Author: William W. Weller
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 5
Book Description
Low-temperature Heat Capacities and Entropies at 298.150 K of Ferrous Molybdate and Ferrous Tungstate
Author: William W. Weller
Publisher:
ISBN:
Category : Iron compounds
Languages : en
Pages : 14
Book Description
Publisher:
ISBN:
Category : Iron compounds
Languages : en
Pages : 14
Book Description
Low-temperature Heat Capacities and Entropies at 298.15° K of Ferrous Molybdate and Ferrous Tungstate
Author: William W. Weller
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 5
Book Description
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 5
Book Description
The Heat Capacity of Magnesium Between 12© K and 320© K and the Entropy of Magnesium at 25© C
Author: R. S. Craig
Publisher:
ISBN:
Category : Magnesium alloys
Languages : en
Pages : 8
Book Description
Publisher:
ISBN:
Category : Magnesium alloys
Languages : en
Pages : 8
Book Description
Low-temperature Heat Capacity and Entropy at 298.150 K. of Scandium
Author: William W. Weller
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 12
Book Description
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 12
Book Description
Low-temperature Heat Capacities and Entropies at 298.15° of Sulfides of Arsenic, Germanium and Nickel
Author: John M. Gomes
Publisher:
ISBN:
Category : Aluminum
Languages : en
Pages : 586
Book Description
Publisher:
ISBN:
Category : Aluminum
Languages : en
Pages : 586
Book Description
Low Temperature Specific Heats, Entropy at 25© C and the Residual Entropy of the Intermetallic Compound MgCd
Author: R. S. Craig
Publisher:
ISBN:
Category : Cadmium alloys
Languages : en
Pages : 32
Book Description
Publisher:
ISBN:
Category : Cadmium alloys
Languages : en
Pages : 32
Book Description
Thermal Properties of Solids at Room and Cryogenic Temperatures
Author: Guglielmo Ventura
Publisher: Springer
ISBN: 9789401789684
Category : Science
Languages : en
Pages : 0
Book Description
The minimum temperature in the natural universe is 2.7 K. Laboratory refrigerators can reach temperatures in the microkelvin range. Modern industrial refrigerators cool foods at 200 K, whereas space mission payloads must be capable of working at temperatures as low as 20 K. Superconducting magnets used for NMR work at 4.2 K. Hence the properties of materials must be accurately known also at cryogenic temperatures. This book provides a guide for engineers, physicists, chemists, technicians who wish to approach the field of low-temperature material properties. The focus is on the thermal properties and a large spectrum of experimental cases is reported. The book presents updated tables of low-temperature data on materials and a thorough bibliography supplements any further research. Key Features include: ° Detailed technical description of experiments ° Description of the newest cryogenic apparatus ° Offers data on cryogenic properties of the latest new materials ° Current reference review
Publisher: Springer
ISBN: 9789401789684
Category : Science
Languages : en
Pages : 0
Book Description
The minimum temperature in the natural universe is 2.7 K. Laboratory refrigerators can reach temperatures in the microkelvin range. Modern industrial refrigerators cool foods at 200 K, whereas space mission payloads must be capable of working at temperatures as low as 20 K. Superconducting magnets used for NMR work at 4.2 K. Hence the properties of materials must be accurately known also at cryogenic temperatures. This book provides a guide for engineers, physicists, chemists, technicians who wish to approach the field of low-temperature material properties. The focus is on the thermal properties and a large spectrum of experimental cases is reported. The book presents updated tables of low-temperature data on materials and a thorough bibliography supplements any further research. Key Features include: ° Detailed technical description of experiments ° Description of the newest cryogenic apparatus ° Offers data on cryogenic properties of the latest new materials ° Current reference review