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From OpenStax / Rice University

Energy Basics Quiz

12 questions chemistry Grades 9-12

The question sheet

Reveal any answer as you study
  1. How is energy defined in the text?

    • The capacity to supply heat or do work
    • The random motion of molecules
    • The transfer of thermal energy
    • A measure of hot or cold
    Reveal answer

    Answer: The capacity to supply heat or do work

    Source evidence

    PDF page 471: Energy can be defined as the capacity to supply heat or do work. One type of work (w) is the process of causing matter to move against an opposing force. For example, we do work when we inflate a bicycle tire—we move matter (the air in the pump) against the opposing force of the air already in the tire. Like matter, energy comes in different types. One scheme classifies energy into two types: potential energy, the energy an object has because of its relative position, composition, or condition, and kinetic energy, the energy that an object possesses because of its motion. Water at the top of a waterfall or dam has potential energy because of its position; when it flows downward through generators, it has kinetic energy that can be used to do work and produce electricity in a hydroelectric plant (Figure 9.3). A battery has potential energy because the chemicals within it can produce electricity that can do work.

  2. Which is an example of potential energy?

    • Vibrating hot molecules
    • A moving car piston
    • Water flowing through generators
    • Water at the top of a waterfall
    Reveal answer

    Answer: Water at the top of a waterfall

    Source evidence

    PDF page 471: Energy can be defined as the capacity to supply heat or do work. One type of work (w) is the process of causing matter to move against an opposing force. For example, we do work when we inflate a bicycle tire—we move matter (the air in the pump) against the opposing force of the air already in the tire. Like matter, energy comes in different types. One scheme classifies energy into two types: potential energy, the energy an object has because of its relative position, composition, or condition, and kinetic energy, the energy that an object possesses because of its motion. Water at the top of a waterfall or dam has potential energy because of its position; when it flows downward through generators, it has kinetic energy that can be used to do work and produce electricity in a hydroelectric plant (Figure 9.3). A battery has potential energy because the chemicals within it can produce electricity that can do work.

  3. Kinetic energy is the energy an object possesses because of its:

    • Position
    • Motion
    • Composition
    • Condition
    Reveal answer

    Answer: Motion

    Source evidence

    PDF page 471: Energy can be defined as the capacity to supply heat or do work. One type of work (w) is the process of causing matter to move against an opposing force. For example, we do work when we inflate a bicycle tire—we move matter (the air in the pump) against the opposing force of the air already in the tire. Like matter, energy comes in different types. One scheme classifies energy into two types: potential energy, the energy an object has because of its relative position, composition, or condition, and kinetic energy, the energy that an object possesses because of its motion. Water at the top of a waterfall or dam has potential energy because of its position; when it flows downward through generators, it has kinetic energy that can be used to do work and produce electricity in a hydroelectric plant (Figure 9.3). A battery has potential energy because the chemicals within it can produce electricity that can do work.

  4. The law of conservation of energy states that energy can be:

    • Destroyed but not created
    • Neither created nor destroyed
    • Created but not destroyed
    • Both created and destroyed
    Reveal answer

    Answer: Neither created nor destroyed

    Source evidence

    PDF page 471: Energy can be converted from one form into another, but all of the energy present before a change occurs always exists in some form after the change is completed. This observation is expressed in the law of conservation of energy: during a chemical or physical change, energy can be neither created nor destroyed, although it can be changed in form. (This is also one version of the first law of thermodynamics, as you will learn later.)

  5. What is thermal energy?

    • Kinetic energy of random atomic motion
    • The capacity to do work
    • Energy due to position
    • A measure of hot or cold
    Reveal answer

    Answer: Kinetic energy of random atomic motion

    Source evidence

    PDF page 472: Thermal energy is kinetic energy associated with the random motion of atoms and molecules. Temperature is a quantitative measure of “hot” or “cold.” When the atoms and molecules in an object are moving or vibrating quickly, they have a higher average kinetic energy (KE), and we say that the object is “hot.” When the atoms and molecules are moving slowly, they have lower KE, and we say that the object is “cold” (Figure 9.4). Assuming that no chemical reaction or phase change (such as melting or vaporizing) occurs, increasing the amount of thermal energy in a sample of matter will cause its temperature to increase. And, assuming that no chemical reaction or phase change (such as condensation or freezing) occurs, decreasing the amount of thermal energy in a sample of matter will cause its temperature to decrease.

  6. Temperature is best described as:

    • Total kinetic energy of atoms
    • Energy from position
    • Transfer of thermal energy
    • A quantitative measure of hot or cold
    Reveal answer

    Answer: A quantitative measure of hot or cold

    Source evidence

    PDF page 472: Thermal energy is kinetic energy associated with the random motion of atoms and molecules. Temperature is a quantitative measure of “hot” or “cold.” When the atoms and molecules in an object are moving or vibrating quickly, they have a higher average kinetic energy (KE), and we say that the object is “hot.” When the atoms and molecules are moving slowly, they have lower KE, and we say that the object is “cold” (Figure 9.4). Assuming that no chemical reaction or phase change (such as melting or vaporizing) occurs, increasing the amount of thermal energy in a sample of matter will cause its temperature to increase. And, assuming that no chemical reaction or phase change (such as condensation or freezing) occurs, decreasing the amount of thermal energy in a sample of matter will cause its temperature to decrease.

  7. What happens when a substance's thermal energy increases (no reaction/phase change)?

    • Its mass increases
    • Its temperature increases
    • Its temperature stays constant
    • Its temperature decreases
    Reveal answer

    Answer: Its temperature increases

    Source evidence

    PDF page 472: Thermal energy is kinetic energy associated with the random motion of atoms and molecules. Temperature is a quantitative measure of “hot” or “cold.” When the atoms and molecules in an object are moving or vibrating quickly, they have a higher average kinetic energy (KE), and we say that the object is “hot.” When the atoms and molecules are moving slowly, they have lower KE, and we say that the object is “cold” (Figure 9.4). Assuming that no chemical reaction or phase change (such as melting or vaporizing) occurs, increasing the amount of thermal energy in a sample of matter will cause its temperature to increase. And, assuming that no chemical reaction or phase change (such as condensation or freezing) occurs, decreasing the amount of thermal energy in a sample of matter will cause its temperature to decrease.

  8. When substance H contacts cooler substance L, thermal energy flows:

    • From L to H
    • From H to L
    • Equally both ways
    • Not at all
    Reveal answer

    Answer: From H to L

    Source evidence

    PDF page 473: Heat (q) is the transfer of thermal energy between two bodies at different temperatures. Heat flow (a redundant term, but one commonly used) increases the thermal energy of one body and decreases the thermal energy of the other. Suppose we initially have a high temperature (and high thermal energy) substance (H) and a low temperature (and low thermal energy) substance (L). The atoms and molecules in H have a higher average KE than those in L. If we place substance H in contact with substance L, the thermal energy will flow spontaneously from substance H to substance L. The temperature of substance H will decrease, as will the average KE of its molecules; the temperature of substance L will increase, along with the average KE of its molecules. Heat flow will continue until the two substances are at the same temperature (Figure 9.6).

  9. A process that releases heat is called:

    • Isothermal
    • Endothermic
    • Exothermic
    • Adiabatic
    Reveal answer

    Answer: Exothermic

    Source evidence

    PDF page 474: Matter undergoing chemical reactions and physical changes can release or absorb heat. A change that releases heat is called an exothermic process. For example, the combustion reaction that occurs when using an oxyacetylene torch is an exothermic process—this process also releases energy in the form of light as evidenced by the torch’s flame (Figure 9.7). A reaction or change that absorbs heat is an endothermic process. A cold pack used to treat muscle strains provides an example of an endothermic process. When the substances in the cold pack (water and a salt like ammonium nitrate) are brought together, the resulting process absorbs heat, leading to the sensation of cold.

  10. Which is given as an example of an endothermic process?

    • Oxyacetylene torch combustion
    • A cold pack for muscle strains
    • Burning wood
    • Burning gasoline
    Reveal answer

    Answer: A cold pack for muscle strains

    Source evidence

    PDF page 474: Matter undergoing chemical reactions and physical changes can release or absorb heat. A change that releases heat is called an exothermic process. For example, the combustion reaction that occurs when using an oxyacetylene torch is an exothermic process—this process also releases energy in the form of light as evidenced by the torch’s flame (Figure 9.7). A reaction or change that absorbs heat is an endothermic process. A cold pack used to treat muscle strains provides an example of an endothermic process. When the substances in the cold pack (water and a salt like ammonium nitrate) are brought together, the resulting process absorbs heat, leading to the sensation of cold.

  11. A calorie is the energy needed to raise one gram of water by:

    • 1 degree Celsius
    • 100 degrees Celsius
    • 10 degrees Celsius
    • 4.184 degrees
    Reveal answer

    Answer: 1 degree Celsius

    Source evidence

    PDF page 475: Historically, energy was measured in units of calories (cal). A calorie is the amount of energy required to raise one gram of water by 1 degree C (1 kelvin). However, this quantity depends on the atmospheric pressure and the starting temperature of the water. The ease of measurement of energy changes in calories has meant that the calorie is still frequently used. The Calorie (with a capital C), or large calorie, commonly used in quantifying food energy content, is a kilocalorie. The SI unit of heat, work, and energy is the joule. A joule (J) is defined as the amount of energy used when a force of 1 newton moves an object 1 meter. It is named in honor of the English physicist James Prescott

  12. The SI unit of heat, work, and energy is the:

    • Calorie
    • Kelvin
    • Joule
    • Newton
    Reveal answer

    Answer: Joule

    Source evidence

    PDF page 475: Historically, energy was measured in units of calories (cal). A calorie is the amount of energy required to raise one gram of water by 1 degree C (1 kelvin). However, this quantity depends on the atmospheric pressure and the starting temperature of the water. The ease of measurement of energy changes in calories has meant that the calorie is still frequently used. The Calorie (with a capital C), or large calorie, commonly used in quantifying food energy content, is a kilocalorie. The SI unit of heat, work, and energy is the joule. A joule (J) is defined as the amount of energy used when a force of 1 newton moves an object 1 meter. It is named in honor of the English physicist James Prescott

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