AP Physics 2 Flashcards: Kinetic Theory Of Temperature And Pressure

Study Kinetic Theory Of Temperature And Pressure in AP Physics 2 with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

AP Physics 2

Kinetic Theory Of Temperature And Pressure

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QUESTION
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What assumption about particle size is made in the kinetic theory of gases?

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ANSWER

Particles are point-like with negligible volume. Ideal gas approximation assumption.

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Flashcard 1: What assumption about particle size is made in the kinetic theory of gases?

Answer: Particles are point-like with negligible volume. Ideal gas approximation assumption.

Flashcard 2: Identify the constant in Charles's Law.

Answer: Pressure. Volume and temperature vary at fixed pressure.

Flashcard 3: Which law relates volume and amount of gas at constant temperature?

Answer: Avogadro's Law. Volume proportional to gas quantity.

Flashcard 4: What is the molar volume of an ideal gas at STP?

Answer: 22.4 L/mol22.4 \text{ L/mol}. Standard molar volume for ideal gases.

Flashcard 5: Which gas law states that PV/TPV/T is a constant for a given amount of gas?

Answer: Combined Gas Law. Combines Boyle's, Charles's, and Gay-Lussac's laws.

Flashcard 6: What does Charles's Law state about temperature and volume?

Answer: Volume is directly proportional to temperature. At constant pressure, VT=k\frac{V}{T} = k.

Flashcard 7: How does kinetic theory describe the energy distribution among particles?

Answer: Energy is distributed according to a Maxwell-Boltzmann distribution. Statistical description of particle energies.

Flashcard 8: Which variable remains constant in Boyle's Law?

Answer: Temperature. Pressure and volume vary inversely.

Flashcard 9: Which gas law states that PV/TPV/T is a constant for a given amount of gas?

Answer: Combined Gas Law. Combines Boyle's, Charles's, and Gay-Lussac's laws.

Flashcard 10: State the equation for Dalton's Law.

Answer: Ptotal=P1+P2+...P_{total} = P_1 + P_2 + \text{...}. Additive pressures in gas mixtures.

Flashcard 11: Calculate the pressure when a gas expands to double its volume at constant temperature.

Answer: Pressure is halved. Application of Boyle's Law calculation.

Flashcard 12: What is the relationship between temperature and kinetic energy?

Answer: Kinetic energy is directly proportional to temperature. Temperature measures average kinetic energy.

Flashcard 13: How does kinetic theory describe the energy distribution among particles?

Answer: Energy is distributed according to a Maxwell-Boltzmann distribution. Statistical description of particle energies.

Flashcard 14: What is the assumption about particle collisions in kinetic theory?

Answer: Collisions are elastic. No energy lost in collisions.

Flashcard 15: Which variable remains constant in Boyle's Law?

Answer: Temperature. Pressure and volume vary inversely.

Flashcard 16: What happens to particle speed as temperature increases?

Answer: Particle speed increases. Higher temperature means more kinetic energy.

Flashcard 17: What is the definition of thermal equilibrium in kinetic theory?

Answer: No net energy transfer between objects. Same temperature means equal average energies.

Flashcard 18: What is the value of the universal gas constant RR?

Answer: 8.314Jmol×K8.314 \frac{J}{mol \times K}. Standard value for gas calculations.

Flashcard 19: Define the term 'pressure' in the context of gases.

Answer: Force exerted by gas particles per unit area. Molecular collisions create force.

Flashcard 20: What assumption about particle size is made in the kinetic theory of gases?

Answer: Particles are point-like with negligible volume. Ideal gas approximation assumption.

Flashcard 21: State the equation for Dalton's Law.

Answer: Ptotal=P1+P2+...P_{total} = P_1 + P_2 + \text{...}. Additive pressures in gas mixtures.

Flashcard 22: What is the significance of the gas constant RR?

Answer: It relates energy units in the ideal gas law. Proportionality constant in gas equations.

Flashcard 23: State the relationship between temperature and pressure in Gay-Lussac's Law.

Answer: Pressure is directly proportional to temperature. At constant volume, PT=k\frac{P}{T} = k.

Flashcard 24: What is the formula for kinetic energy of a gas particle?

Answer: KE=12mv2KE = \frac{1}{2}mv^2. Energy from mass and velocity squared.

Flashcard 25: What is the effect of temperature on the speed of sound in a gas?

Answer: Speed of sound increases with temperature. Sound speed depends on molecular motion.

Flashcard 26: What is the assumption about particle collisions in kinetic theory?

Answer: Collisions are elastic. No energy lost in collisions.

Flashcard 27: Identify the unit of temperature used in gas law calculations.

Answer: Kelvin (K). Absolute temperature scale required.

Flashcard 28: What is the formula for the number of moles nn in terms of mass mm?

Answer: n=mMn = \frac{m}{M}. Mass divided by molar mass gives moles.

Flashcard 29: State the relationship between pressure and volume in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, PV=kPV = k.

Flashcard 30: What happens to pressure if volume is halved at constant temperature?

Answer: Pressure doubles. Inverse relationship from Boyle's Law.

Flashcard 31: State the relationship between pressure and volume in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, PV=kPV = k.

Flashcard 32: What is the formula for calculating pressure?

Answer: P=FAP = \frac{F}{A}. Force divided by contact area.

Flashcard 33: Define the term 'molar volume' at STP.

Answer: The volume occupied by one mole of gas at STP. Standard volume at 0°C and 1 atm.

Flashcard 34: What does Dalton's Law of Partial Pressures state?

Answer: Total pressure is the sum of partial pressures. Each gas contributes independently.

Flashcard 35: Calculate the pressure when a gas expands to double its volume at constant temperature.

Answer: Pressure is halved. Application of Boyle's Law calculation.

Flashcard 36: If the pressure of a gas is tripled, what happens to its volume at constant temperature?

Answer: Volume is reduced to one-third. Inverse pressure-volume relationship applied.

Flashcard 37: What is the molar volume of an ideal gas at STP?

Answer: 22.4 L/mol22.4 \text{ L/mol}. Standard molar volume for ideal gases.

Flashcard 38: What is the value of the universal gas constant RR?

Answer: 8.314Jmol×K8.314 \frac{J}{mol \times K}. Standard value for gas calculations.

Flashcard 39: What causes gas pressure on a container's walls?

Answer: Collisions of gas particles with the walls. Momentum transfer from particle impacts.

Flashcard 40: What is the equation for the ideal gas law?

Answer: PV=nRTPV = nRT. Combines pressure, volume, moles, and temperature.

Flashcard 41: Identify the unit of temperature used in gas law calculations.

Answer: Kelvin (K). Absolute temperature scale required.

Flashcard 42: What happens to pressure if volume is halved at constant temperature?

Answer: Pressure doubles. Inverse relationship from Boyle's Law.

Flashcard 43: What does the kinetic theory of gases state about particle motion?

Answer: Particles are in constant random motion. Foundation of kinetic molecular theory.

Flashcard 44: What causes gas pressure on a container's walls?

Answer: Collisions of gas particles with the walls. Momentum transfer from particle impacts.

Flashcard 45: What is the equation for calculating density from pressure and temperature?

Answer: ρ=P×MR×T\rho = \frac{P \times M}{R \times T}. Derived from ideal gas law rearrangement.

Flashcard 46: What does Charles's Law state about temperature and volume?

Answer: Volume is directly proportional to temperature. At constant pressure, VT=k\frac{V}{T} = k.

Flashcard 47: If the pressure of a gas is tripled, what happens to its volume at constant temperature?

Answer: Volume is reduced to one-third. Inverse pressure-volume relationship applied.

Flashcard 48: What happens to particle speed as temperature increases?

Answer: Particle speed increases. Higher temperature means more kinetic energy.

Flashcard 49: State the relationship between temperature and pressure in Gay-Lussac's Law.

Answer: Pressure is directly proportional to temperature. At constant volume, PT=k\frac{P}{T} = k.

Flashcard 50: Define the term 'pressure' in the context of gases.

Answer: Force exerted by gas particles per unit area. Molecular collisions create force.

Flashcard 51: What is the formula for converting Celsius to Kelvin?

Answer: K=C+273.15K = C + 273.15. Converts to absolute temperature scale.

Flashcard 52: What is the equation for the ideal gas law?

Answer: PV=nRTPV = nRT. Combines pressure, volume, moles, and temperature.

Flashcard 53: What is the definition of thermal equilibrium in kinetic theory?

Answer: No net energy transfer between objects. Same temperature means equal average energies.

Flashcard 54: What is the relationship between temperature and kinetic energy?

Answer: Kinetic energy is directly proportional to temperature. Temperature measures average kinetic energy.

Flashcard 55: What is the formula for calculating pressure?

Answer: P=FAP = \frac{F}{A}. Force divided by contact area.

Flashcard 56: What is the effect of temperature on the speed of sound in a gas?

Answer: Speed of sound increases with temperature. Sound speed depends on molecular motion.

Flashcard 57: Identify the constant in Charles's Law.

Answer: Pressure. Volume and temperature vary at fixed pressure.

Flashcard 58: What is the SI unit for pressure?

Answer: Pascal (Pa). Newton per square meter.

Flashcard 59: What is the effect of lowering temperature on the kinetic energy of gas particles?

Answer: Kinetic energy decreases. Temperature directly affects molecular energy.

Flashcard 60: What is Avogadro's Law in terms of volume and moles?

Answer: Volume is directly proportional to moles. Equal volumes contain equal moles at STP.

Flashcard 61: What is the formula for converting Celsius to Kelvin?

Answer: K=C+273.15K = C + 273.15. Converts to absolute temperature scale.

Flashcard 62: What is Avogadro's Law in terms of volume and moles?

Answer: Volume is directly proportional to moles. Equal volumes contain equal moles at STP.

Flashcard 63: What is the equation for calculating density from pressure and temperature?

Answer: ρ=P×MR×T\rho = \frac{P \times M}{R \times T}. Derived from ideal gas law rearrangement.

Flashcard 64: What does Dalton's Law of Partial Pressures state?

Answer: Total pressure is the sum of partial pressures. Each gas contributes independently.

Flashcard 65: Which law relates volume and amount of gas at constant temperature?

Answer: Avogadro's Law. Volume proportional to gas quantity.

Flashcard 66: What does the kinetic theory of gases state about particle motion?

Answer: Particles are in constant random motion. Foundation of kinetic molecular theory.

Flashcard 67: What is the SI unit for pressure?

Answer: Pascal (Pa). Newton per square meter.

Flashcard 68: What is the formula for the number of moles nn in terms of mass mm?

Answer: n=mMn = \frac{m}{M}. Mass divided by molar mass gives moles.

Flashcard 69: What is the formula for kinetic energy of a gas particle?

Answer: KE=12mv2KE = \frac{1}{2}mv^2. Energy from mass and velocity squared.

Flashcard 70: What is the definition of absolute zero?

Answer: The temperature at which particle motion stops. Zero kinetic energy at -273.15°C.

Flashcard 71: Define the term 'molar volume' at STP.

Answer: The volume occupied by one mole of gas at STP. Standard volume at 0°C and 1 atm.

Flashcard 72: What is the significance of the gas constant RR?

Answer: It relates energy units in the ideal gas law. Proportionality constant in gas equations.

Flashcard 73: What is the definition of absolute zero?

Answer: The temperature at which particle motion stops. Zero kinetic energy at -273.15°C.

Flashcard 74: What is the effect of lowering temperature on the kinetic energy of gas particles?

Answer: Kinetic energy decreases. Temperature directly affects molecular energy.