<?xml version="1.0"?>
<Data xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
  <Questions>
    <Question>
      <Info>What do you call the ability of an object to resist compressive forces?</Info>
      <Answers>
        <Answer>
          <Info>resistivity</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>resistance</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>rigidity</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>rheology</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>What is the basic building block of a crystal lattice called?</Info>
      <Answers>
        <Answer>
          <Info>tetrahedron</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>ion</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>structure</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>unit cell</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>The KMT for solids assumes that solid particles:</Info>
      <Answers>
        <Answer>
          <Info>have high internal energy</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>can't attract or repel each other</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>are compressible</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>have fixed positions</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>The reason why the particles of solids have high intermolecular forces is because:</Info>
      <Answers>
        <Answer>
          <Info>an individual atom of a solid is dense</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>an individual atom of a solid attracts many electrons</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>they experience hydrogen bonding</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>they are located very close to each other</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>What is the temperature and pressure condition under which a solid's molecules will be able to overcome their intermolecular forces and move freely?</Info>
      <Answers>
        <Answer>
          <Info>standard temperature and pressure</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>burning point</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>critical point</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>melting point</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>Which of the following objects is an amorphous solid?</Info>
      <Answers>
        <Answer>
          <Info>diamond</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>graphite</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>glass</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>water ice</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>What is the Born-Haber-Fajans Cycle used for?</Info>
      <Answers>
        <Answer>
          <Info>to transform amorphous solids into crystalline solids</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>to transform crystalline solids into amorphous solids</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>to calculate the lattice energy of a solid</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>to recycle amorphous plastics into new versions</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>This refers to the type of crystal defect where there are misplaced ions within a solid's crystal lattice.</Info>
      <Answers>
        <Answer>
          <Info>Frenkel defect</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>Schottky defect</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Substitutional defect</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>Misplaced defect</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>Which of the following properties of a metal arises from the delocalization of its electrons?</Info>
      <Answers>
        <Answer>
          <Info>rigidity</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>ductility</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>solid at room temperature</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>high density</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
    <Question>
      <Info>A key property of a mineral is that it has:</Info>
      <Answers>
        <Answer>
          <Info>a crystalline structure</Info>
          <IsCorrect>true</IsCorrect>
        </Answer>
        <Answer>
          <Info>high melting point</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>no definite chemical composition</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
        <Answer>
          <Info>no way of being artificially made</Info>
          <IsCorrect>false</IsCorrect>
        </Answer>
      </Answers>
      <UseTimer>false</UseTimer>
      <Timer>0</Timer>
      <Type>Single</Type>
      <AddScore>0</AddScore>
    </Question>
  </Questions>
</Data>