on biac 1.5. If the temperature of a system of one mole of an ideal gas is changed from T1°C to T2 =2T1 °C is accompanied by a change in internal energy of 4000J, (a)Calculate the change in internal energy of the gas for doubling of the temperature at constant Volume. (b) Is there any heat supplied into or out of the system? (c) Does this quantity of heat correspond to the change in enthalpy of the gas.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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1.5 please
H2(g) + Brz(1) →
2HBr (g)
which one is exothermic and why?
(Submit via link created on black
1.5. If the temnperature of a system of one mole of an ideal gas is changed from T1°C to T2 =2T1 °C is accompanied by a change in internal energy of 4000J.
(a)Calculate the change in internal energy of the gas for doubling of the temperature at constant volume.
(b) Is there any heat supplied into or out of the system?
(c) Does this quantity of heat correspond to the change in enthalpy of the gas.
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Transcribed Image Text:H2(g) + Brz(1) → 2HBr (g) which one is exothermic and why? (Submit via link created on black 1.5. If the temnperature of a system of one mole of an ideal gas is changed from T1°C to T2 =2T1 °C is accompanied by a change in internal energy of 4000J. (a)Calculate the change in internal energy of the gas for doubling of the temperature at constant volume. (b) Is there any heat supplied into or out of the system? (c) Does this quantity of heat correspond to the change in enthalpy of the gas. For the toolbar, press ALT+F10 (PC) or ALT+FN+F10 (Mac). В I U S Paragraph A v Arial 10pt x² X2 田
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