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  <Questions>
    <Question>
      <Info>What model of the atom did de Broglie apply in describing the behavior of a particle-wave?</Info>
      <link />
      <Answers>
        <Answer>
          <Info>Dalton's solid sphere model</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Thomson's Plum-pudding model</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Bohr's planetary model</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>Schrodinger's electron cloud model</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>The reduced Planck's constant is equal to:</Info>
      <link />
      <Answers>
        <Answer>
          <Info>h/2π</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>2πh</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>h/2</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>π/h</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>What quantity of a particle-wave should you multiply with the reduced Planck's constant to calculate its de Broglie energy?</Info>
      <link />
      <Answers>
        <Answer>
          <Info>angular frequency</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>wave number</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>the reciprocal of 2π</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>amplitude</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>They discovered that the crystal structure of certain materials diffract x-rays.</Info>
      <link />
      <Answers>
        <Answer>
          <Info>Albert Michelson and Edward Morley</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Max Planck and Albert Einstein</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Niels Bohr and Louis de Broglie</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Henry Bragg and Lawrence Bragg</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>Davisson and Germer's experiment proved that:</Info>
      <link />
      <Answers>
        <Answer>
          <Info>electrons can behave as a wave</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>electrons can behave as particles</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>photons can behave as waves</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>photons can behave as particles</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>He postulated that there is a trade-off in accuracy when determining the position of a particle-wave and its momentum.</Info>
      <link />
      <Answers>
        <Answer>
          <Info>Linus Pauling</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Niels Bohr</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Werner Heisenberg</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>Erwin Schrodinger</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>In quantum mechanics, a ball is a particle in the sense that:</Info>
      <link />
      <Answers>
        <Answer>
          <Info>It is a point as small as a dot that forces act upon</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Its location is 100% probable at a certain point</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>It obeys the law of conservation of linear momentum during collision</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>It can be in two places at one moment in time</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>The minimum uncertainty inherent in a particle-wave's energy is always greater than or equal to:</Info>
      <link />
      <Answers>
        <Answer>
          <Info>ħ</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>ħ/2</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>2πħ</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>0</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>You can use the wave function of a particle-wave to find its energy because:</Info>
      <link />
      <Answers>
        <Answer>
          <Info>The energy of a wave particle is equal to its wave function</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>A variable of the wave function is the particle-wave's energy</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>The amplitude of its wave function is equal to its energy</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>The wave function denotes the particle-wave's angular frequecy</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
    <Question>
      <Info>How does the deterministic view of a system's state arise from a probabilistic view?</Info>
      <link />
      <Answers>
        <Answer>
          <Info>Observing forces a system to exist in a single state</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>Randomness is taken into account when observing a system</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>The state of a system is ultimately an irreversible cause-and-effect</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Probabilities of an event occurring vary from observer to observer</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <Type>Single</Type>
    </Question>
  </Questions>
</Data>