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    <Question>
      <Info>What does calorimetry entail?</Info>
      <Answers>
        <Answer>
          <Info>It is done to measure the heat released or absorbed by a process.</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>It is used to find the calories spent by an athlete.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It is used to find the concentration of a heated substance.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It is done to find the concentration of ions in a colored compound.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>Which of the following substances has the highest specific heat capacity?</Info>
      <Answers>
        <Answer>
          <Info>graphite</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>mercury</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>water ice</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>liquid water</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>If a substance has a low heat capacity, it means:</Info>
      <Answers>
        <Answer>
          <Info>It only needs low amounts of heat to increase its temperature by one unit</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>It requires high amounts of heat to increase its temperature by one unit</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It doesn't lose heat over time</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It doesn't gain heat over time</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>In a constant-pressure calorimeter:</Info>
      <Answers>
        <Answer>
          <Info>Only the pressure is constant</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>Only the volume is constant</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Both pressure and volume are constant</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Neither pressure nor volume are constant</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>Why is a styrofoam cup more preferable to use than a plastic one when making a calorimeter?</Info>
      <Answers>
        <Answer>
          <Info>It is more resistant to acid corrosion.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It is a better insulator.</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>It can be nested into another styrofoam cup.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It can be used to simulate vacuum conditions.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>Fuel releases heat that an engine transforms into useful work. Which of the following types of fuel is the most ideal?</Info>
      <Answers>
        <Answer>
          <Info>The one with very high molar heat capacity.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>The one with very low molar heat capacity.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>The one that releases high heat even at low amounts.</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>The one that releases low heat even at high amounts.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>How is a calorimeter used to measure the heat flow of a system?</Info>
      <Answers>
        <Answer>
          <Info>It measures the change in temperature of the system's surroundings.</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>It measures the temperature of the system's surroundings.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It measures the temperature of the system itself.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It absorbs and counts the heat of a system inside a rigid insulator.</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>Compared to a coffee cup calorimeter, a bomb calorimeter:</Info>
      <Answers>
        <Answer>
          <Info>has a more durable and rigid vessel</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>does not measure temperature changes</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>explodes at a given temperature</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>keeps the pressure of the substance being analyzed constant</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>What is the SI unit of specific heat capacity?</Info>
      <Answers>
        <Answer>
          <Info>J</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>J/K</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>J/g•C</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>J/kg•K</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
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    <Question>
      <Info>Before heat was recognized as energy in motion, scientists from before the 19th Century thought heat was a weightless substance capable of passing through anything. What did Lavoisier call this substance?</Info>
      <Answers>
        <Answer>
          <Info>caloric</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>luminiferous aether</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>plasma</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>miasma</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
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