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Pyrazine-bridged polymetallic copper–iridium clusters

Single crystals of the mol­ecular compound, {Cu20Ir6Cl8(C21H24N2)6(C4H4N2)3]·3.18CH3OH or [({Cu10Ir3}Cl4(IMes)3(pyrazine))2(pyrazine)]·3.18CH3OH [where IMes is 1,3-bis­(2,4,6-trimethylphen­yl)imidazol-2-yl­idene], with a unique heterometallic cluster have been prepared and the structure revealed using single-crystal X-ray diffraction. The mol­ecule is centrosymmetric with two {Cu10Ir3} cores bridged by a pyrazine ligand. The polymetallic cluster contains three stabilizing N-heterocyclic carbenes, four Cl ligands, and a non-bridging pyrazine ligand. Notably, the Cu—Ir core is arranged in an unusual shape containing 13 vertices, 22 faces, and 32 sides. The atoms within the trideca­metallic cluster are arranged in four planes, with 2, 4, 4, 3 metals in each plane. Ir atoms are present in alternate planes with an Ir atom featuring in the peripheral bimetallic plane, and two Ir atoms featuring on opposite sides of the non-adjacent tetra­metallic plane. The crystal contains two disordered methanol solvent mol­ecules with an additional region of non-modelled electron density corrected for using the SQUEEZE routine in PLATON [Spek (2015). Acta Cryst. C71, 9–18]. The given chemical formula and other crystal data do not take into account the unmodelled methanol solvent mol­ecule(s).




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Synthesis, crystal structure and Hirshfeld surface analysis of a new copper(II) complex based on diethyl 2,2'-(4H-1,2,4-triazole-3,5-di­yl)di­acetate

The title compound, bis­[μ-2,2'-(4H-1,2,4-triazole-3,5-di­yl)di­acetato]­bis­[di­aqua­copper(II)] dihydrate, [Cu2(C6H5N3O4)2(H2O)4]·2H2O, is a dinuclear octa­hedral CuII triazole-based complex. The central copper atoms are hexa-coordinated by two nitro­gen atoms in the equatorial positions, two equatorial oxygen atoms of two carboxyl­ate substituents in position 3 and 5 of the 1,2,4-triazole ring, and two axial oxygen atoms of two water mol­ecules. Two additional solvent water mol­ecules are linked to the title mol­ecule by O—H⋯N and O⋯H—O hydrogen bonds. The crystal structure is built up from the parallel packing of discrete supra­molecular chains running along the a-axis direction. Hirshfeld surface analysis suggests that the most important contributions to the surface contacts are from H⋯O/O⋯H (53.5%), H⋯H (28.1%), O⋯O (6.3%) and H⋯C/C⋯H (6.2%) inter­actions. The crystal studied was twinned by a twofold rotation around [100].




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Synthesis and crystal structure of poly[[μ-chlorido-μ-(2,3-di­methyl­pyrazine)-copper(I)] ethanol hemisolvate], which shows a new isomeric CuCl(2,3-di­methyl­pyrazine) network

Reaction of copper(I)chloride with 2,3-di­methyl­pyrazine in ethanol leads to the formation of the title compound, poly[[μ-chlorido-μ-(2,3-di­methyl­pyrazine)-copper(I)] ethanol hemisolvate], {[CuCl(C6H8N2)]·0.5C2H5OH}n or CuCl(2,3-di­methyl­pyrazine) ethanol hemisolvate. Its asymmetric unit consists of two crystallographically independent copper cations, two chloride anions and two 2,3-di­methyl­pyrazine ligands as well as one ethanol solvate mol­ecule in general positions. The ethanol mol­ecule is disordered and was refined using a split model. The methyl H atoms of the 2,3-di­methyl­pyrazine ligands are also disordered and were refined in two orientations rotated by 60° relative to each other. In the crystal structure, each copper cation is tetra­hedrally coordinated by two N atoms of two bridging 2,3-di­methyl­pyrazine ligands and two μ-1,1-bridg­ing chloride anions. Each of the two copper cations are linked by pairs of bridging chloride anions into dinuclear units that are further linked into layers via bridging 2,3-di­methyl­pyrazine coligands. These layers are stacked in such a way that channels are formed in which the disordered solvent mol­ecules are located. The topology of this network is completely different from that observed in the two polymorphic modifications of CuCl(2,3-di­methyl­pyrazine) reported in the literature [Jess & Näther (2006). Inorg. Chem. 45, 7446–7454]. Powder X-ray diffraction measurements reveal that the title compound is unstable and transforms immediately into an unknown crystalline phase.




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8-Hy­droxy­quinolinium tri­chlorido­(pyridine-2,6-di­carb­oxy­lic acid-κ3O,N,O')copper(II) dihydrate

The title compound, (C9H8NO)[CuCl3(C7H5NO4)]·2H2O, was prepared by reacting CuII acetate dihydrate, solid 8-hy­droxy­quinoline (8-HQ), and solid pyridine-2,6-di­carb­oxy­lic acid (H2pydc), in a 1:1:1 molar ratio, in an aqueous solution of dilute hydro­chloric acid. The CuII atom exhibits a distorted CuO2NCl3 octa­hedral geometry, coordinating two oxygen atoms and one nitro­gen atom from the tridentate H2pydc ligand and three chloride atoms; the nitro­gen atom and one chloride atom occupy the axial positions with Cu—N and Cu—Cl bond lengths of 2.011 (2) Å and 2.2067 (9) Å, respectively. In the equatorial plane, the oxygen and chloride atoms are arranged in a cis configuration, with Cu—O bond lengths of 2.366 (2) and 2.424 (2) Å, and Cu—Cl bond lengths of 2.4190 (10) and 2.3688 (11) Å. The asymmetric unit contains 8-HQ+ as a counter-ion and two uncoordinated water mol­ecules. The crystal structure features strong O—H⋯O and O—H⋯Cl hydrogen bonds as well as weak inter­actions including C—H⋯O, C—H⋯Cl, Cu—Cl⋯π, and π–π, which result in a three-dimensional network. A Hirshfeld surface analysis indicates that the most important contributions to the crystal packing involving the main residues are from H⋯Cl/Cl⋯H inter­actions, contributing 40.3% for the anion. Weak H⋯H contacts contribute 13.2% for the cation and 28.6% for the anion.




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Simulations of dislocation contrast in dark-field X-ray microscopy

Dark-field X-ray microscopy (DFXM) is a full-field imaging technique that non-destructively maps the structure and local strain inside deeply embedded crystalline elements in three dimensions. In DFXM, an objective lens is placed along the diffracted beam to generate a magnified projection image of the local diffracted volume. This work explores contrast methods and optimizes the DFXM setup specifically for the case of mapping dislocations. Forward projections of detector images are generated using two complementary simulation tools based on geometrical optics and wavefront propagation, respectively. Weak and strong beam contrast and the mapping of strain components are studied. The feasibility of observing dislocations in a wall is elucidated as a function of the distance between neighbouring dislocations and the spatial resolution. Dislocation studies should be feasible with energy band widths of 10−2, of relevance for fourth-generation synchrotron and X-ray free-electron laser sources.




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Tracking copper nanofiller evolution in polysiloxane during processing into SiOC ceramic

Polymer-derived ceramics (PDCs) remain at the forefront of research for a variety of applications including ultra-high-temperature ceramics, energy storage and functional coatings. Despite their wide use, questions remain about the complex structural transition from polymer to ceramic and how local structure influences the final microstructure and resulting properties. This is further complicated when nanofillers are introduced to tailor structural and functional properties, as nanoparticle surfaces can interact with the matrix and influence the resulting structure. The inclusion of crystalline nanofiller produces a mixed crystalline–amorphous composite, which poses characterization challenges. With this study, we aim to address these challenges with a local-scale structural study that probes changes in a polysiloxane matrix with incorporated copper nanofiller. Composites were processed at three unique temperatures to capture mixing, pyrolysis and initial crystallization stages for the pre-ceramic polymer. We observed the evolution of the nanofiller with electron microscopy and applied synchrotron X-ray diffraction with differential pair distribution function (d-PDF) analysis to monitor changes in the matrix's local structure and interactions with the nanofiller. The application of the d-PDF to PDC materials is novel and informs future studies to understand interfacial interactions between nanofiller and matrix throughout PDC processing.




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Low-dose electron microscopy imaging for beam-sensitive metal–organic frameworks

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.




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The AUREX cell: a versatile operando electrochemical cell for studying catalytic materials using X-ray diffraction, total scattering and X-ray absorption spectroscopy under working conditions

Understanding the structure–property relationship in electrocatalysts under working conditions is crucial for the rational design of novel and improved catalytic materials. This paper presents the Aarhus University reactor for electrochemical studies using X-rays (AUREX) operando electrocatalytic flow cell, designed as an easy-to-use versatile setup with a minimal background contribution and a uniform flow field to limit concentration polarization and handle gas formation. The cell has been employed to measure operando total scattering, diffraction and absorption spectroscopy as well as simultaneous combinations thereof on a commercial silver electrocatalyst for proof of concept. This combination of operando techniques allows for monitoring of the short-, medium- and long-range structure under working conditions, including an applied potential, liquid electrolyte and local reaction environment. The structural transformations of the Ag electrocatalyst are monitored with non-negative matrix factorization, linear combination analysis, the Pearson correlation coefficient matrix, and refinements in both real and reciprocal space. Upon application of an oxidative potential in an Ar-saturated aqueous 0.1 M KHCO3/K2CO3 electrolyte, the face-centered cubic (f.c.c.) Ag gradually transforms first to a trigonal Ag2CO3 phase, followed by the formation of a monoclinic Ag2CO3 phase. A reducing potential immediately reverts the structure to the Ag (f.c.c.) phase. Following the electrochemical-reaction-induced phase transitions is of fundamental interest and necessary for understanding and improving the stability of electrocatalysts, and the operando cell proves a versatile setup for probing this. In addition, it is demonstrated that, when studying electrochemical reactions, a high energy or short exposure time is needed to circumvent beam-induced effects.




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Deconstructing 3D growth rates from transmission microscopy images of facetted crystals as captured in situ within supersaturated aqueous solutions

Here, a morphologically based approach is used for the in situ characterization of 3D growth rates of facetted crystals from the solution phase. Crystal images of single crystals of the β-form of l-glutamic acid are captured in situ during their growth at a relative supersaturation of 1.05 using transmission optical microscopy. The crystal growth rates estimated for both the {101} capping and {021} prismatic faces through image processing are consistent with those determined using reflection light mode [Jiang, Ma, Hazlehurst, Ilett, Jackson, Hogg & Roberts (2024). Cryst. Growth Des. 24, 3277–3288]. The growth rate in the {010} face is, for the first time, estimated from the shadow widths of the {021} prismatic faces and found to be typically about half that of the {021} prismatic faces. Analysis of the 3D shape during growth reveals that the initial needle-like crystal morphology develops during the growth process to become more tabular, associated with the Zingg factor evolving from 2.9 to 1.7 (>1). The change in relative solution supersaturation during the growth process is estimated from calculations of the crystal volume, offering an alternative approach to determine this dynamically from visual observations.




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Five-analyzer Johann spectrometer for hard X-ray photon-in/photon-out spectroscopy at the Inner Shell Spectroscopy beamline at NSLS-II: design, alignment and data acquisition

Here, a recently commissioned five-analyzer Johann spectrometer at the Inner Shell Spectroscopy beamline (8-ID) at the National Synchrotron Light Source II (NSLS-II) is presented. Designed for hard X-ray photon-in/photon-out spectroscopy, the spectrometer achieves a resolution in the 0.5–2 eV range, depending on the element and/or emission line, providing detailed insights into the local electronic and geometric structure of materials. It serves a diverse user community, including fields such as physical, chemical, biological, environmental and materials sciences. This article details the mechanical design, alignment procedures and data-acquisition scheme of the spectrometer, with a particular focus on the continuous asynchronous data-acquisition approach that significantly enhances experimental efficiency.




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Correlative X-ray micro-nanotomography with scanning electron microscopy at the Advanced Light Source

Geological samples are inherently multi-scale. Understanding their bulk physical and chemical properties requires characterization down to the nano-scale. A powerful technique to study the three-dimensional microstructure is X-ray tomography, but it lacks information about the chemistry of samples. To develop a methodology for measuring the multi-scale 3D microstructure of geological samples, correlative X-ray micro- and nanotomography were performed on two rocks followed by scanning electron microscopy with energy-dispersive spectroscopy (SEM-EDS) analysis. The study was performed in five steps: (i) micro X-ray tomography was performed on rock sample cores, (ii) samples for nanotomography were prepared using laser milling, (iii) nanotomography was performed on the milled sub-samples, (iv) samples were mounted and polished for SEM analysis and (v) SEM imaging and compositional mapping was performed on micro and nanotomography samples for complimentary information. Correlative study performed on samples of serpentine and basalt revealed multiscale 3D structures involving both solid mineral phases and pore networks. Significant differences in the volume fraction of pores and mineral phases were also observed dependent on the imaging spatial resolution employed. This highlights the necessity for the application of such a multiscale approach for the characterization of complex aggregates such as rocks. Information acquired from the chemical mapping of different phases was also helpful in segmentation of phases that did not exhibit significant contrast in X-ray imaging. Adoption of the protocol used in this study can be broadly applied to 3D imaging studies being performed at the Advanced Light Source and other user facilities.




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Development of hard X-ray photoelectron spectroscopy in liquid cells using optimized microfabricated silicon nitride membranes

We present first hard X-ray photoelectron spectroscopy (HAXPES) results of aqueous salt solutions and dispersions of gold nanoparticles in liquid cells equipped with specially designed microfabricated thin silicon nitride membranes, with thickness in the 15–25 nm range, mounted in a high-vacuum-compatible environment. The experiments have been performed at the HAXPES endstation of the GALAXIES beamline at the SOLEIL synchrotron radiation facility. The low-stress membranes are fabricated from 100 mm silicon wafers using standard lithography techniques. Platinum alignment marks are added to the chips hosting the membranes to facilitate the positioning of the X-ray beam on the membrane by detecting the corresponding photoemission lines. Two types of liquid cells have been used, a static one built on an Omicron-type sample holder with the liquid confined in the cell container, and a circulating liquid cell, in which the liquid can flow in order to mitigate the effects due to beam damage. We demonstrate that the membranes are mechanically robust and able to withstand 1 bar pressure difference between the liquid inside the cell and vacuum, and the intense synchrotron radiation beam during data acquisition. This opens up new opportunities for spectroscopic studies of liquids.




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Coprecipitation of Ce(III) oxide with UO2

The neutralization of acidic solutions containing U (IV) and Ce (III) at room temperature in glove box atmosphere and in the presence of dithionite results in coprecipitation of these elements as amorphous solid solutions CexU1–xO2±y. The solubilities of the precipitates with different mole fractions (x) of Ce(OH)3 (x = 0.01 or 0.1) were determined in 1 M NaClO4 solutions between pH 2.2 and 12.8 under reducing conditions. The solids were investigated by a variety of methods (chemical analysis, SEM-EDX, XRD, XPS, XAS) to determine the nature of the solid solutions formed, their composition and the valence state of Ce and U. X-ray photoelectron spectroscopy confirmed the oxidation states of the solids both before and after the equilibration as Ce (III) and U (IV). The amorphous coprecipitates reached equilibrium relatively fast (∼1 week). The release of Ce from the coprecipitates was totally dominated by the release of uranium over the whole pH range. The Ce concentrations decrease slightly with the decrease of Ce content in the solid, suggesting that CexU1–xO2±y solids behave thermodynamically as solid solutions. The concentrations of U in equilibrium with the coprecipitate were in excellent agreement with the solubility of UO2(s) under reducing conditions reported in the literature. The conditional solubility product of Ce(OH)3 from the coprecipitate was several orders of magnitude (∼4 in the near neutral pH range and ∼18 in the acidic range) lower than that of pure Ce(OH)3(s). The activities and activity coefficients of Ce(OH)3(s) in the coprecipitate were also estimated. Activity coefficients are much less than 1, indicating that the mixing of Ce(OH)3 with UO2 is highly favorable.




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Foreword to the special virtual issue on X-ray spectroscopy to understand functional materials: instrumentation, applications, data analysis




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HMRC appoints Modulr as its new CoP supplier

HMRC has appointed



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Exploration Co. Seeks Possible Large Copper System in BC

Vancouver-based minerals explorer Prosper Gold Corp. (TSVX: PGF; OTCQB: PGXFF) is focused on its district-scale Cyprus copper-gold project in north-central British Columbia. One analyst says the results of a recent geophysical survey put the stock in an excellent position.



  • TSVX: PGF;OTCQB: PGXFF

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Exploration Expansion Targets High-Grade Copper Potential in Nevada

Giant Mining Corp. (CSE: BFG; OTC:BFGFF; FWB:YW5) announced the expansion of its surface exploration program at the Majuba Hill copper-silver deposit in Pershing County, Nevada. Read more to learn about the promising high-grade copper findings and the project's potential impact on the EV and renewable energy sectors.




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Shallow Discoveries and New Targets at Leviathan Copper System in Idaho

Hercules Metals Corp. (BADEF:OTCMKTS; BIG:TSXV) has announced advancements in its exploration efforts at the western Idaho Leviathan porphyry copper system. Read more about the significant shallow mineralization discoveries and new target areas that could indicate further resource potential.




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Allowable Levels of Copper in Drinking Water Should Not Be Increased Until Studies Are Done

The federal government should not increase the maximum level of copper allowed in drinking water, because higher levels could lead to liver poisoning in infants and children with certain genetic disorders.




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Taking Flight -The Mars Helicopter Ingenuity and the Future of Mars Exploration

Creating an aircraft that will fly in the Martian atmosphere is an engineering tour de force.




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‘An Unprecedented Disruption’ — How Adolescents Are Coping With the Pandemic

As millions of adolescents head back to school, what can science tell us about how the isolation and upheaval of the past year-and-a-half have affected their mental health and development?




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‘We Can’t Wait Any Longer’ — As COP26 Approaches, NAS President Marcia McNutt Discusses Science and Solutions to Climate Change

National Academy of Sciences President Marcia McNutt discusses science and solutions to climate change ahead of the 26th United Nations Climate Change Conference of the Parties (COP26), which begins Oct. 31, 2021.




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COP26 Presents Historic Opportunity for a More Sustainable Future, Say Presidents of U.S. National Academies

The presidents of the U.S. National Academies said in a statement that the 26th United Nations Climate Change Conference of the Parties (COP26) presents a historic global opportunity to agree on emissions reduction targets to avoid the most intolerable impacts of climate change.




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New Report Charts Path for Next Decade of Astronomy and Astrophysics - Recommends Future Ground and Space Telescopes, Scientific Priorities, Investments in Scientific Community

A new decadal survey presents a visionary plan for the fields of astronomy and astrophysics, identifying scientific priorities and opportunities, and recommending an ambitious program of investment to strengthen the profession and achieve new capabilities.




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As COP27 Approaches, Report Recommends New Global Emissions Information Clearinghouse, Steps to Improve Accuracy and Usability of Information

As the U.N. Climate Change Conference (COP27) approaches, a new report recommends steps to improve the accuracy and usability of greenhouse gas emissions information for decision-makers, including creating a global information clearinghouse.




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A Message from the Presidents of the U.S. National Academies as COP27 Begins in Egypt

As the COP27 climate summit begins, the National Academies’ presidents urge world leaders to forge equitable solutions to the climate crisis. “[W]e are committed to enlisting science, engineering, and medicine to inform these efforts so that together, we can create a more secure, more sustainable, and more prosperous future for all.”




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Gamaredon's operations under the microscope – Week in security with Tony Anscombe

ESET research examines the group's malicious wares as used to spy on targets in Ukraine in the past two years




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Internet Archive's digital book lending violates copyrights, US judge rules

The ruling by U.S. District Judge John Koeltl in Manhattan on Friday came in a closely watched lawsuit that tested the ability of Internet Archive to lend out the works of writers and publishers protected by U.S. copyright laws.




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IISc scientists use AI, Raman spectroscopy to detect bacterial pathogen

In a new study, Siva Umapathy and Deepak Kumar Saini’s teams have demonstrated another application for this combination: Quickly identifying bacterial pathogens in different types of clinical samples.




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Coperion reintroduces K-Tron Smart Weigh Belt Feeder

Ideal for metering of food products into packaging lines, such as individual ingredients for snack mixes, finished food products prior to pouching lines, and metering of sensitive or friable food ingredients to blenders. 




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Coperion upgrades line of high-efficiency extruders

The Coperion line of ZSK Mv PLUS high efficiency extruders have been upgraded to include options for easier clean design to meet the highest standards of hygiene, ideal for the processing of food products.




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REHAU adds CPVC and copper press adapters to EVERLOC+ fitting system

REHAU announces the addition of CPVC and copper press adapters to their proprietary EVERLOC+ compression-sleeve fitting system.




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Coping with the tide of everyday operations

Safety professionals work diligently to engage both leaders and employees. But there is often a challenge: leaders wish their employees would just "be careful" without doing diligence to hazard identification, assessment and control. The result: workers claim leaders are only concerned with productivity and budgets.




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Scope creep: Expand or establish limits of industrial hygiene capability?

Industrial hygiene began as a medical specialty in the early 1900s. Scope creep among OHS pros is occurring now and will expand in the future, too. The challenge for OHS pros, and others, is to know when to expand or establish limits of OHS capabilities.




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Copper Moon Coffee Brew-Over-Ice Coffee Pods

Copper Moon Coffee announced the launch of its new Brew-Over-Ice Coffee Pods. 




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New Children's Book Series Helps Kids Cope with Ultra-Rare Chronic Condition

The three-part book series release coincides with Chronic Disease Day




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NetCom Learning Introduces Comprehensive Microsoft Copilot Training Courses Tailored for Business Excellence

Ushering in the era of AI with Microsoft Copilot courses tailored for business professionals.




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1st Class Medical Joins Forces with the American Lung Association and COPD Foundation to Promote Respiratory Health Awareness

This Partnership is a significant milestone in 1st Class Medical's commitment to advancing respiratory health awareness, education, and support for individuals affected by chronic obstructive pulmonary disease (COPD) and other lung conditions.




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Cathleen Coppola, MSW, CAP, SAP Lauded for Excellence in Counseling

Cathleen Coppola specializes in counseling those with substance abuse issues




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SAGE BUSINESS COUNSEL EXPANDS SCOPE, ADDS OPERATIONAL STAFF

Three New Hires Support Firm's Growth




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Edgecom Energy Unleashes 'Energy CoPilot': A Game-Changing AI-Powered Energy Management Assistant

Edgecom Energy has unveiled a game-changing innovation: the 'Energy CoPilot,' a cutting-edge AI-powered energy management assistant poised to redefine the role of facility managers and owners.




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Rogue Space Systems and IP Copilot Partnership to Enhance Intellectual Property Management for Start-Up Businesses

New AI platform enables start-ups to maximize the value of their inventions through patents




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BIOIONIX CIP/COP Validation Studies Confirm over 6-Log Pathogen Reduction

Activated Water Performs with Higher Kill Rates in Less Time than Chemicals




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MorganHill Launches ISO 27001 Scoping & Gap Assessment Workbook to Kickstart Organizations' ISO 27001 Journey

MorganHill, a leading provider of information security solutions, proudly announces the release of its new ISO 27001 Scoping & Gap Assessment Workbook, designed to help organizations embark on their journey towards ISO 27001 certification.




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MorganHill Launches Comprehensive ISO 27001 ISMS Certification Scoping & Gap Assessment Workbook

MorganHill, a leading provider of information security solutions, is proud to announce the launch of its new ISO 27001 ISMS Certification Scoping & Gap Assessment Workbook




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NASCA Awards Periscope Holdings, with its State Partner, Arkansas, As the Excellence Through Collaboration Award Recipient

For their project "Partnering for Procurement Transformation"




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Microsoft 365 Copilot Workshop: Unlock the Future of Work with NetCom Learning!

Leverage Microsoft 365 Copilot: NetCom Learning's live virtual workshop to equip professionals for the AI-driven future of work




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Antique Bank Found in Louisiana Flea Market Discovered to Be Never Before Seen Copy of Famous Leonardo Da Vinci Painting - Salvator Mundi

A mechanical antique metal bank purchased at this year's Ponchatoula, LA's annual Antique day sheds new questions on the origins and story of the world's most expensive work of art, the "Salvator Mundi" painting presumed to be by Leonardo Da Vinci.




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Microsoft?s Copilot: A force multiplier for KM

Generative AI (GenAI) applications will increasingly transform organizations' IT platforms. Companies of any size that opt to create robust apps on their own, however, are in for a protracted, complex, and expensive experience.There's a better way: Buy into what I call a GenAI ecosystem from a vendor in whose tech you are already invested. These ecosystems are comprised of the sum of services customers mostly need to build and launch robust apps.




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913 Epic Episcope

As Chris is on his way to Transylvania (you can follow him on his vlog), he talks about face fixers, an amazing photo and headline combo, re-dubbing movies and if your job as a photographer is safe from our new A.I. overlords. (Episode artwork: DALL-E 2) Topics: [NEWS] Scouting Eastern Europe : As you hear … Continue reading "913 Epic Episcope"

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