AP Chemistry Flashcards: Ideal Gas Law

Study Ideal Gas Law 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

Ideal Gas Law

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QUESTION
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Convert 25°C to Kelvin.

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ANSWER

298 K. Add 273.15 to convert Celsius to Kelvin.

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This deck focuses on Ideal Gas Law, giving you a quick way to review the definitions, rules, and examples that matter most for AP Chemistry.

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Flashcard 1: Convert 25°C to Kelvin.

Answer: 298 K. Add 273.15 to convert Celsius to Kelvin.

Flashcard 2: What is an ideal gas?

Answer: A hypothetical gas with perfectly elastic collisions. Gas with no intermolecular forces and negligible particle volume.

Flashcard 3: Identify the unit of pressure in the Ideal Gas Law.

Answer: Atmospheres (atm). Standard unit of pressure in gas law calculations.

Flashcard 4: What is the relationship between temperature and kinetic energy?

Answer: Directly proportional. Higher temperature means faster-moving gas molecules.

Flashcard 5: What does the variable PP represent in the Ideal Gas Law?

Answer: Pressure. Force per unit area exerted by gas molecules on container walls.

Flashcard 6: State the formula for Boyle's Law.

Answer: P1V1=P2V2P_1V_1 = P_2V_2. Pressure-volume relationship at constant temperature and moles.

Flashcard 7: Find nn if P=1P = 1 atm, V=24.4V = 24.4 L, T=298T = 298 K.

Answer: 1 mol. Using n=PVRT=1×24.4298×0.0821n = \frac{PV}{RT} = \frac{1 \times 24.4}{298 \times 0.0821}.

Flashcard 8: Identify the proportionality in Charles's Law.

Answer: Volume is directly proportional to temperature. At constant pressure, volume increases linearly with temperature.

Flashcard 9: State the formula for the Ideal Gas Law.

Answer: PV=nRTPV = nRT. The fundamental relationship between pressure, volume, moles, and temperature for ideal gases.

Flashcard 10: What is the effect on pressure if moles double at constant VV and TT?

Answer: Pressure doubles. More gas particles create greater pressure at constant volume and temperature.

Flashcard 11: State the formula for the Ideal Gas Law.

Answer: PV=nRTPV = nRT. The fundamental relationship between pressure, volume, moles, and temperature for ideal gases.

Flashcard 12: Identify the proportionality in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, decreasing volume increases pressure proportionally.

Flashcard 13: Identify the unit of the ideal gas constant RR.

Answer: L atm mol1^{-1} K1^{-1}. Combines units of pressure, volume, temperature, and moles.

Flashcard 14: What is the effect on pressure if moles double at constant VV and TT?

Answer: Pressure doubles. More gas particles create greater pressure at constant volume and temperature.

Flashcard 15: If P=2P = 2 atm, V=5V = 5 L, T=300T = 300 K, find the moles of gas.

Answer: 0.406 mol. Using n=PVRT=2×50.0821×300n = \frac{PV}{RT} = \frac{2 \times 5}{0.0821 \times 300}.

Flashcard 16: Find the pressure when V=10V=10 L, T=300T=300 K, n=1n=1 mol, R=0.0821R=0.0821

Answer: 2.46 atm. Using P=nRTV=1×0.0821×30010P = \frac{nRT}{V} = \frac{1 \times 0.0821 \times 300}{10}.

Flashcard 17: Identify the proportionality in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, decreasing volume increases pressure proportionally.

Flashcard 18: Identify the unit of temperature in the Ideal Gas Law.

Answer: Kelvin (K). Absolute temperature scale required for gas law calculations.

Flashcard 19: State the combined gas law formula.

Answer: P1V1T1=P2V2T2\frac{P_1V_1}{T_1} = \frac{P_2V_2}{T_2}. Relates initial and final states when moles remain constant.

Flashcard 20: What does the variable VV stand for in the Ideal Gas Law?

Answer: Volume. Space occupied by the gas, typically measured in liters.

Flashcard 21: State the formula for Boyle's Law.

Answer: P1V1=P2V2P_1V_1 = P_2V_2. Pressure-volume relationship at constant temperature and moles.

Flashcard 22: Calculate TT if P=3P = 3 atm, V=5V = 5 L, n=0.5n = 0.5 mol, R=0.0821R = 0.0821.

Answer: 366 K. Using T=PVnR=3×50.5×0.0821T = \frac{PV}{nR} = \frac{3 \times 5}{0.5 \times 0.0821}.

Flashcard 23: What happens to volume if both PP and TT double?

Answer: Volume remains the same. Both pressure and temperature changes cancel out in the ideal gas law.

Flashcard 24: Identify the proportionality in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, decreasing volume increases pressure proportionally.

Flashcard 25: What happens to pressure if volume halves at constant nn and TT?

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

Flashcard 26: State the formula for Avogadro's Law.

Answer: V1n1=V2n2\frac{V_1}{n_1} = \frac{V_2}{n_2}. Volume-moles relationship at constant pressure and temperature.

Flashcard 27: If P=3P = 3 atm and TT doubles, what is new PP at constant VV?

Answer: 6 atm. Direct proportionality from Gay-Lussac's Law.

Flashcard 28: State the formula for Boyle's Law.

Answer: P1V1=P2V2P_1V_1 = P_2V_2. Pressure-volume relationship at constant temperature and moles.

Flashcard 29: Identify the unit of volume in the Ideal Gas Law.

Answer: Liters (L). Standard unit of volume in gas law calculations.

Flashcard 30: What does the variable RR represent in the Ideal Gas Law?

Answer: Ideal gas constant. Universal constant relating gas properties, equal to 0.0821 L atm mol1^{-1} K1^{-1}.

Flashcard 31: What happens to pressure if volume halves at constant nn and TT?

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

Flashcard 32: What condition must be met for an ideal gas?

Answer: Low pressure and high temperature. Minimal intermolecular forces and particle volume for ideal behavior.

Flashcard 33: What is the effect on pressure if moles double at constant VV and TT?

Answer: Pressure doubles. More gas particles create greater pressure at constant volume and temperature.

Flashcard 34: What condition must be met for an ideal gas?

Answer: Low pressure and high temperature. Minimal intermolecular forces and particle volume for ideal behavior.

Flashcard 35: State the formula for Boyle's Law.

Answer: P1V1=P2V2P_1V_1 = P_2V_2. Pressure-volume relationship at constant temperature and moles.

Flashcard 36: State Gay-Lussac's Law formula.

Answer: P1T1=P2T2\frac{P_1}{T_1} = \frac{P_2}{T_2}. Pressure-temperature relationship at constant volume and moles.

Flashcard 37: Calculate the pressure when n=2n = 2, V=10V = 10 L, T=300T = 300 K, R=0.0821R = 0.0821.

Answer: 4.92 atm. Using P=nRTV=2×0.0821×30010P = \frac{nRT}{V} = \frac{2 \times 0.0821 \times 300}{10}.

Flashcard 38: If P=2P = 2 atm, V=5V = 5 L, T=300T = 300 K, find the moles of gas.

Answer: 0.406 mol. Using n=PVRT=2×50.0821×300n = \frac{PV}{RT} = \frac{2 \times 5}{0.0821 \times 300}.

Flashcard 39: State the formula for Charles's Law.

Answer: V1T1=V2T2\frac{V_1}{T_1} = \frac{V_2}{T_2}. Volume-temperature relationship at constant pressure and moles.

Flashcard 40: State the value of the ideal gas constant RR.

Answer: 0.0821 L atm mol1^{-1} K1^{-1}. Standard value used in ideal gas calculations.

Flashcard 41: Find the pressure when V=10V=10 L, T=300T=300 K, n=1n=1 mol, R=0.0821R=0.0821

Answer: 2.46 atm. Using P=nRTV=1×0.0821×30010P = \frac{nRT}{V} = \frac{1 \times 0.0821 \times 300}{10}.

Flashcard 42: What does the variable TT represent in the Ideal Gas Law?

Answer: Temperature in Kelvin. Absolute temperature scale where molecular motion ceases at 0 K.

Flashcard 43: What does the variable nn represent in the Ideal Gas Law?

Answer: Amount of substance in moles. Number of moles quantifies the amount of gas particles present.

Flashcard 44: Find nn if P=1P = 1 atm, V=24.4V = 24.4 L, T=298T = 298 K.

Answer: 1 mol. Using n=PVRT=1×24.4298×0.0821n = \frac{PV}{RT} = \frac{1 \times 24.4}{298 \times 0.0821}.

Flashcard 45: What is the standard temperature in Kelvin?

Answer: 273 K. Absolute zero on the Kelvin scale, equivalent to 0°C.

Flashcard 46: What happens to volume if both PP and TT double?

Answer: Volume remains the same. Both pressure and temperature changes cancel out in the ideal gas law.

Flashcard 47: What is the effect on volume if pressure triples at constant TT?

Answer: Volume decreases to one-third. Inverse relationship from Boyle's Law.

Flashcard 48: Calculate TT if P=3P = 3 atm, V=5V = 5 L, n=0.5n = 0.5 mol, R=0.0821R = 0.0821.

Answer: 366 K. Using T=PVnR=3×50.5×0.0821T = \frac{PV}{nR} = \frac{3 \times 5}{0.5 \times 0.0821}.

Flashcard 49: Identify the unit of volume in the Ideal Gas Law.

Answer: Liters (L). Standard unit of volume in gas law calculations.

Flashcard 50: Convert 25°C to Kelvin.

Answer: 298 K. Add 273.15 to convert Celsius to Kelvin.

Flashcard 51: What does the variable nn represent in the Ideal Gas Law?

Answer: Amount of substance in moles. Number of moles quantifies the amount of gas particles present.

Flashcard 52: Identify the unit of the ideal gas constant RR.

Answer: L atm mol1^{-1} K1^{-1}. Combines units of pressure, volume, temperature, and moles.

Flashcard 53: What does the variable RR represent in the Ideal Gas Law?

Answer: Ideal gas constant. Universal constant relating gas properties, equal to 0.0821 L atm mol1^{-1} K1^{-1}.

Flashcard 54: Identify the proportionality in Charles's Law.

Answer: Volume is directly proportional to temperature. At constant pressure, volume increases linearly with temperature.

Flashcard 55: Identify the unit of the ideal gas constant RR.

Answer: L atm mol1^{-1} K1^{-1}. Combines units of pressure, volume, temperature, and moles.

Flashcard 56: State the formula for the Ideal Gas Law.

Answer: PV=nRTPV = nRT. The fundamental relationship between pressure, volume, moles, and temperature for ideal gases.

Flashcard 57: What is the effect on pressure if moles double at constant VV and TT?

Answer: Pressure doubles. More gas particles create greater pressure at constant volume and temperature.

Flashcard 58: What happens to volume if temperature doubles at constant PP and nn?

Answer: Volume doubles. Direct relationship from Charles's Law at constant pressure.

Flashcard 59: Determine the volume if P=1P = 1 atm, n=1n = 1 mol, T=273T = 273 K, R=0.0821R = 0.0821.

Answer: 22.4 L. Molar volume of an ideal gas at STP (standard temperature and pressure).

Flashcard 60: State the value of the ideal gas constant RR.

Answer: 0.0821 L atm mol1^{-1} K1^{-1}. Standard value used in ideal gas calculations.

Flashcard 61: Convert 300 K to Celsius.

Answer: 27°C. Subtract 273.15 to convert Kelvin to Celsius.

Flashcard 62: Identify the law: Volume is constant as pressure and temperature change.

Answer: Gay-Lussac's Law. Describes pressure-temperature relationship at constant volume.

Flashcard 63: State the formula for the Ideal Gas Law.

Answer: PV=nRTPV = nRT. The fundamental relationship between pressure, volume, moles, and temperature for ideal gases.

Flashcard 64: What does the variable nn represent in the Ideal Gas Law?

Answer: Amount of substance in moles. Number of moles quantifies the amount of gas particles present.

Flashcard 65: What does the variable nn represent in the Ideal Gas Law?

Answer: Amount of substance in moles. Number of moles quantifies the amount of gas particles present.

Flashcard 66: Identify the proportionality in Boyle's Law.

Answer: Pressure is inversely proportional to volume. At constant temperature, decreasing volume increases pressure proportionally.

Flashcard 67: Identify the proportionality in Avogadro's Law.

Answer: Volume is directly proportional to moles. At constant pressure and temperature, volume scales with particle number.

Flashcard 68: Find the temperature if P=1P = 1 atm, V=22.4V = 22.4 L, n=1n = 1 mol, R=0.0821R = 0.0821.

Answer: 273 K. Using T=PVnR=1×22.41×0.0821T = \frac{PV}{nR} = \frac{1 \times 22.4}{1 \times 0.0821}.

Flashcard 69: If P=3P = 3 atm and TT doubles, what is new PP at constant VV?

Answer: 6 atm. Direct proportionality from Gay-Lussac's Law.

Flashcard 70: Identify the unit of the ideal gas constant RR.

Answer: L atm mol1^{-1} K1^{-1}. Combines units of pressure, volume, temperature, and moles.