3 edition of Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides found in the catalog.
Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides
United States. Bureau of Mines.
Bibliography: p. 19-22
|Statement||by M. J. Ferrante ... [et al.]|
|Series||Report of investigations - Bureau of Mines ; 8305|
|Contributions||Ferrante, Michael J|
|The Physical Object|
|Pagination||22 p. :|
|Number of Pages||22|
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Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides. [Washington]: Dept. of the Interior, Bureau of Mines, (OCoLC) Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides Paperback – January 1, by. Unknown (Author) See all formats and editions Hide other formats and editions.
Price New from Used from Paperback, January 1, Author. Unknown. Author of Sensitivity of Explosives to Initiation by Electrostatic Discharges, Advancing coal mining technology research, development, and demonstration in fiscal yearMaterials survey, nickel,Materials Handling Research, Coal Industry of Brazil, Mineral resources of the United States, Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric.
Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides by United States. Bureau of Mines. 5 editions - first published in Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides  United States. Bureau of Mines. [Washington]: Dept.
of the Interior, Bureau of Mines, Low-temperature heat capacities and high-temperature enthalpies of sodium chromate  Ferrante, M.
(Michael John), Low-temperature values were tabulated for the standard heat capacity, entropy, Gibbs energy function, and enthalpy relative to 0 K. Enthalpies were measured with a copper-block calorimeter from. Low-temperature heat capacities and high-temperature enthalpies of cuprous and cupric sulfides.
Author Pankratz, L. Published Low-temperature heat capacities and enthalpy of formation of aluminum sulfide (Al2S3) Author Ko, Hon-Chung. Published J.-F. Marucco, P. Gerdanian, and M. Dodé, “Determination of Partial Molar Magnitudes of Mixing of Oxygen in Iron Protoxide at °C.
Direct Measurements of the Partial Molar Enthalpies of Mixing of Oxygen by Means of a High Temperature Microcalorimeter of the Tian-Calvet Type,”J.
Chim, Phys. Phys.- ,67, – () in by: The configuration studied is a cuprous chloride CuCl vapor compression heat pump cascaded with a biphenyl (C6H5)2 heat pump. We developed the model in the low-temperature and high-temperature. Low temperature heat-capacity function of α-SnS.
Figure A Low temperature heat-capacity function of SnS2(cr). Figure A SIT analysis of the data of. F=q₁q₂/r². The electrostatic forces holding an electron to its nucleus. For hydrogen q₁ can be the positive charge on the nucleus and q₂ can be the electron charge, because the lone electron feels all % of the positive charge from the nucleus.
Full text of "Handbook of Inorganic Chemicals, Patnaik" See other formats. Heat capacity, Cρ is defined as the quantity of thermal energy needed to raise the temperature of an object by 1°C.
Thus, the heat capacity is the product of mass of the object and its specific heat: Cρ mass specific heat Specific heat is the amount of heat required to raise the temperature of one gram of a substance by 1°C. FIVE STEPS TO A AP Chemistry 5 Other books in McGraw-Hill’s 5 STEPS TO A 5 series include: AP Biology AP Calculus AB/BC AP Computer Science AP English Language AP English Literature AP European History AP Physics B and C AP Psychology AP Spanish Language AP Statistics AP U.S.
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