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Enhance Battery Cell Performance Through In-Operando Thermal Analysis

eBook Enhance Battery Cell Performance Through In-Operando Thermal Analysis A Guide to Predictive Thermo-Electrochemical Characterization of Battery Cells As batteries are pushed to accommodate increasing demand and new capabilities, battery research and development must keep apace with new breakthroughs without sacrificing quality. In particular, new battery chemistries need greater efficiency, safety, and stability. From choosing…

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Engineering a Greener Approach to Polymers

Engineering a Greener Approach to Polymers Rowan University uses Waters and TA Instruments technology to advance materials research with the goal to utilize nature’s chemistry sustainably to enhance material performance Technology: ACQUITY APC System, TA Instruments Q800 Dynamic Mechanical Analyzer, TA Instruments Discovery Differential Scanning Calorimeter DSC 2500, Waters Alliance HPLC, TA Instruments Discovery Hybrid…

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Elucidating Thermodynamic Details of Biologic and Small Molecule Drugs using Microcalorimetry

Overview Researchers are working tirelessly to understand the basic chemical details of viral pathogenesis, viral protein structures, and identifying therapeutics to disrupt and prevent disease. There are different modes of therapies evolving that include small-molecule antiviral drugs, mRNA, and protein-based vaccines. Microcalorimetry is one powerful tool for the development and characterization of the mechanism of…

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Electrorheology (ER) Accessory

Electrorheology (ER) Accessory Electrorheology (ER) fluids are suspensions of extremely fine non-conducting particles in an electrically insulating fluid, which show dramatic and reversible rheological changes when the electric field is applied. Description Features Applications Electrorheology (ER) fluids are suspensions of extremely fine non-conducting particles in an electrically insulating fluid, which show dramatic and reversible rheological…

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Electrolyte Researchers Work to Creatively Solve Energy-Related Challenges Sign Up

Case Study Electrolyte Researchers Work to Creatively Solve Energy-Related Challenges Technology: Waters™ TA Instruments™ Thermogravimetric Analyzer, Differential Scanning Calorimeter, Discovery Hybrid Rheometer (DHR), TAM IV Calorimeter After learning more about how other researchers were using thermal analysis, rheology, and microcalorimetry in different applications, Chibueze Amanchukwu, Principal Investigator of the Amanchukwu Laboratory and Assistant Professor at…

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Electrolyte Researchers Work to Creatively Solve Energy-Related Challenges

Electrolyte Researchers Work to Creatively Solve Energy-Related Challenges The Amanchukwu Group at the University of Chicago charts new territory with TA Instruments and Waters technology in the design and synthesis of novel electrolyte media for bleeding edge applications in batteries and electrocatalysis Technology: Waters™ TA Instruments™ Thermogravimetric Analyzer, Differential Scanning Calorimeter, Discovery Hybrid Rheometer (DHR),…

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ElectroForce DMA 3200 High Force DMA

DMA 3200 High Force DMA The DMA 3200 combines decades of cutting-edge fatigue and world-leading Dynamic Mechanical Analysis technologies into a unique and highly versatile testing platform. The patented, frictionless Electroforce® motor technology, superior mechanical design, efficient environmental control, and wide variety of clamping systems deliver superior data accuracy for the broadest range of applications.   Description Specs Technology Clamping Systems Software Applications…

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ElectroForce 5500

The ElectroForce 5500 test instrument provides characterization and stimulation capabilities for a variety of synthetic materials such as composites and elastomers, biomaterials, tissue samples, and tissue-engineered constructs. It features a 200 N maximum force.

This test instrument is versatile and can meet the individualized needs of educators and researchers through a variety of fixtures and software options.

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ElectroForce 3500

ElectroForce 3500 test instruments are available in three base system configurations. The 3510 instrument, rated at 7.5 kN, is configured with the linear motor installed in the upper crosshead, making it well-suited for applications requiring a temperature-controlled bath. The 3520 instrument is rated at 7.5 kN, and the linear motor is installed in the lower baseplate. The 3550 instrument is a higher-force configuration rated at 15 kN.

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