Study 5e Thermodynamics Energy Changes in MCAT Chemical and Physical Foundations of Biological Systems with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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Flashcard 1: State the definition of entropy change for a reversible process.
Answer: ΔS=Tqrev. For reversible processes at constant temperature, entropy change is reversible heat divided by temperature.
Flashcard 2: For an adiabatic process, what is the heat transfer q?
Answer: q=0. Adiabatic processes, by definition, prohibit heat exchange between the system and surroundings.
Flashcard 3: At constant T and P, what sign of ΔG indicates a spontaneous process?
Answer: ΔG<0. Negative Gibbs free energy change indicates the process can occur spontaneously under those conditions.
Flashcard 4: State the definition of enthalpy in terms of U, P, and V.
Answer: H=U+PV. Enthalpy accounts for internal energy plus the energy associated with pressure-volume work.
Flashcard 5: What is the formula for heat absorbed at constant pressure for a temperature change ΔT?
Answer: qp=nCpΔT. Heat capacity at constant pressure quantifies energy required to raise temperature for a given amount of substance.
Flashcard 6: Find ΔU if q=−50J and w=+20J for the system.
Answer: ΔU=−30J. The first law calculates internal energy change as the sum of heat and work with proper signs.
Flashcard 7: Find qp if n=2 and Cp=30J\cdotpmol−1\cdotpK−1 for ΔT=10K.
Answer: qp=600J. Constant pressure heat transfer uses molar heat capacity to relate energy to temperature change.
Flashcard 8: What is the sign convention for w when the system does work on the surroundings?
Answer: w<0. Work performed by the system on surroundings reduces the system's energy, thus assigned a negative sign.
Flashcard 9: Which sign of ΔH indicates an exothermic reaction at constant pressure?
Answer: ΔH<0. Exothermic reactions release heat, corresponding to a decrease in the system's enthalpy.
Flashcard 10: What is the relationship between ΔG∘ and the equilibrium constant K?
Answer: ΔG∘=−RTlnK. This equation links thermodynamic favorability under standard conditions to the equilibrium position.
Flashcard 11: What is the sign convention for q when heat enters the system?
Answer: q>0. In thermodynamic conventions, heat absorbed by the system from surroundings is assigned a positive value.
Flashcard 12: What is the relationship between Cp and Cv for an ideal gas?
Answer: Cp=Cv+R. The difference arises from the additional work term at constant pressure for ideal gases.
Flashcard 13: State the Gibbs free energy equation relating ΔG, ΔH, T, and ΔS.
Answer: ΔG=ΔH−TΔS. Gibbs free energy combines enthalpy and entropy to assess spontaneity at constant temperature and pressure.
Flashcard 14: State Hess's law for combining reaction enthalpies.
Answer: ΔHnet=∑ΔHsteps. Since enthalpy is a state function, the net change equals the sum of stepwise changes regardless of path.
Flashcard 15: What is the relationship between ΔU and q at constant volume?
Answer: ΔU=qv. At constant volume, internal energy change equals heat transferred since no work is done.
Flashcard 16: Find ΔG at T=300K if ΔH=20kJ and ΔS=50J\cdotpK−1.
Answer: ΔG=5kJ. Gibbs free energy subtracts the entropy term from enthalpy, ensuring unit consistency in calculations.
Flashcard 17: State the ideal gas law relating P, V, n, and T.
Answer: PV=nRT. The ideal gas law describes the proportional relationship between pressure, volume, moles, and temperature.
Flashcard 18: State the first law of thermodynamics using ΔU, q, and w.
Answer: ΔU=q+w. The first law states that internal energy change equals heat added to the system plus work done on the system.
Flashcard 19: Find w if Pext=2atm and the system expands by ΔV=3L.
Answer: w=−6L\cdotpatm. Expansion work against constant pressure is negative the product of pressure and volume increase.
Flashcard 20: What is the relationship between ΔH and q at constant pressure (PV work only)?
Answer: ΔH=qp. Enthalpy change equals heat transferred at constant pressure when only PV work occurs.
Flashcard 21: What is the criterion for spontaneity in terms of the universe entropy change?
Answer: Spontaneous if ΔSuniv>0. The second law dictates that spontaneous processes increase the total entropy of the universe.
Flashcard 22: What is the formula for pressure–volume work at constant external pressure?
Answer: w=−PextΔV. For irreversible expansion at constant external pressure, work equals the negative product of pressure and volume change.
Flashcard 23: For an isochoric process, what is the work w?
Answer: w=0. Isochoric processes involve no volume change, hence no pressure-volume work is performed.
Flashcard 24: What is the formula for heat absorbed at constant volume for a temperature change ΔT?
Answer: qv=nCvΔT. Heat capacity at constant volume measures energy input for temperature change without volume alteration.