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Electrolytes Quiz

12 questions chemistry Grades 9-12

The question sheet

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  1. What are substances that yield ions when dissolved in water called?

    • Electrolytes
    • Nonelectrolytes
    • Precipitates
    • Solvents
    Reveal answer

    Answer: Electrolytes

    Source evidence

    PDF page 613: When some substances are dissolved in water, they undergo either a physical or a chemical change that yields ions in solution. These substances constitute an important class of compounds called electrolytes. Substances that do not yield ions when dissolved are called nonelectrolytes. If the physical or chemical process that generates the ions is essentially 100% efficient (all of the dissolved compound yields ions), then the substance is known as a strong electrolyte. If only a relatively small fraction of the dissolved substance undergoes the ion-producing process, it is

  2. A substance that does not yield ions when dissolved is called a:

    • Nonelectrolyte
    • Hydrate
    • Weak electrolyte
    • Strong electrolyte
    Reveal answer

    Answer: Nonelectrolyte

    Source evidence

    PDF page 613: When some substances are dissolved in water, they undergo either a physical or a chemical change that yields ions in solution. These substances constitute an important class of compounds called electrolytes. Substances that do not yield ions when dissolved are called nonelectrolytes. If the physical or chemical process that generates the ions is essentially 100% efficient (all of the dissolved compound yields ions), then the substance is known as a strong electrolyte. If only a relatively small fraction of the dissolved substance undergoes the ion-producing process, it is

  3. If the ion-producing process is essentially 100% efficient, the substance is a:

    • Weak electrolyte
    • Nonelectrolyte
    • Solvent
    • Strong electrolyte
    Reveal answer

    Answer: Strong electrolyte

    Source evidence

    PDF page 613: When some substances are dissolved in water, they undergo either a physical or a chemical change that yields ions in solution. These substances constitute an important class of compounds called electrolytes. Substances that do not yield ions when dissolved are called nonelectrolytes. If the physical or chemical process that generates the ions is essentially 100% efficient (all of the dissolved compound yields ions), then the substance is known as a strong electrolyte. If only a relatively small fraction of the dissolved substance undergoes the ion-producing process, it is

  4. A substance in which only a small fraction undergoes the ion-producing process is a:

    • Weak electrolyte
    • Strong electrolyte
    • Nonelectrolyte
    • Dipole
    Reveal answer

    Answer: Weak electrolyte

    Source evidence

    PDF page 613: When some substances are dissolved in water, they undergo either a physical or a chemical change that yields ions in solution. These substances constitute an important class of compounds called electrolytes. Substances that do not yield ions when dissolved are called nonelectrolytes. If the physical or chemical process that generates the ions is essentially 100% efficient (all of the dissolved compound yields ions), then the substance is known as a strong electrolyte. If only a relatively small fraction of the dissolved substance undergoes the ion-producing process, it is

    PDF page 614: called a weak electrolyte. Substances may be identified as strong, weak, or nonelectrolytes by measuring the electrical conductance of an aqueous solution containing the substance. To conduct electricity, a substance must contain freely mobile, charged species. Most familiar is the conduction of electricity through metallic wires, in which case the mobile, charged entities are electrons. Solutions may also conduct electricity if they contain dissolved ions, with conductivity increasing as ion concentration increases. Applying a voltage to electrodes immersed in a solution permits assessment of the relative concentration of dissolved ions, either quantitatively, by measuring the electrical current flow, or qualitatively, by observing the brightness of a light bulb included in the circuit (Figure 11.7).

  5. To conduct electricity, a substance must contain:

    • Freely mobile, charged species
    • Fixed lattice ions
    • Only neutral molecules
    • Covalent bonds only
    Reveal answer

    Answer: Freely mobile, charged species

    Source evidence

    PDF page 614: called a weak electrolyte. Substances may be identified as strong, weak, or nonelectrolytes by measuring the electrical conductance of an aqueous solution containing the substance. To conduct electricity, a substance must contain freely mobile, charged species. Most familiar is the conduction of electricity through metallic wires, in which case the mobile, charged entities are electrons. Solutions may also conduct electricity if they contain dissolved ions, with conductivity increasing as ion concentration increases. Applying a voltage to electrodes immersed in a solution permits assessment of the relative concentration of dissolved ions, either quantitatively, by measuring the electrical current flow, or qualitatively, by observing the brightness of a light bulb included in the circuit (Figure 11.7).

  6. In metallic wires, the mobile, charged entities are:

    • Dipoles
    • Ions
    • Electrons
    • Protons
    Reveal answer

    Answer: Electrons

    Source evidence

    PDF page 614: called a weak electrolyte. Substances may be identified as strong, weak, or nonelectrolytes by measuring the electrical conductance of an aqueous solution containing the substance. To conduct electricity, a substance must contain freely mobile, charged species. Most familiar is the conduction of electricity through metallic wires, in which case the mobile, charged entities are electrons. Solutions may also conduct electricity if they contain dissolved ions, with conductivity increasing as ion concentration increases. Applying a voltage to electrodes immersed in a solution permits assessment of the relative concentration of dissolved ions, either quantitatively, by measuring the electrical current flow, or qualitatively, by observing the brightness of a light bulb included in the circuit (Figure 11.7).

  7. Which method qualitatively assesses dissolved ions in a circuit?

    • Observing light bulb brightness
    • Measuring density
    • Weighing the solute
    • Measuring pH
    Reveal answer

    Answer: Observing light bulb brightness

    Source evidence

    PDF page 614: called a weak electrolyte. Substances may be identified as strong, weak, or nonelectrolytes by measuring the electrical conductance of an aqueous solution containing the substance. To conduct electricity, a substance must contain freely mobile, charged species. Most familiar is the conduction of electricity through metallic wires, in which case the mobile, charged entities are electrons. Solutions may also conduct electricity if they contain dissolved ions, with conductivity increasing as ion concentration increases. Applying a voltage to electrodes immersed in a solution permits assessment of the relative concentration of dissolved ions, either quantitatively, by measuring the electrical current flow, or qualitatively, by observing the brightness of a light bulb included in the circuit (Figure 11.7).

  8. Solutions of nonelectrolytes such as ethanol cannot conduct electricity because they:

    • Are too concentrated
    • Contain no dissolved ions
    • Have metallic bonds
    • Contain only electrons
    Reveal answer

    Answer: Contain no dissolved ions

    Source evidence

    PDF page 614: Figure 11.7 Solutions of nonelectrolytes such as ethanol do not contain dissolved ions and cannot conduct

  9. The electrostatic attraction between an ion and a molecule with a dipole is called a(n):

    • Hydrogen bond
    • Ion-dipole attraction
    • Covalent bond
    • London force
    Reveal answer

    Answer: Ion-dipole attraction

    Source evidence

    PDF page 614: Water and other polar molecules are attracted to ions, as shown in Figure 11.8. The electrostatic attraction between an ion and a molecule with a dipole is called an ion-dipole attraction. These attractions play an important role in the dissolution of ionic compounds in water.

  10. The physical change in which ions separate as an ionic compound dissolves is called:

    • Dissociation
    • Ionization
    • Neutralization
    • Precipitation
    Reveal answer

    Answer: Dissociation

    Source evidence

    PDF page 615: When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them. This process represents a physical change known as dissociation. Under most conditions, ionic compounds will dissociate nearly completely when dissolved, and so they are classified as strong electrolytes. Let us consider what happens at the microscopic level when we add solid KCl to water. Ion-dipole forces attract the positive (hydrogen) end of the polar water molecules to the negative chloride ions at the surface of the solid, and they attract the negative (oxygen) ends to the positive potassium ions. The water molecules penetrate between individual

  11. Under most conditions, ionic compounds are classified as:

    • Strong electrolytes
    • Weak electrolytes
    • Nonelectrolytes
    • Covalent solids
    Reveal answer

    Answer: Strong electrolytes

    Source evidence

    PDF page 615: When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them. This process represents a physical change known as dissociation. Under most conditions, ionic compounds will dissociate nearly completely when dissolved, and so they are classified as strong electrolytes. Let us consider what happens at the microscopic level when we add solid KCl to water. Ion-dipole forces attract the positive (hydrogen) end of the polar water molecules to the negative chloride ions at the surface of the solid, and they attract the negative (oxygen) ends to the positive potassium ions. The water molecules penetrate between individual

  12. When KCl dissolves, water's positive (hydrogen) ends are attracted to:

    • Chloride ions
    • Electrons
    • Other water molecules
    • Potassium ions
    Reveal answer

    Answer: Chloride ions

    Source evidence

    PDF page 615: When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them. This process represents a physical change known as dissociation. Under most conditions, ionic compounds will dissociate nearly completely when dissolved, and so they are classified as strong electrolytes. Let us consider what happens at the microscopic level when we add solid KCl to water. Ion-dipole forces attract the positive (hydrogen) end of the polar water molecules to the negative chloride ions at the surface of the solid, and they attract the negative (oxygen) ends to the positive potassium ions. The water molecules penetrate between individual

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