Study The First Law Of Thermodynamics in AP Physics 2 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: What is the First Law of Thermodynamics?
Answer: Energy cannot be created or destroyed, only transformed. Also known as conservation of energy principle.
Flashcard 2: What is the effect on △U if no heat is exchanged and the system does 25 J of work?
Answer: △U=−W=−25 J. All work comes from internal energy since Q=0.
Flashcard 3: What is the work done if △U=0 and Q=100 J?
Answer: W=Q=100 J. In isothermal process, all heat becomes work output.
Flashcard 4: What is the First Law of Thermodynamics?
Answer: Energy cannot be created or destroyed, only transformed. Also known as conservation of energy principle.
Flashcard 5: Identify the process when Q=W and △U=0.
Answer: Cyclic process. Process that returns to its initial thermodynamic state.
Flashcard 6: Identify the unit of energy in the First Law of Thermodynamics.
Answer: Joule (J). Standard SI unit for all forms of energy.
Flashcard 7: Calculate work done by a system with △U=30 J and Q=40 J.
Answer: W=Q−△U=40 J−30 J=10 J. Rearranging the first law to solve for work done by system.
Flashcard 8: Calculate △U if Q=−20 J and W=10 J.
Answer: △U=Q−W=−20 J−10 J=−30 J. System loses heat and has work done on it.
Flashcard 9: What does W represent in the First Law of Thermodynamics?
Answer: Work done by the system. Energy transferred when system exerts force through displacement.
Flashcard 10: Find Q if △U=−10 J and W=5 J.
Answer: Q=△U+W=−10 J+5 J=−5 J. System releases heat since Q is negative.
Flashcard 11: What happens to △U if a system absorbs 50 J of heat and does no work?
Answer: △U=Q=50 J. All absorbed heat increases internal energy since W=0.
Flashcard 12: Calculate △U if Q=100 J and W=60 J.
Answer: △U=Q−W=100 J−60 J=40 J. Direct application of the first law formula.
Flashcard 13: What is the internal energy change if a closed system releases 50 J of heat and absorbs 50 J of heat?
Answer: △U=0. Equal heat in and out results in no net change.
Flashcard 14: Find the heat added if △U=0 J and W=50 J.
Answer: Q=W=50 J. Isothermal condition where heat input equals work output.
Flashcard 15: What is △U if Q=25 J and W=−25 J?
Answer: △U=Q−W=25 J−(−25 J)=50 J. Work done on system plus heat input both increase energy.
Flashcard 16: Identify the process when Q=W and △U=0.
Answer: Cyclic process. Process that returns to its initial thermodynamic state.
Flashcard 17: What is the internal energy change if a closed system releases 50 J of heat and absorbs 50 J of heat?
Answer: △U=0. Equal heat in and out results in no net change.
Flashcard 18: What is the effect on △U if no heat is exchanged and the system does 25 J of work?
Answer: △U=−W=−25 J. All work comes from internal energy since Q=0.
Flashcard 19: What does △U represent in the First Law of Thermodynamics?
Answer: Change in internal energy of the system. Represents the total energy change within the system.
Flashcard 20: Calculate △U if W=−40 J and Q=60 J.
Answer: △U=Q−W=60 J−(−40 J)=100 J. Negative work means work done on system adds to internal energy.
Flashcard 21: Identify the thermodynamic process with Q=0 and △U=W.
Answer: Adiabatic process. Process with no heat exchange, so △U=−W.
Flashcard 22: Which sign does Q have when heat is released by the system?
Answer: Negative. Heat flows out of the system, decreasing its energy.
Flashcard 23: What is the work done if △U=0 and Q=100 J?
Answer: W=Q=100 J. In isothermal process, all heat becomes work output.
Flashcard 24: Calculate △U if Q=100 J and W=60 J.
Answer: △U=Q−W=100 J−60 J=40 J. Direct application of the first law formula.
Flashcard 25: Determine the sign of △U if the system releases 30 J of heat and does 10 J of work.
Answer: Negative. △U=−30−10=−40 J, which is negative.
Flashcard 26: What does △U represent in the First Law of Thermodynamics?
Answer: Change in internal energy of the system. Represents the total energy change within the system.
Flashcard 27: What is the heat exchanged if △U=10 J and W=10 J?
Answer: Q=△U+W=10 J+10 J=20 J. Total heat input considering both work and internal energy.
Flashcard 28: What does Q represent in the First Law of Thermodynamics?
Answer: Heat added to the system. Energy transferred into or out of the system.
Flashcard 29: Identify the unit of energy in the First Law of Thermodynamics.
Answer: Joule (J). Standard SI unit for all forms of energy.
Flashcard 30: Identify the system's behavior if △U=0 and Q=0.
Answer: Isolated system. System with no energy exchange and no work done.
Flashcard 31: Find Q if △U=−10 J and W=5 J.
Answer: Q=△U+W=−10 J+5 J=−5 J. System releases heat since Q is negative.
Flashcard 32: Determine △U for a system with Q=70 J and W=50 J.
Answer: △U=Q−W=70 J−50 J=20 J. Net energy increase since heat input exceeds work output.
Flashcard 33: Find the internal energy change if Q=0 and W=−25 J.
Answer: △U=−W=25 J. Negative work means work is done on the system.
Flashcard 34: What is the work done if Q=20 J and △U=0 J?
Answer: W=Q=20 J. Isothermal process where all heat becomes work.
Flashcard 35: What is the relationship between Q, W, and △U in a cyclic process?
Answer: △U=0, so Q=W. System returns to initial state, so net heat equals net work.
Flashcard 36: What is the change in internal energy for an isolated system?
Answer: △U=0. No energy exchange with surroundings means no change.
Flashcard 37: What is the internal energy change when a system does 100 J of work and absorbs 50 J of heat?
Answer: △U=50 J−100 J=−50 J. Internal energy decreases as more work is done than heat absorbed.
Flashcard 38: Which sign does Q have when heat is absorbed by the system?
Answer: Positive. Heat flows into the system, increasing its energy.
Flashcard 39: What occurs to Q and W in an isolated system?
Answer: Both Q and W are zero. No energy exchange possible in completely isolated system.
Flashcard 40: What happens to △U if a system absorbs 50 J of heat and does no work?
Answer: △U=Q=50 J. All absorbed heat increases internal energy since W=0.
Flashcard 41: What is the value of W if Q=0 and △U=15 J?
Answer: W=−△U=−15 J. Work is negative since energy goes to internal energy.
Flashcard 42: Which sign does W have when work is done on the system?
Answer: Negative. Surroundings perform work on the system, adding energy.
Flashcard 43: Determine W if Q=30 J and △U=−10 J.
Answer: W=Q−△U=30 J+10 J=40 J. Note: △U is negative, so W=30−(−10)=40 J.
Flashcard 44: Which sign does Q have when heat is released by the system?
Answer: Negative. Heat flows out of the system, decreasing its energy.
Flashcard 45: Calculate △U if W=−40 J and Q=60 J.
Answer: △U=Q−W=60 J−(−40 J)=100 J. Negative work means work done on system adds to internal energy.
Flashcard 46: Which sign does W have when work is done by the system?
Answer: Positive. System expends energy to perform work on surroundings.
Flashcard 47: Find the heat added if △U=20 J and W=15 J.
Answer: Q=△U+W=20 J+15 J=35 J. Rearranging the first law to solve for heat input.
Flashcard 48: What is the change in internal energy for an isolated system?
Answer: △U=0. No energy exchange with surroundings means no change.
Flashcard 49: What is the internal energy change when a system does 100 J of work and absorbs 50 J of heat?
Answer: △U=50 J−100 J=−50 J. Internal energy decreases as more work is done than heat absorbed.
Flashcard 50: Identify the system's behavior if △U=0 and Q=0.
Answer: Isolated system. System with no energy exchange and no work done.
Flashcard 51: What does W represent in the First Law of Thermodynamics?
Answer: Work done by the system. Energy transferred when system exerts force through displacement.
Flashcard 52: Find the heat added if △U=20 J and W=15 J.
Answer: Q=△U+W=20 J+15 J=35 J. Rearranging the first law to solve for heat input.
Flashcard 53: Determine W if Q=30 J and △U=−10 J.
Answer: W=Q−△U=30 J+10 J=40 J. Note: △U is negative, so W=30−(−10)=40 J.
Flashcard 54: Determine the sign of △U if the system releases 30 J of heat and does 10 J of work.
Answer: Negative. △U=−30−10=−40 J, which is negative.
Flashcard 55: Which sign does Q have when heat is absorbed by the system?
Answer: Positive. Heat flows into the system, increasing its energy.
Flashcard 56: Which sign does W have when work is done on the system?
Answer: Negative. Surroundings perform work on the system, adding energy.
Flashcard 57: Calculate △U if Q=−20 J and W=10 J.
Answer: △U=Q−W=−20 J−10 J=−30 J. System loses heat and has work done on it.
Flashcard 58: What is the value of Q if △U=−10 J and W=−10 J?
Answer: Q=△U+W=−10 J−10 J=−20 J. Both terms are negative, indicating energy loss.
Flashcard 59: State the formula for the First Law of Thermodynamics.
Answer: △U=Q−W. Where U is internal energy, Q is heat, and W is work.
Flashcard 60: What is △U if Q=25 J and W=−25 J?
Answer: △U=Q−W=25 J−(−25 J)=50 J. Work done on system plus heat input both increase energy.
Flashcard 61: State the formula for the First Law of Thermodynamics.
Answer: △U=Q−W. Where U is internal energy, Q is heat, and W is work.
Flashcard 62: What is the heat exchanged if △U=10 J and W=10 J?
Answer: Q=△U+W=10 J+10 J=20 J. Total heat input considering both work and internal energy.
Flashcard 63: What is the value of W if Q=0 and △U=15 J?
Answer: W=−△U=−15 J. Work is negative since energy goes to internal energy.
Flashcard 64: What is the sign of W if the system performs 20 J of work on the surroundings?
Answer: Positive. System does work on surroundings, so W is positive.
Flashcard 65: What is the work done if Q=20 J and △U=0 J?
Answer: W=Q=20 J. Isothermal process where all heat becomes work.
Flashcard 66: Identify the thermodynamic process with Q=0 and △U=W.
Answer: Adiabatic process. Process with no heat exchange, so △U=−W.
Flashcard 67: What is the value of Q if △U=−10 J and W=−10 J?
Answer: Q=△U+W=−10 J−10 J=−20 J. Both terms are negative, indicating energy loss.
Flashcard 68: Find the internal energy change if Q=0 and W=−25 J.
Answer: △U=−W=25 J. Negative work means work is done on the system.
Flashcard 69: Which sign does W have when work is done by the system?
Answer: Positive. System expends energy to perform work on surroundings.
Flashcard 70: What is the internal energy change for a system doing 15 J of work and absorbing 15 J of heat?
Answer: △U=Q−W=15 J−15 J=0 J. Equal heat input and work output results in no change.
Flashcard 71: What occurs to Q and W in an isolated system?
Answer: Both Q and W are zero. No energy exchange possible in completely isolated system.
Flashcard 72: What is the internal energy change for a system doing 15 J of work and absorbing 15 J of heat?
Answer: △U=Q−W=15 J−15 J=0 J. Equal heat input and work output results in no change.
Flashcard 73: Calculate work done by a system with △U=30 J and Q=40 J.
Answer: W=Q−△U=40 J−30 J=10 J. Rearranging the first law to solve for work done by system.
Flashcard 74: What is the relationship between Q, W, and △U in a cyclic process?
Answer: △U=0, so Q=W. System returns to initial state, so net heat equals net work.
Flashcard 75: Determine △U for a system with Q=70 J and W=50 J.
Answer: △U=Q−W=70 J−50 J=20 J. Net energy increase since heat input exceeds work output.
Flashcard 76: What is the sign of W if the system performs 20 J of work on the surroundings?
Answer: Positive. System does work on surroundings, so W is positive.
Flashcard 77: Find the heat added if △U=0 J and W=50 J.
Answer: Q=W=50 J. Isothermal condition where heat input equals work output.
Flashcard 78: What does Q represent in the First Law of Thermodynamics?
Answer: Heat added to the system. Energy transferred into or out of the system.