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NETZSCH kinetics neo 2.1.2.2 software package
Kinetics Neo 2.1.2.2 Software Package, supplied by NETZSCH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/kinetics+neo+2%2E1%2E2%2E2+software+package/kinetics+neo+software/pm37133972-64-12-11
Average 90 stars, based on 1 article reviews
kinetics neo 2.1.2.2 software package - by Bioz Stars, 2026-10
90/100 stars

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Crystallization Assay:

Article Title: Crystallization kinetics and glass-forming ability of rapidly crystallizing drugs studied by Fast Scanning Calorimetry.
Article Snippet: The use of the amorphous forms of drugs is a modern approach for the enhancement of bioavailability.. At the same time, the high cooling rate needed to obtain the metastable amorphous state often prevents its investigation using conventional laboratory methods such as differential scanning calorimetry, X-ray powder diffractometry.. One of the ways to overcome this problem may be the application of Fast Scanning Calorimetry.

Article Title: Kinetic stability of amorphous dipyridamole: A fast scanning calorimetry investigation.
Article Snippet: One of the main tasks of modern pharmaceutics is enhancing the solubility of drugs.. The approaches for solving this problem include producing active pharmaceutical ingredients in the amorphous state.. However, the use of amorphous drugs requires the determination of their kinetic stability.

Article Title: Kinetic Stability and Glass-Forming Ability of Thermally Labile Quinolone Antibiotics.
Article Snippet: The application of drugs in the amorphous state is one way to improve their bioavailability.. As such, the determination of the optimal conditions for production and the assessment of the stability of the amorphous system are actively researched topics of present-day pharmaceutical science.. In the present work, we have studied the kinetic stability and glass-forming ability of the thermally labile quinolone antibiotics using fast scanning calorimetry.

Article Title: Using fast scanning calorimetry to study solid-state cyclization of dipeptide L-leucyl-L-leucine
Article Snippet: The possibility of using fast scanning calorimetry (FSC) to study the kinetics of the solid-state cyclization of dipeptide was demonstrated in the present work for the first time.. The activation energy and Arrhenius constant of the cyclization of L-leucyl-L-leucine (Leu-Leu) were estimated.. FSC data obtained at heating rates from 18,000 to 54,000 K min−1 were evaluated by non-isothermal kinetics.

Software:

Article Title: Crystallization kinetics and glass-forming ability of rapidly crystallizing drugs studied by Fast Scanning Calorimetry.
Article Snippet: The use of the amorphous forms of drugs is a modern approach for the enhancement of bioavailability.. At the same time, the high cooling rate needed to obtain the metastable amorphous state often prevents its investigation using conventional laboratory methods such as differential scanning calorimetry, X-ray powder diffractometry.. One of the ways to overcome this problem may be the application of Fast Scanning Calorimetry.

Article Title: Kinetic stability of amorphous dipyridamole: A fast scanning calorimetry investigation.
Article Snippet: One of the main tasks of modern pharmaceutics is enhancing the solubility of drugs.. The approaches for solving this problem include producing active pharmaceutical ingredients in the amorphous state.. However, the use of amorphous drugs requires the determination of their kinetic stability.

Article Title: Kinetic Stability and Glass-Forming Ability of Thermally Labile Quinolone Antibiotics.
Article Snippet: The application of drugs in the amorphous state is one way to improve their bioavailability.. As such, the determination of the optimal conditions for production and the assessment of the stability of the amorphous system are actively researched topics of present-day pharmaceutical science.. In the present work, we have studied the kinetic stability and glass-forming ability of the thermally labile quinolone antibiotics using fast scanning calorimetry.

Article Title: Using fast scanning calorimetry to study solid-state cyclization of dipeptide L-leucyl-L-leucine
Article Snippet: The possibility of using fast scanning calorimetry (FSC) to study the kinetics of the solid-state cyclization of dipeptide was demonstrated in the present work for the first time.. The activation energy and Arrhenius constant of the cyclization of L-leucyl-L-leucine (Leu-Leu) were estimated.. FSC data obtained at heating rates from 18,000 to 54,000 K min−1 were evaluated by non-isothermal kinetics.



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NETZSCH kinetics neo 2.1.2.2 software package
Kinetics Neo 2.1.2.2 Software Package, supplied by NETZSCH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/kinetics+neo+2%2E1%2E2%2E2+software+package/kinetics+neo+software/pm37133972-64-12-11
Average 90 stars, based on 1 article reviews
kinetics neo 2.1.2.2 software package - by Bioz Stars, 2026-10
90/100 stars
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