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The temperature (T) dependence of resistivity (rho) of a semiconductor is represented by :

Temperature dependence of resistivity p(T) of semiconductors, insulators and metals is significantly based on the following factors:

Temperature dependence of drift velocity depends on the following factors.

The temperature dependence of resistance of Cu and undoped Si in the temperature range 300 -400 K, is best described by :

The temperature dependence of equilibrium constant of a reaction is given by In K_(eq) = 4.8 -(2059)/(T) . Find Delta_(r)G^(Theta), Delta_(r)H^(Theta), Delta_(r)S^(Theta) .

The temperature dependence of equilibrium constant of a reaction is given by ln K_(eq) = 4.8 -(2059)/(T) . Find Delta_(r)G^(Theta), Delta_(r)H^(Theta), Delta_(r)S^(Theta) at 298 K

Which of the following lines correctly show the temperature dependence of equilibrium constant, K, for an exothermic reaction ?

The temperature dependence of the rate of a chemical reaction can be explained by Arrhenius equaiton which is

Comment on the temperature dependence of half - life of a first order reaction.

Assertion: The sum of mol fractions of all the components of a solution is unity. Reason: Mole fraction is temperature dependent mode of concentrations.