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Specific heat constants

Gases and Vapors Hydrocarbons Reference Symbols i Chemical Formula Mol. Wt. 1r> 1/7 I a Mol. Wt. Critical Conditions Boiling Point (F) 14,7 Psia Specific Volume Cu ft/lb 14.7 Psia 81 60F (Z Facior Accounted For) Latent Heat of Vaporization (Btu/lb 14.7 Psia) Specific heat Constant Pressure (Cp 60F) Specific heat Constant Volume Specific heat ratio K = Cp/Cv... [Pg.439]

Iron ammonium alum, Fe2(S04)3 (NH4)2S04 24H20, has a Curie constant of 4.35 cm3 deg/mol and a molecular weight of 482. The specific heat constant Aj/R is 0.0142 deg2. Its density is 1.71 g/cm3. The material is placed in a magnetic field of 10,000 G, cooled to 1.5 K, and subsequently demagnetized adiabatically. What is the final temperature attained with this material ... [Pg.520]

Cp Specific heat, constant pressure J/(kg-K) T Temperature of fluid in contact with a solid K... [Pg.690]

Equation (11.1) is essentially a solution of Eq. (11.7) and is based on a few assumptions and simplifications, e.g., no axial heat conduction, constant average heat conductivity and specific heat, constant heat source, steady-state heat transfer, one-dimensional (radial) heat flux, cylindrical geometry in the waste and in the surrounding material, e.g., salt, and no heat source in the salt. [Pg.583]

TABLE 10. Electronic Specific Heat Constant (y), Electron-Electron (Coulomb) Coupling Constant (p ), Electron-Phonon Coupling Constant (X), Debye Temperature at 0 K(0p), and Superconducting Transition Temperature... [Pg.756]

The term heavy fermion was coined by Steglich, since the quasi-particle is a fermion (i.e. obeys Fermi statistics) and its mass is extremely large, several hundreds to thousand times larger than that of a free electron. This mass is measured by the electronic specific heat constant, since y/yo = m /m where yo is the unenhanced electronic specific heat constant as calculated from the band structure and m is the free-electron mass and m is the effective mass of the electron. Since yo is of the order... [Pg.469]

Hail coefficient T = temperature in kelvin U = intra-atomic Coulomb repulsion energy y = electronic specific heat constant A = band width... [Pg.338]

For the unsteady state, after introducing the earlier assumption of no change in phase, average constant specific heats, constant volume and volumetric flow rate, and then adding the dynamic term with the output on the left-hand side of the equation, we get... [Pg.300]

Temperature T Specific heat, constant pressure (dhldT) ... [Pg.425]

The electronic specific heat constant y = is a heavy-fermion system with an... [Pg.160]

Molar specific heat, constant pressure (25°C) 20.85 J/gmole °C... [Pg.514]

Molar specific heat, constant volume 54.8 J/gmole = C... [Pg.519]


See other pages where Specific heat constants is mentioned: [Pg.447]    [Pg.111]    [Pg.12]    [Pg.447]    [Pg.313]    [Pg.9]    [Pg.9]    [Pg.4]    [Pg.244]    [Pg.7]    [Pg.7]    [Pg.132]    [Pg.135]    [Pg.469]    [Pg.357]    [Pg.358]    [Pg.89]    [Pg.425]    [Pg.14]    [Pg.512]    [Pg.512]    [Pg.517]    [Pg.521]    [Pg.521]    [Pg.527]    [Pg.534]    [Pg.537]    [Pg.550]    [Pg.569]    [Pg.570]    [Pg.576]   
See also in sourсe #XX -- [ Pg.159 ]




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Anharmonic Effects on the Specific Heat and Elastic Constants

Case I Constant Specific Heat

Electronic specific heat constant

Enhanced electronic specific heat constant

Heating specific heat

Physical constants specific heat capacity

Specific heat

Specific heat at constant pressure

Specific heat at constant volume

Specific heat constant pressure

Specific heat constant pressure/volume

Specific heat constant volume

Specific heat of air at constant volume

Specificity constant

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