AP Physics 2 PV diagrams cheat sheet
AP Physics 2 PV diagrams cheat sheet covering key concepts, processes, and calculations related to thermodynamic systems.
Quiz(48 questions)
1. What does the variable 'P' represent in PV diagrams?
Termes dans ce set(48)
Basic Concepts(16)
What does P stand for in PV diagrams?
P represents pressure, measured in Pascals (Pa) or atmospheres (atm).
What does V stand for in PV diagrams?
V represents volume, typically measured in liters (L) or cubic meters (m³).
What is the area under a PV curve?
The area under the curve represents the work done during the thermodynamic process.
Fill in the blank: In an isothermal process, temperature remains _____.
constant.
True or False: Isobaric processes occur at constant volume.
False - Isobaric processes occur at constant pressure.
Compare isochoric and isobaric processes.
Isochoric: constant volume, no work done. Isobaric: constant pressure, work done is PΔV.
What is an adiabatic process?
An adiabatic process occurs without heat exchange with the surroundings (Q = 0).
Cause → Effect: Increasing temperature in a gas at constant volume.
Effect: Pressure increases due to increased kinetic energy of molecules.
Equation for work done in an isobaric process?
Work done, .
Describe isothermal expansion on a PV diagram.
Curve slopes downward; as volume increases, pressure decreases at constant temperature.
What does the slope of a PV curve indicate?
The slope indicates the relationship between pressure and volume: .
What happens to a gas in an isochoric process?
No change in volume; pressure changes with temperature according to .
True or False: The first law of thermodynamics applies to all thermodynamic processes.
True - It relates changes in energy, heat, and work for any process.
Fill in the blank: In a cyclic process, the net change in internal energy is _____.
zero.
What is a phase transition shown in PV diagrams?
A flat line indicates a phase transition, where pressure remains constant as volume changes.
Example: Calculate work done in a process from (2L, 1atm) to (4L, 1atm).
Work done:
Processes and Work(16)
Isothermal process → definition?
A process at constant temperature (T). Internal energy (U) remains constant. Work done (W) related to heat (Q) exchanged. Formula: .
Adiabatic process → characteristics?
No heat exchange (Q = 0). Changes in internal energy (U) equal work done (W). Formula: .
Calculate work in isobaric process: P = 2 atm, V_i = 10 L, V_f = 15 L.
Work done (W) is calculated as: Convert pressure to Pa (1 atm = 101325 Pa): .
True or False: Work done in isochoric process is zero.
True. In an isochoric process, volume remains constant, so no work is done (W = 0).
Determine signs of work: Expansion vs. Compression.
Expansion (W > 0): system does work. Compression (W < 0): work done on system.
What happens to internal energy in isothermal process?
Internal energy (U) remains constant. Heat (Q) added equals work done (W) by the system.
Heat added in adiabatic process → effect on temperature?
Temperature increases if heat is added. Reason: Work done by the system leads to energy transfer, altering temperature.
Work formula in terms of pressure and volume change?
Work can be expressed as: .
Specific heat ratio (γ) → definition?
Ratio of specific heats: ; affects work done in adiabatic processes.
Identify process: constant volume, no work done.
Isochoric process: Volume remains constant (ΔV = 0), hence W = 0.
Calculate work for isothermal expansion: T = 300 K, n = 1 mol.
Use ; Assuming V_f = 2V_i: .
Relation of work and heat in adiabatic process?
In an adiabatic process, Q = 0. Therefore, change in internal energy (ΔU) equals work done (W): .
Isothermal vs. Adiabatic: main difference?
Isothermal: T constant, Q exchanged. Adiabatic: no heat exchange (Q = 0), T changes.
Describe PV diagram for isobaric process.
Horizontal line on PV diagram. Pressure constant, volume changes. Work done equals area under the line.
Calculate work for adiabatic compression: V_i = 5 L, V_f = 2 L, γ = 1.4.
Use formula: ; Estimate pressures using ideal gas law.
What does the area under a PV curve represent?
The area under the PV curve represents the work done during a thermodynamic process.
Thermodynamic Laws(16)
First Law of Thermodynamics
Energy cannot be created or destroyed, only transformed. - Implication: ΔU = Q - W, where ΔU = change in internal energy, Q = heat added, W = work done.
Second Law of Thermodynamics
Entropy of an isolated system always increases. - Implication: Heat flow is spontaneous from hot to cold.
True or False: Work done is always positive.
False. Work done by the system is positive; work done on the system is negative.
Third Law of Thermodynamics
As temperature approaches absolute zero, entropy approaches a minimum value. - Implication: No system can reach absolute zero.
Fill in the blank: In a PV diagram, isothermal processes are represented as _______ lines.
horizontal lines, indicating constant temperature.
PV diagram: Isobaric vs. Isochoric
Isobaric: constant pressure (horizontal line). Isochoric: constant volume (vertical line). - Work done: Isobaric has work; Isochoric has none.
Carnot Theorem
No engine operating between two heat reservoirs can be more efficient than a Carnot engine. - Efficiency:
Implication of adiabatic processes
No heat exchange occurs. - PV relationship: , where γ = Cp/Cv.
Define enthalpy.
Enthalpy (H) = U + PV. - Implication: Useful for processes at constant pressure.
Heat Engines Efficiency Formula
Efficiency = . - Represents the ratio of work output to heat input.
Comparison: Heat vs. Work
Heat: energy transfer due to temperature difference. Work: energy transfer due to force acting over a distance.
Fill in the blank: In adiabatic processes, __________ is constant.
internal energy change is equal to work done.
True or False: All thermodynamic processes are reversible.
False. Many real processes are irreversible, increasing entropy.
Relation between P, V, and T for ideal gas
Ideal gas law: . - Indicates how pressure, volume, and temperature relate.
Define specific heat capacity.
Specific heat (c) = heat added per unit mass per unit temperature change. - Formula: .
Fill in the blank: The area under the curve in a PV diagram represents __________.
the work done by or on the system.
Questions dans ce set(48)
1. What does the variable 'P' represent in PV diagrams?
2. What is the characteristic feature of an isothermal process?
3. What does the First Law of Thermodynamics state?
4. What does 'V' represent in the context of PV diagrams?
5. In an adiabatic process, what is true about heat transfer?
6. Which statement accurately reflects the Second Law of Thermodynamics?
7. What does the area under a PV curve signify?
8. How is work calculated in an isobaric process?
9. True or False: Work done on a system is always negative.
10. In an isothermal process, the temperature remains _____.
11. What happens to the internal energy in an isochoric process?
12. As temperature approaches absolute zero, what happens to entropy according to the Third Law of Thermodynamics?
13. True or False: Isobaric processes are characterized by constant volume.
14. During an isothermal expansion, what is true about the work done?
15. In a PV diagram, how are isothermal processes represented?
16. Which statement correctly compares isochoric and isobaric processes?
17. Which process has the highest temperature change for a given amount of heat added?
18. What characterizes isobaric processes in a PV diagram?
19. What characterizes an adiabatic process?
20. What is the main difference between isothermal and adiabatic processes?
21. Which statement about Carnot's Theorem is true?
22. If the temperature of a gas at constant volume is increased, what happens to the pressure?
23. What represents the work done in a thermodynamic process on a PV diagram?
24. What defines an adiabatic process?
25. What is the formula for work done in an isobaric process?
26. What is the sign of work done during a compression process?
27. What is the formula for enthalpy?
28. Describe the behavior of a gas during isothermal expansion in a PV diagram.
29. If a gas expands isothermally, which of the following remains constant?
30. How is efficiency defined for heat engines?
31. What information does the slope of a PV curve provide?
32. For an ideal gas undergoing an isobaric process, how does work relate to volume changes?
33. Which of the following statements is NOT true?
34. What happens to a gas in an isochoric process?
35. In an adiabatic process, if work is done by the system, what happens to the internal energy?
36. In adiabatic processes, what remains constant?
37. True or False: The first law of thermodynamics applies only to reversible processes.
38. Which of the following processes can occur without any heat exchange?
39. What does the ideal gas law express?
40. In a cyclic process, the net change in internal energy is _____.
41. What does the specific heat ratio (γ) affect in adiabatic processes?
42. Define specific heat capacity.
43. What does a flat line on a PV diagram represent?
44. What is the effect on internal energy during an isothermal process?
45. What does the area under the curve in a PV diagram represent?
46. Calculate the work done in a process from (2L, 1atm) to (4L, 1atm). What is the work done?
47. Which of the following statements is NOT true for an adiabatic process?
48. Which of the following statements about the relationship between heat and work is true?
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