AP Chemistry Flashcards: Gibbs Free Energy And Thermodynamic Favorability

Study Gibbs Free Energy And Thermodynamic Favorability in AP Chemistry with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

AP Chemistry

Gibbs Free Energy And Thermodynamic Favorability

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QUESTION
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When is a process never spontaneous at any temperature?

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ANSWER

ΔH>0\Delta H > 0 and ΔS<0\Delta S < 0. Endothermic with negative entropy makes ΔG\Delta G always positive.

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Flashcard 1: When is a process never spontaneous at any temperature?

Answer: ΔH>0\Delta H > 0 and ΔS<0\Delta S < 0. Endothermic with negative entropy makes ΔG\Delta G always positive.

Flashcard 2: What does a negative ΔG\Delta G indicate about a reaction?

Answer: The reaction is thermodynamically favorable. Negative ΔG\Delta G means the process can occur spontaneously without external work.

Flashcard 3: Identify the units of Gibbs free energy change, ΔG\Delta G.

Answer: Joules (J) or kilojoules (kJ). Energy units since ΔG\Delta G represents energy change per mole of reaction.

Flashcard 4: What does a negative ΔG\Delta G indicate about a reaction?

Answer: The reaction is thermodynamically favorable. Negative ΔG\Delta G means the process can occur spontaneously without external work.

Flashcard 5: What is the value of RR in the equation ΔG=RTlnKeq\Delta G^\circ = -RT \ln K_{eq}?

Answer: 8.314 J/(mol·K). The universal gas constant in SI units for thermodynamic calculations.

Flashcard 6: Given ΔG=10 kJ/mol\Delta G = -10 \text{ kJ/mol}, is the reaction spontaneous?

Answer: Yes, it is spontaneous. Negative ΔG\Delta G values always indicate spontaneous processes.

Flashcard 7: What is the expression for ΔSuniv\Delta S_{univ} in terms of ΔG\Delta G?

Answer: ΔSuniv=ΔGT\Delta S_{univ} = -\frac{\Delta G}{T}. This relates universal entropy change to Gibbs free energy change.

Flashcard 8: How is ΔG\Delta G calculated for a reaction not at equilibrium?

Answer: ΔG=ΔG+RTlnQ\Delta G = \Delta G^\circ + RT \ln Q. This equation accounts for non-standard conditions using the reaction quotient.

Flashcard 9: What is the thermodynamic favorability of a reaction with ΔG=40 kJ/mol\Delta G^\circ = -40 \text{ kJ/mol}?

Answer: Favorable. Large negative ΔG\Delta G^\circ values indicate highly favorable reactions.

Flashcard 10: What is the standard state temperature for ΔG\Delta G^\circ calculations?

Answer: 298 K298 \text{ K}. Standard temperature for thermodynamic calculations is 25°C or 298 K.

Flashcard 11: What happens to ΔG\Delta G when a reaction is reversed?

Answer: The sign of ΔG\Delta G is reversed. Reversing a reaction changes the sign of all thermodynamic quantities.

Flashcard 12: When is a process never spontaneous at any temperature?

Answer: ΔH>0\Delta H > 0 and ΔS<0\Delta S < 0. Endothermic with negative entropy makes ΔG\Delta G always positive.

Flashcard 13: What does ΔG>0\Delta G > 0 indicate about a system's state?

Answer: It is non-spontaneous. Positive ΔG\Delta G means the process requires energy input to proceed.

Flashcard 14: What is the standard state temperature for ΔG\Delta G^\circ calculations?

Answer: 298 K298 \text{ K}. Standard temperature for thermodynamic calculations is 25°C or 298 K.

Flashcard 15: How does ΔG\Delta G relate to the maximum useful work a system can perform?

Answer: ΔG\Delta G equals the maximum useful work. The magnitude of ΔG\Delta G represents maximum work extractable from the process.

Flashcard 16: In terms of enthalpy and entropy, when is a process always spontaneous?

Answer: ΔH<0\Delta H < 0 and ΔS>0\Delta S > 0. Exothermic with positive entropy ensures ΔG\Delta G is always negative.

Flashcard 17: How is ΔG\Delta G calculated for a reaction not at equilibrium?

Answer: ΔG=ΔG+RTlnQ\Delta G = \Delta G^\circ + RT \ln Q. This equation accounts for non-standard conditions using the reaction quotient.

Flashcard 18: What does ΔG>0\Delta G > 0 indicate about a system's state?

Answer: It is non-spontaneous. Positive ΔG\Delta G means the process requires energy input to proceed.

Flashcard 19: Which variable in ΔG=ΔHTΔS\Delta G = \Delta H - T \Delta S is affected by temperature changes?

Answer: The TΔST \Delta S term. Only the entropy term TΔST \Delta S contains temperature as a variable.

Flashcard 20: When is ΔG=ΔG\Delta G = \Delta G^\circ true?

Answer: When the reaction is at standard state conditions. Standard conditions mean all species at 1 M concentration or 1 atm pressure.

Flashcard 21: In terms of enthalpy and entropy, when is a process always spontaneous?

Answer: ΔH<0\Delta H < 0 and ΔS>0\Delta S > 0. Exothermic with positive entropy ensures ΔG\Delta G is always negative.

Flashcard 22: What is the relationship between ΔG\Delta G and reaction rate?

Answer: ΔG\Delta G does not affect reaction rate. ΔG\Delta G determines thermodynamic favorability, not kinetic rate.

Flashcard 23: Identify the role of catalysts in altering ΔG\Delta G.

Answer: Catalysts do not alter ΔG\Delta G. Catalysts only affect reaction rates, not thermodynamic quantities.

Flashcard 24: What is the significance of TΔST\Delta S in the Gibbs free energy equation?

Answer: It represents the temperature-dependent entropy term. This term quantifies the entropy contribution weighted by temperature.

Flashcard 25: Given ΔG=10 kJ/mol\Delta G = -10 \text{ kJ/mol}, is the reaction spontaneous?

Answer: Yes, it is spontaneous. Negative ΔG\Delta G values always indicate spontaneous processes.

Flashcard 26: What does a positive ΔG\Delta G^\circ indicate about a reaction?

Answer: The reaction is non-spontaneous. Positive standard free energy means unfavorable under standard conditions.

Flashcard 27: What is the relationship between ΔG\Delta G and reaction rate?

Answer: ΔG\Delta G does not affect reaction rate. ΔG\Delta G determines thermodynamic favorability, not kinetic rate.

Flashcard 28: For which ΔH\Delta H and ΔS\Delta S values is spontaneity temperature-dependent?

Answer: ΔH\Delta H and ΔS\Delta S both positive or both negative. Temperature determines which term dominates in the Gibbs equation.

Flashcard 29: What is the significance of TΔST\Delta S in the Gibbs free energy equation?

Answer: It represents the temperature-dependent entropy term. This term quantifies the entropy contribution weighted by temperature.

Flashcard 30: State the relationship between KeqK_{eq} and ΔG\Delta G^\circ.

Answer: ΔG=RTlnKeq\Delta G^\circ = -RT \ln K_{eq}. This equation connects equilibrium constants to standard free energy changes.

Flashcard 31: State the relationship between KeqK_{eq} and ΔG\Delta G^\circ.

Answer: ΔG=RTlnKeq\Delta G^\circ = -RT \ln K_{eq}. This equation connects equilibrium constants to standard free energy changes.

Flashcard 32: What does a positive ΔG\Delta G^\circ indicate about a reaction?

Answer: The reaction is non-spontaneous. Positive standard free energy means unfavorable under standard conditions.

Flashcard 33: What is the significance of ΔH\Delta H in the Gibbs free energy equation?

Answer: It represents the change in enthalpy. Enthalpy accounts for heat absorbed or released during the reaction.

Flashcard 34: Explain the effect of ΔS>0\Delta S > 0 on a reaction's spontaneity.

Answer: It favors spontaneity. Positive entropy change makes the TΔS-T\Delta S term negative, favoring spontaneity.

Flashcard 35: What is the significance of ΔG=0\Delta G^\circ = 0?

Answer: The reaction is in equilibrium under standard conditions. Zero standard free energy means Keq=1K_{eq} = 1 at standard conditions.

Flashcard 36: What is the significance of ΔH\Delta H in the Gibbs free energy equation?

Answer: It represents the change in enthalpy. Enthalpy accounts for heat absorbed or released during the reaction.

Flashcard 37: Is a reaction with Keq>1K_{eq} > 1 product-favored or reactant-favored?

Answer: Product-favored. Large equilibrium constants indicate reactions favor product formation.

Flashcard 38: Identify the units of Gibbs free energy change, ΔG\Delta G.

Answer: Joules (J) or kilojoules (kJ). Energy units since ΔG\Delta G represents energy change per mole of reaction.

Flashcard 39: When is ΔG=ΔG\Delta G = \Delta G^\circ true?

Answer: When the reaction is at standard state conditions. Standard conditions mean all species at 1 M concentration or 1 atm pressure.

Flashcard 40: What happens to ΔG\Delta G when a reaction is reversed?

Answer: The sign of ΔG\Delta G is reversed. Reversing a reaction changes the sign of all thermodynamic quantities.

Flashcard 41: What is the formula for Gibbs free energy change?

Answer: ΔG=ΔHTΔS\Delta G = \Delta H - T\Delta S. This is the fundamental thermodynamic equation relating free energy, enthalpy, and entropy.

Flashcard 42: Which variable in ΔG=ΔHTΔS\Delta G = \Delta H - T\Delta S is affected by temperature changes?

Answer: The TΔST\Delta S term. Only the entropy term TΔST\Delta S contains temperature as a variable.

Flashcard 43: Is a reaction with Keq>1K_{eq} > 1 product-favored or reactant-favored?

Answer: Product-favored. Large equilibrium constants indicate reactions favor product formation.

Flashcard 44: Explain the effect of ΔS>0\Delta S > 0 on a reaction's spontaneity.

Answer: It favors spontaneity. Positive entropy change makes the TΔS-T\Delta S term negative, favoring spontaneity.

Flashcard 45: What condition must be met for a process to be spontaneous?

Answer: ΔG<0\Delta G < 0. Spontaneous processes have negative free energy changes.

Flashcard 46: What is the significance of ΔG=0\Delta G^\circ = 0?

Answer: The reaction is in equilibrium under standard conditions. Zero standard free energy means Keq=1K_{eq} = 1 at standard conditions.

Flashcard 47: For which ΔH\Delta H and ΔS\Delta S values is spontaneity temperature-dependent?

Answer: ΔH\Delta H and ΔS\Delta S both positive or both negative. Temperature determines which term dominates in the Gibbs equation.

Flashcard 48: Which term in the Gibbs free energy equation accounts for disorder?

Answer: ΔS\Delta S. Entropy measures the randomness or disorder of the system.

Flashcard 49: What is the value of RR in the equation ΔG=RTlnKeq\Delta G^\circ = -RT \ln K_{eq}?

Answer: 8.314 J/(mol·K). The universal gas constant in SI units for thermodynamic calculations.

Flashcard 50: What does ΔG=0\Delta G = 0 signify for a system at equilibrium?

Answer: The system is at equilibrium. Zero ΔG\Delta G indicates no net driving force for change in either direction.

Flashcard 51: What does ΔG=0\Delta G = 0 signify for a system at equilibrium?

Answer: The system is at equilibrium. Zero ΔG\Delta G indicates no net driving force for change in either direction.

Flashcard 52: What is the expression for ΔSuniv\Delta S_{univ} in terms of ΔG\Delta G?

Answer: ΔSuniv=ΔGT\Delta S_{univ} = -\frac{\Delta G}{T}. This relates universal entropy change to Gibbs free energy change.