural levels, a broad length scale from a few ångström to hundreds of nanometres must be analyzed and an extended Q range must be covered in X-ray and neutron scattering experiments. For certain samples or effects, it is advantageous to perform such characterization with a single instrument. Neutrons offer the unique advantage of contrast variation and matching by D-labeling, which is of great value in the characterization of natural or synthetic polymers. Some time-of-flight small-angle neutron scattering (TOF-SANS) instruments at neutron spallation sources can cover an extended Q range by using a broad wavelength band and a multitude of detectors. The detectors are arranged to cover a wide range of scattering angles with a resolution that allows both large-scale morphology and crystalline structure to be resolved simultaneously. However, for such analyses, the SANS instruments at steady-state sources operating in conventional monochromatic pinhole mode rely on additional wide-angle neutron scattering (WANS) detectors. The resolution must be tuned via a system of choppers and a TOF data acquisition option to reliably measure the atomic to mesoscale structures. The KWS-2 SANS diffractometer at Jülich Centre for Neutron Science allows the exploration of a wide Q range using conventional pinhole and lens focusing modes and an adjustable resolution Δλ/λ between 2 and 20%. This is achieved through the use of a versatile mechanical velocity selector combined with a variable slit opening and rotation frequency chopper. The installation of WANS detectors planned on the instrument required a detailed analysis of the quality of the data measured over a wide angular range with variable resolution. This article presents an assessment of the WANS performance by comparison with a McStas [Willendrup, Farhi & Lefmann (2004). Physica B, 350, E735–E737] simulation of ideal experimental conditions at the instrument. Full Article text
nsit DFT2FEFFIT: a density-functional-theory-based structural toolkit to analyze EXAFS spectra By journals.iucr.org Published On :: 2024-07-17 This article presents a Python-based program, DFT2FEFFIT, to regress theoretical extended X-ray absorption fine structure (EXAFS) spectra calculated from density functional theory structure models against experimental EXAFS spectra. To showcase its application, Ce-doped fluorapatite [Ca10(PO4)6F2] is revisited as a representative of a material difficult to analyze by conventional multi-shell least-squares fitting of EXAFS spectra. The software is open source and publicly available. Full Article text
nsit Low-dose electron microscopy imaging for beam-sensitive metal–organic frameworks By journals.iucr.org Published On :: 2024-09-05 Metal–organic frameworks (MOFs) have garnered significant attention in recent years owing to their exceptional properties. Understanding the intricate relationship between the structure of a material and its properties is crucial for guiding the synthesis and application of these materials. (Scanning) Transmission electron microscopy (S)TEM imaging stands out as a powerful tool for structural characterization at the nanoscale, capable of detailing both periodic and aperiodic local structures. However, the high electron-beam sensitivity of MOFs presents substantial challenges in their structural characterization using (S)TEM. This paper summarizes the latest advancements in low-dose high-resolution (S)TEM imaging technology and its application in MOF material characterization. It covers aspects such as framework structure, defects, and surface and interface analysis, along with the distribution of guest molecules within MOFs. This review also discusses emerging technologies like electron ptychography and outlines several prospective research directions in this field. Full Article text
nsit Leadership Academy helps families in transition through Family Care Center project. By www.catawbacountync.gov Published On :: Thu, 13 Jun 2013 15:35:00 EST County employees in the first Leadership Academy recently helped families in transition through a Family Care Center project. Full Article News Release FYI Please Choose
nsit Public Transit Agencies Should Not Have to Disclose Safety Planning Records in Court, Similar to Laws for State Highway Agencies and Passenger Railroads, Says New Report By Published On :: Wed, 30 May 2018 05:00:00 GMT To enable public transit agencies to engage in more rigorous and effective safety planning, their safety planning records should not be admissible as evidence in civil litigation, says a new report from the National Academies of Sciences, Engineering, and Medicine. Full Article
nsit Permanent Supportive Housing Holds Potential for Improving Health of People Experiencing Homelessness, but Further Research on Effectiveness Is Needed, Including Studies On ‘Housing Sensitive’ Health Conditions By Published On :: Wed, 11 Jul 2018 05:00:00 GMT A new report from the National Academies of Sciences, Engineering, and Medicine examines evidence on whether providing permanent supportive housing (PSH) – a combination of stable housing and supportive services -- to individuals who are experiencing homelessness improves their health. Full Article
nsit Cities, Transit Agencies, and Shared Mobility Providers Should Collaborate to Fully Realize Transportation Potential Across Metropolitan Areas By Published On :: Thu, 14 Jan 2021 05:00:00 GMT If combined with public transit and increased in scale, shared modes of transportation, such as ride-hailing, scooter sharing, and bike sharing, can enhance mobility, equity, and sustainability in metropolitan areas, according to a new report from the National Academies of Sciences, Engineering, and Medicine. Full Article
nsit New Report Charts Path to Net-Zero Carbon Emissions by 2050, Recommends Near-Term Policies to Ensure Fair and Equitable Economic Transition and Revitalization of Manufacturing Industry By Published On :: Tue, 02 Feb 2021 05:00:00 GMT Achieving net-zero carbon emissions in the U.S. by 2050 is feasible and would not only help address climate change but also build a more competitive economy, increase high-quality jobs, and help address social injustice in the energy system, says a new report from the National Academies of Sciences, Engineering, and Medicine. Full Article
nsit Government and Private Sector Should Produce Net Electricity in Fusion Pilot Plant by 2035-2040 to Impact the Transition to a Low-Carbon Emission Electrical System, New Report Says By Published On :: Wed, 17 Feb 2021 05:00:00 GMT The U.S. Department of Energy (DOE) and private industry should invest now in order to have an operational fusion pilot plant in the 2035-2040 time frame, says Bringing Fusion to the U.S. Grid, a new report from the National Academies of Sciences, Engineering, and Medicine. Full Article
nsit New Report Recommends Renewed Us-federal Investment in Chemical Engineering Directed to the Energy Transition Medical Advances and Other Challenges By Published On :: Wed, 09 Feb 2022 05:00:00 GMT To maintain U.S. global leadership and meet societal challenges — including generating medical advances, furthering the energy transition, and making food and water safer and more sustainable — new investments, collaborations, and educational practices in the chemical engineering field are needed. Full Article
nsit Engineering the Transition to Net-Zero Carbon Emissions By Published On :: Tue, 27 Sep 2022 04:00:00 GMT In an interview, NAE President John Anderson discusses the national and global transition to net-zero carbon emissions and how engineers — and NAE in particular — can support that shift. Energy Transitions is the theme of NAE’s annual meeting this year, taking place Oct. 2-3. Full Article
nsit Investments in High Energy Density Science Could Help Address Significant National Needs, Says New Report By Published On :: Thu, 23 Feb 2023 05:00:00 GMT The U.S. should renew its investments in high energy density science facilities and workforce capacity and improve collaboration, in order to achieve advances in areas such as fusion power and materials science and help address significant national needs. Full Article
nsit Telekopye transitions to targeting tourists via hotel booking scam By www.welivesecurity.com Published On :: Thu, 10 Oct 2024 08:55:00 +0000 ESET Research shares new findings about Telekopye, a scam toolkit used to defraud people on online marketplaces, and newly on accommodation booking platforms Full Article
nsit 46 pc Indian IT professionals say all corporate data stored in Cloud is sensitive: Report By cio.economictimes.indiatimes.com Published On :: Thu, 04 Jul 2024 09:30:00 +0530 According to the IT company Thales, Cloud security spending has now topped all other security spending categories. About 37 per cent of organizations have experienced a Cloud data breach in India, with 14 per cent having had one in the past year. Full Article
nsit Transitioning from school to work By www.snackandbakery.com Published On :: Thu, 08 May 2014 00:00:00 -0400 While work has included less abstract reading and scientific experimentation than graduate school, and is more focused on attaining on-target results as quickly as possible, a few similarities exist between school and work. Full Article
nsit Takis 'ignites intensity' with Kaboom By www.snackandbakery.com Published On :: Mon, 17 Jun 2024 16:18:00 -0400 Consumers are encouraged to join Takis in filling their summer with intense flavors and authentic experiences. Full Article
nsit Sweegen high-intensity sweetener brazzein By www.snackandbakery.com Published On :: Mon, 04 Oct 2021 14:20:00 -0400 Sweegen is expanding its extensive sweetener portfolio in early 2022 with the zero-calorie, high-intensity sweetener brazzein. Full Article
nsit ICC, PMI announce transition of Matt Sigler to Code Council’s plumbing and mechanical team By www.pmmag.com Published On :: Tue, 01 Jun 2021 13:00:00 -0400 Sigler is a well-known and highly respected technical expert in the industry with over 20 years of experience in construction, codes and engineering. Full Article
nsit Webstone transition tees and unions By www.pmmag.com Published On :: Sun, 15 Nov 2020 00:00:00 -0500 These lead-free products are made of dezincification resistant brass, the company notes. Full Article
nsit Is your high-density storage compromising worker safety? By www.ishn.com Published On :: Fri, 12 Jul 2024 16:05:21 -0400 This strategy increases the value of each square foot with customizable racks, but do the pros outweigh the cons? Full Article
nsit AD completes planned transition to member ownership By www.ishn.com Published On :: Wed, 07 Nov 2018 00:00:00 -0500 AD, the contractor and industrial products wholesale buying / marketing group, announced the completion of the transition of ownership from AD’s long-time Chairman & CEO, Bill Weisberg, to the buying group’s distributor members. Full Article
nsit Slow, steady increase in exercise intensity is best for heart health By www.ishn.com Published On :: Wed, 26 Feb 2020 00:00:00 -0500 For most people, the benefits of aerobic exercise far outweigh the risks, however, extreme endurance exercise – such as participation in marathons and triathlons for people who aren’t accustomed to high-intensity exercise – can raise the risk of sudden cardiac arrest, atrial fibrillation (a heart rhythm disorder) or heart attacks, according to a new Scientific Statement published in the Association’s premier journal Circulation. Full Article
nsit High intensity line lights latest from Advanced Illumination By www.bevindustry.com Published On :: Mon, 09 Sep 2024 12:00:00 -0400 Provider of innovative lighting solutions for machine vision applications, Advanced Illumination, introduced its LL330 Series of Sealed High Intensity Line Lights. Full Article
nsit 'Disorderly Transition' Has Landed: Dr. Barbara Taber's Hit Series Wraps 1st Season with a Masterclass in Podcasting, Reporting, and Sociopolitical Entertainment. Everyone Should Be Paying Attention By www.24-7pressrelease.com Published On :: Mon, 18 Oct 2021 08:00:00 GMT Esteemed educator, author, and podcaster, Barbara Taber, EdD, has delivered the highly anticipated season finale of Take It Or Leave It, against impossibly high expectations, following the landmark achievement of her previous three episodes. Full Article
nsit igolgi Introduces Updated High Density, Low Power Live OTT Transcoding Platform By www.24-7pressrelease.com Published On :: Mon, 11 Mar 2024 08:00:00 GMT iLux Live Transcoder Increases channel count by 400% per RU and reduces power 85% per channel Full Article
nsit Transitions® Light Intelligent Lenses™ for Everyday Life By www.24-7pressrelease.com Published On :: Fri, 29 Jul 2022 08:00:00 GMT SmartBuyGlasses offers Transitions® lenses for the most convenient way to see clearly in both bright spaces and indoors Full Article
nsit Stiint Global Inc Announces CEO Transition: Lino Brogneri Assumes Role as CIO, Welcomes Stacey-Lee Bolon as New CEO By www.24-7pressrelease.com Published On :: Mon, 04 Sep 2023 08:00:00 GMT Stiint Global Inc Unveils Leadership Transition: Founder Lino Brogneri Shifts to CIO Role, Stacey-Lee Bolon Assumes CEO Position, Charting a Future of Innovation and Growth Full Article
nsit Introducing STS® Anabolic Intensity Pre-Workout By www.24-7pressrelease.com Published On :: Fri, 19 Nov 2021 08:00:00 GMT STS Pre-Workout comes with super ingredients to pump your workouts to the extreme Full Article
nsit Seamless Leadership Transition at inHealth Strategies By www.24-7pressrelease.com Published On :: Wed, 14 Aug 2024 08:00:00 GMT inHealth Strategies ushers in a new era of leadership with the seamless transition of Michael Spine to Business Development Lead and the appointment of healthcare industry veteran Yale Miller as President. Full Article
nsit Spirion and Atakama Join Forces at Black Hat 2021 Conference to Automate Sensitive Data Vulnerability Remediation By www.24-7pressrelease.com Published On :: Mon, 02 Aug 2021 08:00:00 GMT Attendees are invited to see demonstrations on classifying and protecting sensitive data through multi-factor encryption and to stay for cocktails at Mandalay Bay Full Article
nsit Last Wishes Transition Services is a New Legal Service Designed to Help People Plan for the End of their Lives in a Modern and Unconventional Way By www.24-7pressrelease.com Published On :: Thu, 17 Dec 2020 08:00:00 GMT In this Covid age people need help with disposing of their property and electronic footprint without burdening their family or friends. Sometimes this need includes a reading of grievances at their own funeral. Full Article
nsit Hydrogen Forum Barcelona. The Professor Mele Emerges as Potential Energy Transition Leader By www.24-7pressrelease.com Published On :: Sun, 21 Apr 2024 08:00:00 GMT Hydrogen Full Article
nsit Marquis Who's Who Honors Maryam Cooley for Innovations in the Field of Climate Change Sciences to Help Accelerate the Transition to a Low Carbon Future By www.24-7pressrelease.com Published On :: Fri, 19 Jul 2024 08:00:00 GMT Maryam Cooley serves as the Founder and chief executive officer at Cooley Enterprises, LLC Full Article
nsit Visa Free, Feel Free. Guangzhou invites international transit passengers to enjoy a free one-day tour By www.24-7pressrelease.com Published On :: Mon, 24 Jun 2024 08:00:00 GMT Starting in late June, international visitors from 50+ countries can explore Guangzhou's attractions visa-free for up to 144 hours. Full Article
nsit The Dairy Alliance and Gretna Middle School Celebrate Revolutionary Transition to Bulk Milk By www.24-7pressrelease.com Published On :: Tue, 12 Dec 2023 08:00:00 GMT Dairy farmers celebrate new a milestone of success in Virginia Full Article