differential scanning calorimeter dsc (Hitachi Ltd)
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Hitachi Ltd
differential scanning calorimeter dsc
Differential Scanning Calorimeter Dsc, supplied by Hitachi Ltd, used in various techniques. Bioz Stars score: 99/100, based on 729 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/differential+scanning+calorimeter/DSC7020/us12617902-181-2-11
Average 99 stars, based on 729 article reviews
Differential Scanning Calorimeter Dsc, supplied by Hitachi Ltd, used in various techniques. Bioz Stars score: 99/100, based on 729 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/differential+scanning+calorimeter/DSC7020/us12617902-181-2-11
Average 99 stars, based on 729 article reviews
differential scanning calorimeter dsc - by Bioz Stars,
2026-09
99/100 stars
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Functional Assay:Article Title: Copolymer, molded body, injection molded body, and coated electrical wire Article Snippet: .. TABLE 2 Molar Absorption Extinction Functional Frequency Coefficient Correction Model Group (cm−1) (l/cm/mol) Factor Compound —COF 1883 600 388 C7F15COF —COOH free 1815 530 439 H(CF2)6COOH —COOH bonded 1779 530 439 H(CF2)6COOH —COOCH3 1795 680 342 C7F15COOCH3 —CONH2 3436 506 460 C7H15CONH2 —CH2OH2, —OH 3648 104 2236 C7H15CH2OH —CF2H 3020 8.8 26485 H(CF2CF2)3CH2OH —CF═CF2 1795 635 366 CF2═CF2 (Melting Point) The polymer was heated, as a first temperature raising step at a temperature-increasing rate of 10° C./min from 200° C. to 350° C., then cooled at a cooling rate of 10° C./min from 350° C. to 200° C., and then again heated, as second temperature raising step, at a temperature-increasing rate of 10° C./min from 200° C. to 350° C. by using a Article Title: Injection molded article Article Snippet: .. The numerical values of the Examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured by an NMR analyzer (for example, manufactured by Bruker BioSpin GmbH, AVANCE 300, high-temperature probe). (Melt Flow Rate (MFR)) The polymer was made to flow out from a nozzle of 2.1 mm in inner diameter and 8 mm in length at 372° C. under a load of 5 kg by using a Melt Indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238, and the mass (g/10 min) of the polymer flowing out per 10 min was determined. (Melting Point) The polymer was heated, as a first temperature raising step at a temperature-increasing rate of 10° C./min from 200° C. to 350° C., then cooled at a cooling rate of 10° C./min from 350° C. to 200° C., and then again heated, as second temperature raising step, at a temperature-increasing rate of 10° C./min from 200° C. to 350° C. by using a Article Title: Member for nonaqueous electrolyte batteries Article Snippet: .. Individual numerical values in the examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured with an NMR analyzer (for example, AVANCE 300 high-temperature probe manufactured by Bruker BioSpin K.K.). (Melt Flow Rate (MFR)) The mass of a polymer that flowed out from a nozzle having an inner diameter of 2.1 mm and a length of 8 mm per 10 minutes (g/10 minutes) at 372° C. under a load of 5 kg was determined using a melt indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238. (Melting Point) The melting point was determined as a temperature corresponding to the maximum value in a heat-of-fusion curve when heating a polymer at a rate of 10° C./minute using a Polymer:Article Title: Copolymer, molded body, injection molded body, and coated electrical wire Article Snippet: .. TABLE 2 Molar Absorption Extinction Functional Frequency Coefficient Correction Model Group (cm−1) (l/cm/mol) Factor Compound —COF 1883 600 388 C7F15COF —COOH free 1815 530 439 H(CF2)6COOH —COOH bonded 1779 530 439 H(CF2)6COOH —COOCH3 1795 680 342 C7F15COOCH3 —CONH2 3436 506 460 C7H15CONH2 —CH2OH2, —OH 3648 104 2236 C7H15CH2OH —CF2H 3020 8.8 26485 H(CF2CF2)3CH2OH —CF═CF2 1795 635 366 CF2═CF2 (Melting Point) The polymer was heated, as a first temperature raising step at a temperature-increasing rate of 10° C./min from 200° C. to 350° C., then cooled at a cooling rate of 10° C./min from 350° C. to 200° C., and then again heated, as second temperature raising step, at a temperature-increasing rate of 10° C./min from 200° C. to 350° C. by using a Article Title: Injection molded article Article Snippet: .. The numerical values of the Examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured by an NMR analyzer (for example, manufactured by Bruker BioSpin GmbH, AVANCE 300, high-temperature probe). (Melt Flow Rate (MFR)) The polymer was made to flow out from a nozzle of 2.1 mm in inner diameter and 8 mm in length at 372° C. under a load of 5 kg by using a Melt Indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238, and the mass (g/10 min) of the polymer flowing out per 10 min was determined. (Melting Point) The polymer was heated, as a first temperature raising step at a temperature-increasing rate of 10° C./min from 200° C. to 350° C., then cooled at a cooling rate of 10° C./min from 350° C. to 200° C., and then again heated, as second temperature raising step, at a temperature-increasing rate of 10° C./min from 200° C. to 350° C. by using a Article Title: Member for nonaqueous electrolyte batteries Article Snippet: .. Individual numerical values in the examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured with an NMR analyzer (for example, AVANCE 300 high-temperature probe manufactured by Bruker BioSpin K.K.). (Melt Flow Rate (MFR)) The mass of a polymer that flowed out from a nozzle having an inner diameter of 2.1 mm and a length of 8 mm per 10 minutes (g/10 minutes) at 372° C. under a load of 5 kg was determined using a melt indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238. (Melting Point) The melting point was determined as a temperature corresponding to the maximum value in a heat-of-fusion curve when heating a polymer at a rate of 10° C./minute using a Differential Scanning Calorimetry:Article Title: Method for producing poly(3-hydroxyalkanoate) foam particles and method for producing poly(3-hydroxyalkanoate) foam molded article Article Snippet: [Poly(3-hydroxyalkanoate)] P3HA-1: A mixture of P3HB3HH and P3HB (weight ratio=92:8, monomer ratio 3HB/3HH in P3HB3HH=95/5 (mol %/mol %)) P3HA-2: A mixture of P3HB3HH and P3HB (weight ratio=96:4, monomer ratio 3HB/3HH in P3HB3HH=95/5 (mol %/mol %)) P3HA-3: P3HB3HH, 100 wt % (monomer ratio 3HB/3HH in P3HB3HH=95/5 (mol %/mol %)) [Cell Controlling Agent] Cell controlling agent: Talc (Talcan Powder PK-S manufactured by Hayashi Kasei Co., Ltd) [Dispersant] Dispersant: Tricalcium phosphate (manufactured by Taihei Chemical Industrial Co., Ltd.) [Dispersion Aid] Dispersion aid: Sodium alkylsulfonate (LATEMUL PS manufactured by Kao Corporation) [Crosslinking Agent] Crosslinking agent-1: t-Butylperoxy-2-ethylhexyl carbonate (content: 97%) (PERBUTYL E manufactured by NOF Corporation) Crosslinking agent-2: Benzoyl peroxide (content: 75%) (NYPER BW manufactured by NOF Corporation) The following describes the methods for evaluations carried out in Examples and Comparative Examples. .. [Measurement of Melting Point of Resin Particles Made of P3HA Composition] About 5 mg of the resin particles made of the P3HA composition were weighed out and subjected to differential scanning calorimetry which used a Article Title: Method for producing poly(3-hydroxyalkanoate) foam particles and method for producing poly(3-hydroxyalkanoate) foam molded article Article Snippet: .. The melting point of the P3HA is measured as the highest melting peak temperature in a DSC curve obtained by differential scanning calorimetry which uses a Article Title: Method for producing poly(3-hydroxyalkanoate) foam particles and method for producing poly(3-hydroxyalkanoate) foam molded article Article Snippet: .. The melting point of the resin particles made of the P3HA composition is measured as the highest melting peak temperature in a DSC curve obtained by differential scanning calorimetry which uses a Nuclear Magnetic Resonance:Article Title: Injection molded article Article Snippet: .. The numerical values of the Examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured by an NMR analyzer (for example, manufactured by Bruker BioSpin GmbH, AVANCE 300, high-temperature probe). (Melt Flow Rate (MFR)) The polymer was made to flow out from a nozzle of 2.1 mm in inner diameter and 8 mm in length at 372° C. under a load of 5 kg by using a Melt Indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238, and the mass (g/10 min) of the polymer flowing out per 10 min was determined. (Melting Point) The polymer was heated, as a first temperature raising step at a temperature-increasing rate of 10° C./min from 200° C. to 350° C., then cooled at a cooling rate of 10° C./min from 350° C. to 200° C., and then again heated, as second temperature raising step, at a temperature-increasing rate of 10° C./min from 200° C. to 350° C. by using a Article Title: Member for nonaqueous electrolyte batteries Article Snippet: .. Individual numerical values in the examples were measured by the following methods. (Content of Monomer Unit) The content of each monomer unit was measured with an NMR analyzer (for example, AVANCE 300 high-temperature probe manufactured by Bruker BioSpin K.K.). (Melt Flow Rate (MFR)) The mass of a polymer that flowed out from a nozzle having an inner diameter of 2.1 mm and a length of 8 mm per 10 minutes (g/10 minutes) at 372° C. under a load of 5 kg was determined using a melt indexer G-01 (manufactured by Toyo Seiki Seisaku-sho, Ltd.) according to ASTM D1238. (Melting Point) The melting point was determined as a temperature corresponding to the maximum value in a heat-of-fusion curve when heating a polymer at a rate of 10° C./minute using a other:Article Title: Mechanical Properties of Waterborne Polyurethane Latex Film Formed From Acrylic and Blocked Polyisocyanate Particles Article Snippet: Tg of AL latex film, AL/BPI blend films and polyurethane films were measured using a |