Our new Decay on Demand Disruption Opportunity seeks novel methods to create daughter-product radioisotopes from parent #radioisotopes much faster than natural half-life decay or current forced-production methods. View draft announcement: https://ow.ly/UMTC50Ss6Qs Graphic caption: An AI-generated image of a uranium atom (depicted the size of a bowling ball) with an alpha particle shooting out of its quantum-energy potential well, illustrating the concept of human-commanded alpha decay in nuclear physics #radioisotope #radiopharmaceutical #radioisotopepowersystems #RPS #thorium #uranium #actinium #laser #highenergyphysics #nuclearpower #radioisotopeproduction
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On July 18, we’re hosting an information session for our new Decay on Demand Disruption Opportunity (DO) focused on creating daughter-product radioisotopes from parent #radioisotopes much faster than currently possible. Register by July 16: https://ow.ly/1e0e50Szb4J The final version of the Decay on Demand DO program announcement is available here: https://ow.ly/Qm1250Szb4K Graphic caption: An AI-generated image of a uranium atom (depicted the size of a bowling ball) with an alpha particle shooting out of its quantum-energy potential well, illustrating the concept of human-commanded alpha decay in nuclear physics #radioisotope #radiopharmaceutical #radioisotopepowersystems #RPS #thorium #uranium #actinium #laser #highenergyphysics #nuclearpower #radioisotopeproduction
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Correlative Microscopy: Is It Worth the Effort? 🤔 Discover the answer in our latest blog, where Dr Pat Trimby combines detailed #EBSD and #EDS analyses with the direct measurement of physical properties using nanoindentation mapping, applied to failure analysis in the nuclear industry. https://okt.to/1vnqd4 #CorrelativeMicroscopy #Nanoindentation
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Learn more about FLIM techniques. In this case a team studies nuclear condensates using the ISS Q2 Modular Confocal Microscope for FLIM and FFS. Read the publication here: https://lnkd.in/g8tSJumm Additional Q2 publications here: https://lnkd.in/e3hAfX2A #ISS #FLIM #nuclearcondensates #confocalmicroscopy #embryonicstemcells #fluorescenceimaging #molecularmodeling #phasetransitions #FCS #anisotropy
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#mdpimetals 📌Newly published paper sharing: Title: Radiation Techniques for Tracking the Progress of the Hydrometallurgical Leaching Process: A Case Study of Mn and Zn by Nelson Rotich Kiprono et al. The full text of the paper can be viewed and downloaded for free at https://brnw.ch/21wLdfR Highlights: • The innovation of neutron activation analysis (NAA) has been the crucial class of inorganic trace analysis approaches with the lowest quantification and detection limits • The deuterium-tritium neutron generator is a great alternative to nuclear research reactors in NAA in hydrometallurgical studies of Mn and Zn • Mn leaching (offline) increases with dissolution time, and HCl concentration but varies with the temperature of the solution • It is feasible to track Zn leaching in real-time using NAA • The dissolution of Zn improves with an increase in reaction time, and HCl concentration but varies with the temperature of the solution • Handheld X-ray fluorescence (XRF) and total-reflection XRF are promising for offline analysis of metals • The spherical diffusion prediction model requires a lot less time to attain the Zn saturation level compared to the linear diffusion model. #Hydrometallurgical #Leaching #MetalRecycling #MetalRecovery
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Exploring the corrosion mechanism of oxide glasses using advanced solid-state nuclear magnetic resonance spectroscopy https://lnkd.in/gnRPZZg4
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I am thrilled to announce that our paper "Non-modal stability analysis of magneto-hydrodynamic flow in a single pipe" has been published by the Fundamental Plasma Physics journal. A complete understanding of the stability of fluid flows under varying magnetic fields is imperative for achieving control of plasma and operating fluids in the blankets of future nuclear fusion reactors. This study investigates the influence of varying magnetic profiles on the flow regime of a generic fluid, which is representative of both thermonuclear plasma and conductive fluids. Firstly, the classic modal stability technique is employed to study asymptotical stability. Then, non-modal stability analysis is applied to study the system's response for a finite time immediately after a perturbation. If you want to know more, here is the full article. #NuclearFusion #PlasmaPhysics #Magnetohydrodynamics #NonModalStabilityAnalysis
Non-modal stability analysis of magneto-hydrodynamic flow in a single pipe
sciencedirect.com
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Prophase - The early phase The prophase can be defined as the early duration of a mitosis which involves various events that are essential for the other steps. Such events include, 1, The disassembling of the nuclear membrane or the membrane retracts back to the Endoplasmic reticulum – the structural integrity of the nuclear membrane is mainly provided by lamins. The degradation of lamins leads to the retraction of the nuclear membrane. 2, Degradation of lamins 3, Kinetochore attachment Mitosis series [2/5] Article: Neethu Krishna Diagram: Achuth B S Read the article, direct link: https://lnkd.in/g45_c8iQ #mitosis #celldivision #cellcycle #cellbiology #cells #stages #sciencecommunication #scicomm
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I'm pleased to share that our paper investigating the microscopic structure of molten FLiBe has been published in PRX Energy. FLiBe has gained prominence for its usefulness in energy applications, particularly in advanced nuclear reactors. We measured FLiBe using neutron and X-ray scattering techniques to compare with predictions from machine-learning-enhanced molecular dynamic simulations. In the future, these types of simulations will aid in predicting and controlling how the physical properties of the salt might change during operation. https://lnkd.in/eqqUAdji
Complex Structure of Molten FLiBe (2$\mathrm{Li}\mathrm{F}$--$\mathrm{Be}\mathrm{F}$${}_{2}$) Examined by Experimental Neutron Scattering, X-Ray Scattering, and Deep-Neural-Network Based Molecular Dynamics
journals.aps.org
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Neutron assay has been a critical (no pun intended) part of radiometric measurement ever since some of the first nuclear experiments in the 20th century. At Sellafield we use Neutron detectors in installed assay suites, in Health Physics instrumentation and in portable characterisation toolkits in order to understand our nuclear material inventories and keep the site safe. https://lnkd.in/gHsYnZ2V #Sellafield #characterisation #nuclearphysics #nucleardecommissioning
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Design Engineer at Cavo Design Build
1moHow about saving a son from simulated schizophrenia using microwave auditory hearing. The world is watching you