In material science, high-speed cameras can help us see triboluminescence. This stimulating phenomena occurs when a material generates light while being subjected to mechanical stresses like ripping, scratching, crushing, rubbing or pulling. A classic example occurs with LifeSavers® Wint-O-Green candy, which emits blue light when crushed. Check out our blog post and video to learn more: https://ow.ly/JxLZ50Tqhog #materialscience #highspeed #imaging #triboluminescence #candy
Phantom High-Speed Cameras - Vision Research’s Post
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Would you like to find out: 1) How to integrate optical fibres into #composite laminates during #infusion? 2) How to measure not only #distributed #strains, but also distributed #shape changes / vertical #displacements? 3) How to detect overloaded vehicles? We present new article written together with the scientific team from Politechnika Rzeszowska im. Ignacego Łukasiewicza! Enjoy the reading: 📖📖📖 https://lnkd.in/dDya9HaH #bridge #bridgepanel #sandwichpanel #honeycombpanel #compositestructures #distributedsensing #dfos #opticalsensors #smartstructures #delamination #damagedetection #deflection #compression #tension #laboratory #innovation #safetyfirst #research #dvelopment
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X Ray tool provides a unique capability to investigate the past. By overlaying a previous image on the current one, it enables users to easily locate missing conduits or pipes. #XRayTool #Innovation #Construction #Technology
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PROFILE SURFACES LIKE A PRO! Highest accuracy on any materials, any roughness, any form. Transparent, reflective, black or white. https://lnkd.in/g7Qd8Bkb Call or live-chat with one of our engineers now! NANOVEA Non-Contact Optical Profilometers are developed and manufactured in California. Designed with Chromatic Confocal technology, our advanced surface profilers provide lateral accuracy which is determined by physics and is directly related to the spot size of the chromatic light source of the optical sensor. #profilometer #profilomètre #perfilómetro #profilometro #perfilômetro #profilometr #profiilimittari
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💧 Wetting and Roughness: What to Do If Wenzel Does Not Work? In our application report, developed in collaboration with 5microns GmbH, we delve into the intriguing interplay between surface roughness and wetting behavior, challenging the traditional Wenzel theory and its applicability in industrial settings. We precisely microstructured silicon wafers using reactive ion etching, ensuring the chemical structure and surface free energy remained unchanged. Confocal microscopy was used to measure surface parameters crucial to Wenzel's theory. Surprisingly, contact angle measurements on these microstructured samples revealed a correlation contrary to Wenzel's predictions. ➡ This study highlights the limitations of relying solely on Wenzel's assumptions for correcting contact angle data. By combining roughness measurements with contact angle analysis, we demonstrate an empirical approach to independently investigate and predict the effects of roughness and surface free energy on wetting behavior. 🔗 Dive deeper into our findings and discover how we can help you achieve more accurate predictions and better control in your wetting applications: https://lnkd.in/eikJArX8 #KRÜSS #SurfaceScience #Wetting #SurfaceRoughness #ContactAngle #ConfocalMicroscopy #IndustrialApplications #MaterialScience #WenzelTheory
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#coatings #magnetic #sputtering #thinfilm Structural and Magnetic Specificities of Fe-B Thin Films Obtained by Thermionic Vacuum Arc and Magnetron Sputtering by Cornel Staicu, Claudiu Locovei, Andrei Alexandu Dinu, Ion Burducea, Paul Dincă, Bogdan Butoi, Oana Gloria Pompilian, Corneliu Porosnicu, Cristian Petrica Lungu and Victor KUNCSER Coatings - Open Access Journal The present paper aims to make a comparison between the structural and magnetic properties of thin coatings of Fe-B with various concentrations, as obtained by two deposition methods: (i) thermionic vacuum arc (TVA) and (ii) magnetron sputtering (MS). We hope this interesting paper could inspire your new thoughts ✨
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New preprint research demonstrates the utility of the Nikon external #PhaseContrast system with an apodized phase contrast annulus for #LabelFree #LiveCell #Microscopy. This system is available for the Nikon Ti2-E inverted microscope. This approach allows users mostly free choice of objective lens while making it possible to also perform #Fluorescence #Imaging without compromising signal or resolution. Click to learn more: https://bit.ly/3PfaH1b
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enabling digital services for Student Loan related activities while maintaining the highest security standard, the most compliant personal data protection and customer-centric data-driven innovation.
Excited to share our latest blog post on AutoFragDiff, a powerful fragment-based autoregressive diffusion model that revolutionizes pocket-aware ligand design. Our approach leverages geometric vector perceptrons to predict atom types and spatial coordinates, enhancing local geometry while maintaining high binding affinity to protein targets. Check out the full post at https://bit.ly/47yExnu to delve into the innovative possibilities of molecular structure generation and scaffold extension. #MolecularDesign #LigandDesign #ProteinBinding
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PROFILE SURFACES LIKE A PRO! Highest accuracy on any materials, any roughness, any form. Transparent, reflective, black or white. https://lnkd.in/gxdyhYfh Call or live-chat with one of our engineers now! NANOVEA Non-Contact Optical Profilometers are developed and manufactured in California. Designed with Chromatic Confocal technology, our advanced surface profilers provide lateral accuracy which is determined by physics and is directly related to the spot size of the chromatic light source of the optical sensor. #opticalprofiler #opticalprofilometer #3dprofiler #3dprofilometer #profilomètre #perfilómetro #profilometro #perfilômetro #profilometr #profiilimittari
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Quantitative phase analysis in CT using AI is a game changer!
📣 Exciting news for all battery enthusiasts! 🚀 Join us at the 2024 International Battery Seminar & Exhibit from March 13-15, 2024, at Loews Royal Pacific Resort in Orlando, FL, to witness two ZEISS poster presentations. The first poster titled "Characterization of recycled battery materials (Black Mass) using 3D Automated Quantitative Mineralogy and Deep-Learning based Reconstruction via X-ray Microscopy" is set to shed light on the use of advanced technology in the field of battery recycling. The second poster, "Peeling back the layers of battery materials with correlative microscopy" promises to offer insights into the complex structures of battery materials. Get more information here: https://lnkd.in/dBPcYe-J Don't forget to stop by our booth #1313 See you at the Pacifica Ballroom! 🔋 #BatterySeminar #Orlando #BatteryMaterials #Recycling #Mineralogy #Microscopy #blackmass
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