Study The Ideal Gas Law in AP Physics 2 with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
All flashcards
Flashcard 1: How does the Ideal Gas Law change if n is constant but P, V change?
Answer: Boyle's Law. Special case where PV= constant at fixed amount.
Flashcard 2: Convert temperature from Celsius to Kelvin for gas law calculations.
Answer: K=°C+273.15. Converts to absolute scale required for gas laws.
Flashcard 3: Identify the units for R when pressure is in Pascals.
Answer: Joules per mole Kelvin. Energy units appropriate for Pascal pressure measurements.
Flashcard 4: What happens to volume if both P and T double, while n is constant?
Answer: Volume remains constant. Effects of pressure and temperature changes cancel out.
Flashcard 5: What units must pressure be in for the Ideal Gas Law when using R=0.0821?
Answer: Atmospheres (atm). Required unit to match the gas constant R value.
Flashcard 6: Identify the relationship between volume and temperature in the Ideal Gas Law.
Answer: Directly proportional. Both increase or decrease together (Charles's Law).
Flashcard 7: If T doubles and n and V are constant, what happens to P?
Answer: Pressure doubles. Temperature is directly proportional to pressure.
Flashcard 8: What happens to volume when temperature increases at constant P and n?
Answer: Volume increases. Higher kinetic energy causes gas to expand.
Flashcard 9: Identify the relationship between pressure and volume in the Ideal Gas Law.
Answer: Inversely proportional. When one increases, the other decreases (Boyle's Law).
Flashcard 10: Find the volume of 1 mole of gas at 1 atm and 273 K.
Answer: V=22.4 L. Standard molar volume at STP conditions.
Flashcard 11: What is the ideal gas constant R value in J/(mol×K)?
Answer: 8.314 J/(mol×K). Used when pressure is in Pascals and volume in cubic meters.
Flashcard 12: Calculate the volume if P=2 atm, n=1 mol, T=273 K.
Answer: V=11.2 L. Using PV=nRT: V=2(1)(0.0821)(273)=11.2 L.
Flashcard 13: Find the pressure of 2 moles of gas at 300 K in a 10 L container.
Answer: P=4.92 atm. Using PV=nRT: P=10(2)(0.0821)(300)=4.92 atm.
Flashcard 14: Identify the relationship between volume and temperature in the Ideal Gas Law.
Answer: Directly proportional. Both increase or decrease together (Charles's Law).
Flashcard 15: What is the ideal gas constant R value in J/(mol×K)?
Answer: 8.314 J/(mol×K). Used when pressure is in Pascals and volume in cubic meters.
Flashcard 16: Convert 100°C to Kelvin for use in gas law calculations.
Answer: 373.15 K. Add 273.15 to Celsius temperature.
Flashcard 17: What happens to pressure when volume decreases at constant n and T?
Answer: Pressure increases. Gas molecules compress into smaller space, creating higher pressure.
Flashcard 18: Calculate pressure when 0.5 mol of gas is at 350 K in a 5 L container.
Answer: P=2.87 atm. Using PV=nRT: P=5(0.5)(0.0821)(350)=2.87 atm.
Flashcard 19: What happens to pressure when temperature decreases at constant V and n?
Answer: Pressure decreases. Lower kinetic energy reduces molecular collisions with walls.
Flashcard 20: Find the number of moles for P=4 atm, V=15 L, T=300 K.
Answer: n=2.44 mol. Using PV=nRT: n=(0.0821)(300)(4)(15)=2.44 mol.
Flashcard 21: Find the temperature if P=3 atm, V=10 L, n=1 mol.
Answer: T=366 K. Using PV=nRT: T=(1)(0.0821)(3)(10)=366 K.
Flashcard 22: What does the variable n represent in the Ideal Gas Law?
Answer: Number of moles of gas. Amount of substance measured in molecular units.
Flashcard 23: Determine n for P=2 atm, V=5 L, T=298 K.
Answer: n=0.41 mol. Using PV=nRT: n=(0.0821)(298)(2)(5)=0.41 mol.
Flashcard 24: What is the value of the ideal gas constant R in L×atm/(mol×K)?
Answer: 0.0821 L×atm/(mol×K). Standard value when using atm and L units.
Flashcard 25: What does the variable V represent in the Ideal Gas Law?
Answer: Volume of the gas. Space occupied by the gas in three dimensions.
Flashcard 26: State the formula for the Ideal Gas Law.
Answer: PV=nRT. Relates pressure, volume, moles, and temperature for ideal gases.
Flashcard 27: What does the variable n represent in the Ideal Gas Law?
Answer: Number of moles of gas. Amount of substance measured in molecular units.
Flashcard 28: What is the value of the ideal gas constant R in L×atm/(mol×K)?
Answer: 0.0821 L×atm/(mol×K). Standard value when using atm and L units.
Flashcard 29: Identify the units for R when using 8.314 as the constant.
Answer: J/(mol×K). Energy per amount per temperature unit.
Flashcard 30: Determine n for P=2 atm, V=5 L, T=298 K.
Answer: n=0.41 mol. Using PV=nRT: n=(0.0821)(298)(2)(5)=0.41 mol.
Flashcard 31: Identify the relationship between moles and volume in the Ideal Gas Law.
Answer: Directly proportional. More gas molecules occupy more space (Avogadro's Law).
Flashcard 32: Find the number of moles for P=4 atm, V=15 L, T=300 K.
Answer: n=2.44 mol. Using PV=nRT: n=(0.0821)(300)(4)(15)=2.44 mol.
Flashcard 33: What is the temperature if P=5 atm, V=20 L, n=2 mol?
Answer: T=609 K. Using PV=nRT: T=(2)(0.0821)(5)(20)=609 K.
Flashcard 34: State the formula for the Ideal Gas Law.
Answer: PV=nRT. Relates pressure, volume, moles, and temperature for ideal gases.
Flashcard 35: What units must pressure be in for the Ideal Gas Law when using R=0.0821?
Answer: Atmospheres (atm). Required unit to match the gas constant R value.
Flashcard 36: Determine V for P=1.5 atm, n=2 mol, T=298 K.
Answer: V=32.6 L. Using PV=nRT: V=1.5(2)(0.0821)(298)=32.6 L.
Flashcard 37: If V is halved and n and T are constant, what happens to P?
Answer: Pressure doubles. Volume is inversely proportional to pressure.
Flashcard 38: What does the variable T represent in the Ideal Gas Law?
Answer: Temperature in Kelvin. Absolute temperature scale starting at absolute zero.
Flashcard 39: Calculate the temperature if P=1 atm, V=22.4 L, n=1 mol.
Answer: T=273 K. Using PV=nRT: T=(1)(0.0821)(1)(22.4)=273 K.
Flashcard 40: If V is halved and n and T are constant, what happens to P?
Answer: Pressure doubles. Volume is inversely proportional to pressure.
Flashcard 41: Identify the units for R when pressure is in Pascals.
Answer: Joules per mole Kelvin. Energy units appropriate for Pascal pressure measurements.
Flashcard 42: Identify the relationship between pressure and volume in the Ideal Gas Law.
Answer: Inversely proportional. When one increases, the other decreases (Boyle's Law).
Flashcard 43: What does the variable P represent in the Ideal Gas Law?
Answer: Pressure of the gas. Force per unit area exerted by gas molecules on container walls.
Flashcard 44: How does the Ideal Gas Law change if n is constant but P, V change?
Answer: Boyle's Law. Special case where PV= constant at fixed amount.
Flashcard 45: What happens to pressure when temperature decreases at constant V and n?
Answer: Pressure decreases. Lower kinetic energy reduces molecular collisions with walls.
Flashcard 46: Identify the relationship between moles and volume in the Ideal Gas Law.
Answer: Directly proportional. More gas molecules occupy more space (Avogadro's Law).
Flashcard 47: What happens to volume when temperature increases at constant P and n?
Answer: Volume increases. Higher kinetic energy causes gas to expand.
Flashcard 48: What happens to pressure when volume decreases at constant n and T?
Answer: Pressure increases. Gas molecules compress into smaller space, creating higher pressure.
Flashcard 49: What does the variable T represent in the Ideal Gas Law?
Answer: Temperature in Kelvin. Absolute temperature scale starting at absolute zero.
Flashcard 50: Find the temperature if P=3 atm, V=10 L, n=1 mol.
Answer: T=366 K. Using PV=nRT: T=(1)(0.0821)(3)(10)=366 K.
Flashcard 51: Determine V for P=1.5 atm, n=2 mol, T=298 K.
Answer: V=32.6 L. Using PV=nRT: V=1.5(2)(0.0821)(298)=32.6 L.
Flashcard 52: Calculate the pressure if n=1 mol, V=22.4 L, T=273 K.
Answer: P=1 atm. Using PV=nRT: P=22.4(1)(0.0821)(273)=1 atm.
Flashcard 53: If T doubles and n and V are constant, what happens to P?
Answer: Pressure doubles. Temperature is directly proportional to pressure.
Flashcard 54: In the Ideal Gas Law, what units must volume be in when using R=0.0821?
Answer: Liters (L). Volume unit that corresponds to the standard R value.
Flashcard 55: Convert 100°C to Kelvin for use in gas law calculations.
Answer: 373.15 K. Add 273.15 to Celsius temperature.
Flashcard 56: What does the variable P represent in the Ideal Gas Law?
Answer: Pressure of the gas. Force per unit area exerted by gas molecules on container walls.
Flashcard 57: Calculate the volume if P=2 atm, n=1 mol, T=273 K.
Answer: V=11.2 L. Using PV=nRT: V=2(1)(0.0821)(273)=11.2 L.
Flashcard 58: What happens to volume if both P and T double, while n is constant?
Answer: Volume remains constant. Effects of pressure and temperature changes cancel out.
Flashcard 59: Calculate the pressure if n=1 mol, V=22.4 L, T=273 K.
Answer: P=1 atm. Using PV=nRT: P=22.4(1)(0.0821)(273)=1 atm.
Flashcard 60: Find the volume of 1 mole of gas at 1 atm and 273 K.
Answer: V=22.4 L. Standard molar volume at STP conditions.
Flashcard 61: Identify the units for R when using 8.314 as the constant.
Answer: J/(mol×K). Energy per amount per temperature unit.
Flashcard 62: Find the pressure of 2 moles of gas at 300 K in a 10 L container.
Answer: P=4.92 atm. Using PV=nRT: P=10(2)(0.0821)(300)=4.92 atm.
Flashcard 63: What does the variable R represent in the Ideal Gas Law?
Answer: Ideal gas constant. Universal proportionality constant relating gas properties.
Flashcard 64: Calculate the temperature if P=1 atm, V=22.4 L, n=1 mol.
Answer: T=273 K. Using PV=nRT: T=(1)(0.0821)(1)(22.4)=273 K.
Flashcard 65: Calculate pressure when 0.5 mol of gas is at 350 K in a 5 L container.
Answer: P=2.87 atm. Using PV=nRT: P=5(0.5)(0.0821)(350)=2.87 atm.
Flashcard 66: What is the temperature if P=5 atm, V=20 L, n=2 mol?
Answer: T=609 K. Using PV=nRT: T=(2)(0.0821)(5)(20)=609 K.
Flashcard 67: In the Ideal Gas Law, what units must volume be in when using R=0.0821?
Answer: Liters (L). Volume unit that corresponds to the standard R value.