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Relating Pressure, Volume, Amount, and Temperature: The Ideal Gas Law Quiz

12 questions chemistry Grades 9-12

The question sheet

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  1. According to Amontons's/Gay-Lussac's law, at constant volume, gas pressure is directly proportional to temperature on which scale?

    • Rankine scale
    • Celsius scale
    • Kelvin scale
    • Fahrenheit scale
    Reveal answer

    Answer: Kelvin scale

    Source evidence

    PDF page 416: Guillaume Amontons was the first to empirically establish the relationship between the pressure and the temperature of a gas (~1700), and Joseph Louis Gay-Lussac determined the relationship more precisely (~1800). Because of this, the P-T relationship for gases is known as either Amontons’s law or Gay-Lussac’s law. Under either name, it states that the pressure of a given amount of gas is directly proportional to its temperature on the kelvin scale when the volume is held constant. Mathematically, this can be written:

    PDF page 417: P P P P 1 2 1 2 = k and = k, which reduces to = . This equation is useful for pressure-temperature calculations T T T T 1 2 1 2 for a confined gas at constant volume. Note that temperatures must be on the kelvin scale for any gas law calculations (0 on the kelvin scale and the lowest possible temperature is called absolute zero). (Also note that there are at least three ways we can describe how the pressure of a gas changes as its temperature changes: We can use a table of values, a graph, or a mathematical equation.)

  2. Who was first to empirically establish the pressure-temperature relationship for a gas around 1700?

    • Robert Boyle
    • Jacques Charles
    • Guillaume Amontons
    • Amedeo Avogadro
    Reveal answer

    Answer: Guillaume Amontons

    Source evidence

    PDF page 416: Guillaume Amontons was the first to empirically establish the relationship between the pressure and the temperature of a gas (~1700), and Joseph Louis Gay-Lussac determined the relationship more precisely (~1800). Because of this, the P-T relationship for gases is known as either Amontons’s law or Gay-Lussac’s law. Under either name, it states that the pressure of a given amount of gas is directly proportional to its temperature on the kelvin scale when the volume is held constant. Mathematically, this can be written:

  3. When a constant-volume gas is cooled, what happens to its pressure?

    • Decreases
    • Increases
    • Stays the same
    • Doubles
    Reveal answer

    Answer: Decreases

    Source evidence

    PDF page 415: Imagine filling a rigid container attached to a pressure gauge with gas and then sealing the container so that no gas may escape. If the container is cooled, the gas inside likewise gets colder and its pressure is observed to decrease. Since the container is rigid and tightly sealed, both the volume and number of moles of gas remain constant. If we heat the sphere, the gas inside gets hotter (Figure 8.10) and the pressure increases.

  4. At what temperature does the extrapolated P-T line reach a pressure of 0, defining absolute zero?

    • -273 \u00b0C
    • 273 K
    • -100 \u00b0C
    • 0 \u00b0C
    Reveal answer

    Answer: -273 \u00b0C

    Source evidence

    PDF page 416: provided the temperature is in kelvin. (Measurements cannot be made at lower temperatures because of the condensation of the gas.) When this line is extrapolated to lower pressures, it reaches a pressure of 0 at –273 °C, which is 0 on the kelvin scale and the lowest possible temperature, called absolute zero.

  5. Charles's law states the volume of a gas is directly proportional to temperature when what is held constant?

    • Mass number
    • Volume
    • Density
    • Pressure
    Reveal answer

    Answer: Pressure

    Source evidence

    PDF page 418: The relationship between the volume and temperature of a given amount of gas at constant pressure is known as Charles’s law in recognition of the French scientist and balloon flight pioneer Jacques Alexandre César Charles. Charles’s law states that the volume of a given amount of gas is directly proportional to its temperature on the kelvin scale when the pressure is held constant. Mathematically, this can be written as:

  6. Charles's law is named in recognition of which French scientist and balloon flight pioneer?

    • Jacques Charles
    • Guillaume Amontons
    • Amedeo Avogadro
    • Robert Boyle
    Reveal answer

    Answer: Jacques Charles

    Source evidence

    PDF page 418: The relationship between the volume and temperature of a given amount of gas at constant pressure is known as Charles’s law in recognition of the French scientist and balloon flight pioneer Jacques Alexandre César Charles. Charles’s law states that the volume of a given amount of gas is directly proportional to its temperature on the kelvin scale when the pressure is held constant. Mathematically, this can be written as:

  7. According to Boyle's law, at constant temperature the volume of a gas is related to pressure how?

    • Exponentially proportional
    • Directly proportional
    • Inversely proportional
    • Independent
    Reveal answer

    Answer: Inversely proportional

    Source evidence

    PDF page 421: The relationship between the volume and pressure of a given amount of gas at constant temperature was first published by the English natural philosopher Robert Boyle over 300 years ago. It is summarized in the statement now known as Boyle’s law: The volume of a given amount of gas held at constant temperature is inversely proportional to the pressure under which it is measured.

  8. A graph of pressure versus volume for a gas at constant temperature produces what shape?

    • Circle
    • Parabola
    • Hyperbola
    • Straight line
    Reveal answer

    Answer: Hyperbola

    Source evidence

    PDF page 420: 1 1 2 2 with k being a constant. Graphically, this relationship is shown by the straight line that results when plotting the ⎛1 ⎞ ⎛1 ⎞ inverse of the pressure versus the volume (V), or the inverse of volume versus the pressure (P). Graphs ⎝V ⎠ ⎝P⎠ with curved lines are difficult to read accurately at low or high values of the variables, and they are more difficult to use in fitting theoretical equations and parameters to experimental data. For those reasons, scientists often try to find a way to “linearize” their data. If we plot P versus V, we obtain a hyperbola (see Figure 8.14).

  9. Boyle's law was first published over 300 years ago by which English natural philosopher?

    • Guillaume Amontons
    • Amedeo Avogadro
    • Robert Boyle
    • Isaac Newton
    Reveal answer

    Answer: Robert Boyle

    Source evidence

    PDF page 421: The relationship between the volume and pressure of a given amount of gas at constant temperature was first published by the English natural philosopher Robert Boyle over 300 years ago. It is summarized in the statement now known as Boyle’s law: The volume of a given amount of gas held at constant temperature is inversely proportional to the pressure under which it is measured.

  10. Avogadro's hypothesis states that equal volumes of all gases at the same T and P contain the same number of what?

    • Molecules
    • Atoms
    • Electrons
    • Ions
    Reveal answer

    Answer: Molecules

    Source evidence

    PDF page 423: The Italian scientist Amedeo Avogadro advanced a hypothesis in 1811 to account for the behavior of gases, stating that equal volumes of all gases, measured under the same conditions of temperature and pressure, contain the same number of molecules. Over time, this relationship was supported by many experimental observations as expressed by Avogadro’s law: For a confined gas, the volume (V) and number of moles (n) are directly proportional if the pressure and temperature both remain constant. In equation form, this is written as: V V 1 2

  11. Avogadro's law states that for a confined gas, volume and number of moles are related how at constant P and T?

    • Unrelated
    • Inversely proportional
    • Directly proportional
    • Exponentially related
    Reveal answer

    Answer: Directly proportional

    Source evidence

    PDF page 423: The Italian scientist Amedeo Avogadro advanced a hypothesis in 1811 to account for the behavior of gases, stating that equal volumes of all gases, measured under the same conditions of temperature and pressure, contain the same number of molecules. Over time, this relationship was supported by many experimental observations as expressed by Avogadro’s law: For a confined gas, the volume (V) and number of moles (n) are directly proportional if the pressure and temperature both remain constant. In equation form, this is written as: V V 1 2

  12. What is the ideal gas law equation?

    • PV = R/nT
    • P + V = nRT
    • P/V = nRT
    • PV = nRT
    Reveal answer

    Answer: PV = nRT

    Source evidence

    PDF page 424: n Combining these four laws yields the ideal gas law, a relation between the pressure, volume, temperature, and number of moles of a gas: PV = nRT where P is the pressure of a gas, V is its volume, n is the number of moles of the gas, T is its temperature on the kelvin scale, and R is a constant called the ideal gas constant or the universal gas constant. The units used to express pressure, volume, and temperature will determine the proper form of the gas constant as required by dimensional

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