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Chemistry Atoms First 3rd Edition by Julia Burdge - Test Bank

Chemistry Atoms First 3rd Edition by Julia Burdge - Test Bank   Instant Download - Complete Test Bank With Answers     Sample Questions Are Posted Below   Chapter 5 Ionic and Covalent Compounds   The Lewis dot symbol consists of the symbol for the element surrounded by dot(s). What does the symbol represent? electron …

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Chemistry Atoms First 3rd Edition by Julia Burdge – Test Bank

 

Instant Download – Complete Test Bank With Answers

 

 

Sample Questions Are Posted Below

 

Chapter 5

Ionic and Covalent Compounds

 

  1. The Lewis dot symbol consists of the symbol for the element surrounded by dot(s). What does the symbol represent?
  2. electron configuration
  3. valence electrons
  4. atomic number
  5. atomic mass
  6. E. nucleus and core electrons

Accessibility: Keyboard Navigation

Bloom‘s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. The Lewis dot symbol consists of the symbol for the element surrounded by dot(s). What does the dot or dots represent?
  2. electron configuration
  3. B. valence electrons
  4. atomic number
  5. atomic mass
  6. core electrons

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Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for argon have around it?
  2. 1
  3. 2
  4. 4
  5. 6
  6. E. 8

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for sodium have around it?
  2. A. 1
  3. 2
  4. 0
  5. 3
  6. 7

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for magnesium have around it?
  2. 1
  3. B. 2
  4. 0
  5. 3
  6. 7

Accessibility: Keyboard Navigation

Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for chlorine have around it?
  2. 1
  3. 2
  4. 5
  5. D. 7
  6. 17

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for carbon have around it?
  2. A. 4
  3. 2
  4. 6
  5. 3
  6. 7

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. How many dots does the Lewis dot symbol for oxygen have around it?
  2. 4
  3. 2
  4. C. 6
  5. 3
  6. 7

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. The Lewis dot symbol for a lead atom is
  2. C.

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. The Lewis dot symbol for the S2– i on is
  2. S2–

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. The Lewis dot symbol for the chloride ion is

B.

  1. Cl

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. The Lewis dot symbol for the calcium ion is
  2. D. Ca2+
  3. Ca

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. Select the element whose Lewis symbol is correct.

B.

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. Select the element whose Lewis symbol is correct.
  2. C.

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Lewis Dot Symbols

Subtopic: Writing Lewis Dot Structures

Topic: Chemical Bonding

Topic: Molecular Shape

  1. Which of these compounds is most likely to be ionic?
  2. A. KF
  3. CCl4
  4. CS2
  5. CO2
  6. ICl

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of these compounds is most likely to be ionic?
  2. GaAs
  3. B. SrBr2
  4. NO2
  5. CBr4
  6. H2O

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of these compounds is most likely to be ionic?
  2. NCl3
  3. B. BaCl2
  4. CO
  5. SO2
  6. SF4

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of these pairs of elements would be most likely to form an ionic compound?
  2. Cl and I
  3. Al and K
  4. C. Cl and Mg
  5. C and S
  6. Al and Mg

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of the following contains ionic bonding?
  2. CO
  3. B. SrF2
  4. Al
  5. OCl2
  6. HCl

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of the following is an ionic compound?
  2. H2S
  3. NH3
  4. I2
  5. D. KI
  6. CCl4

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of these ionic solids would have the largest lattice energy?
  2. NaCl
  3. NaF
  4. CaBr2
  5. CsI
  6. E. CaCl2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which of these ionic solids would have the largest lattice energy?
  2. A. SrO
  3. NaF
  4. CaBr2
  5. CsI
  6. BaSO4

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. The lattice energy for ionic crystals increases as the charge on the ions _____________ and the size of the ions __________________.
  2. increases; increases
  3. B. increases; decreases
  4. decreases; increases
  5. decreases; decreases
  6. None of these is generally correct.

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Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Select the compound with the highest (i.e., most negative) lattice energy.
  2. CaS(s)
  3. BaO(s)
  4. NaI(s)
  5. LiBr(s)
  6. E. MgO(s)

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Blooms: 5. Evaluate

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Trends in Physical Properties (Atomic Radius, Ionization Energy, Ionic Radius, Electron Affinity)

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. Select the compound with the lowest (i.e., least negative) lattice energy.
  2. A. CsBr(s)
  3. NaCl(s)
  4. SrO(s)
  5. CaO(s)
  6. KBr(s)

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Blooms: 5. Evaluate

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Trends in Physical Properties (Atomic Radius, Ionization Energy, Ionic Radius, Electron Affinity)

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. An anion is defined as
  2. A. a charged atom or group of atoms with a net negative charge.
  3. a stable atom.
  4. a group of stable atoms.
  5. an atom or group of atoms with a net positive charge.
  6. neutral.

Accessibility: Keyboard Navigation

Bloom’s Level: 1. Remember

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Electron Configurations of Cations and Anions

Subtopic: Molecules and Ions

Topic: Components of Matter

Topic: Electron Configuration

  1. Which one of these species is an ion?
  2. A. B3+
  3. NaCl
  4. He
  5. 14C
  6. None of these species is an ion.

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Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Electron Configurations of Cations and Anions

Subtopic: Molecules and Ions

Topic: Electron Configuration

  1. Which of these pairs of elements would be most likely to form an ionic compound?
  2. P and Br
  3. Cu and K
  4. C and O
  5. D. O and Zn
  6. Al and Rb

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. Which pair of elements would be most likely to form an ionic compound?
  2. P and Br
  3. Zn and K
  4. C. F and Al
  5. C and S
  6. Al and Rb

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Electronegativity

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. What is the formula for the ionic compound formed by calcium ions and nitrate ions?
  2. Ca3N2
  3. B. Ca(NO3)2
  4. Ca2NO3
  5. Ca2NO2
  6. CaNO3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Topic: Components of Matter

  1. What is the formula for the ionic compound formed by calcium and selenium?
  2. A. CaSe
  3. Ca2Se
  4. CaSe2
  5. Ca3Se
  6. CaSe3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Topic: Components of Matter

  1. Which is the correct formula for copper(II) phosphate?
  2. Cu2PO4
  3. B. Cu3(PO4)2
  4. Cu2PO3
  5. Cu(PO4)2
  6. Cu(PO3)2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Topic: Components of Matter

  1. The chemical name for ClO3– is “chlorate ion”. What is the common name for HClO3?
  2. hydrochloric acid
  3. chloroform
  4. hydrogen trioxychloride
  5. chlorous acid
  6. E. chloric acid

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Acid-Base Definitions

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Acids and Bases

Topic: Components of Matter

  1. The formula for magnesium sulfate is ________.
  2. MnS
  3. MgS
  4. MnSO3
  5. D. MgSO4
  6. MnSO4

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. The formula for sodium sulfide is ________.
  2. NaS
  3. K2S
  4. NaS2
  5. D. Na2S
  6. SeS

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. The chemical formula for iron(II) nitrate is ________.
  2. Fe2(NO3)3
  3. Ir(NO2)2
  4. Fe2N3
  5. D. Fe(NO3)2
  6. Fe(NO2)2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. Which one of the following formulas of ionic compounds is the least likely to be correct?
  2. NH4Cl
  3. Ba(OH)2
  4. Na2SO4
  5. D. Ca2NO3
  6. Cu(CN)2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the formula for lead(II) oxide?
  2. A. PbO
  3. PbO2
  4. Pb2O
  5. PbO4
  6. Pb2O3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. Potassium permanganate is a strong oxidizer that reacts explosively with easily oxidized materials. What is its formula?
  2. KMnO3
  3. B. KMnO4
  4. K2MnO4
  5. K(MnO4)2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. Ferric oxide is used as a pigment in metal polishing. Which of the following is its formula?
  2. FeO
  3. Fe2O
  4. FeO3
  5. Fe2O5
  6. E. Fe2O3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the name of Mn(CO3)2?
  2. manganese carbide
  3. magnesium(IV) carbonate
  4. manganese(II) carbonate
  5. magnesium(II) carbonate
  6. E. manganese(IV) carbonate

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the name of Ba(NO2)2·3H2O?
  2. barium nitrite
  3. trihydrobarium(II) nitrite
  4. C. barium nitrite trihydrate
  5. barium(II) nitrite trihydrate
  6. barium nitrate trihydrate

Accessibility: Keyboard Navigation

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Molecules and Ions

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the formula of hydrobromic acid?
  2. H2OBr
  3. HBrO3
  4. HBrO
  5. D. HBr
  6. HBr·2H2O

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Acid-Base Definitions

Subtopic: Chemical Formulas

Subtopic: Nomenclature

Topic: Acids and Bases

Topic: Components of Matter

  1. What is the formula of iodous acid?
  2. HI
  3. HIO3
  4. HIO
  5. HIO4
  6. E. HIO2

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Acid-Base Definitions

Subtopic: Chemical Formulas

Subtopic: Nomenclature

Topic: Acids and Bases

Topic: Components of Matter

  1. Iron(III) chloride hexahydrate is used as a coagulant for sewage and industrial wastes. What is its formula?
  2. Fe(Cl·6H2O)3
  3. Fe3Cl·6H2O
  4. FeCl3(H2O)6
  5. Fe3Cl(H2O)6
  6. E. FeCl36H2O

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. Which of the following is the oxoanion of bromine called the bromate ion?
  2. A. BrO3
  3. BrO32–
  4. BrO42–
  5. BrO22–
  6. BrO

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. Which of these compounds is most likely to be covalent?
  2. Rb2S
  3. SrCl2
  4. C. CS2
  5. CaO
  6. MgI2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Topic: Chemical Bonding

  1. Which of these compounds is most likely to be covalent?
  2. KF
  3. CaCl2
  4. C. SF4
  5. Al2O3
  6. CaSO4

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Topic: Chemical Bonding

  1. Which of these compounds is most likely to be covalent?
  2. CsOH
  3. B. NF3
  4. Sr(NO3)2
  5. CaO
  6. LiF

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Topic: Chemical Bonding

  1. Which of the following is a covalent compound?
  2. Na2O
  3. CaCl2
  4. C. Cl2O
  5. CsCl
  6. Al2O3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Topic: Chemical Bonding

  1. Which of the following contains covalent bonds?
  2. BaO
  3. B. IBr
  4. Mg
  5. LiBr
  6. Cu

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Bond Polarity

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Topic: Chemical Bonding

  1. What types of elements undergo ionic bonding?
  2. two metals
  3. B. a nonmetal and a metal
  4. two nonmetals
  5. two Group 1A elements
  6. two noble gases

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Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Periodic Classification of the Elements

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. What types of elements undergo covalent bonding?
  2. a metal and a noble gas
  3. a nonmetal and a metal
  4. C. two nonmetals
  5. two Group 1A elements
  6. an actinide

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Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Covalent Bonding

Subtopic: Periodic Classification of the Elements

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. What is the name of PCl3?
  2. phosphorus chloride
  3. phosphoric chloride
  4. phosphorus trichlorate
  5. trichlorophosphide
  6. E. phosphorus trichloride

Accessibility: Keyboard Navigation

Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Chemical Formulas

Subtopic: Covalent Bonding

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. The compound, P4S10, is used in the manufacture of safety matches. What is its name?
  2. phosphorus sulfide
  3. phosphoric sulfide
  4. phosphorus decasulfide
  5. D. tetraphosphorus decasulfide
  6. phosphorus sulfite

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Covalent Bonding

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. Diiodine pentaoxide is used as an oxidizing agent that converts carbon monoxide to carbon dioxide. What is its chemical formula?
  2. A. I2O5
  3. IO5
  4. 2IO5
  5. I5O2
  6. (IO5)2

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Covalent Bonding

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the name of P4Se3?
  2. phosphorus selenide
  3. phosphorus triselenide
  4. tetraphosphorus selenide
  5. phosphoric selenide
  6. E. tetraphosphorus triselenide

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Chemical Formulas

Subtopic: Covalent Bonding

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Chemical Bonding

Topic: Components of Matter

  1. What is the name of ClO ion?
  2. A. hypochlorite
  3. chlorate
  4. chlorite
  5. perchlorate
  6. perchlorite

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

  1. What is the formula for the permanganate ion?
  2. MnO2
  3. B. MnO4
  4. MgO42–
  5. Mn2O7
  6. MgO22–

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

  1. Tetrasulfur dinitride decomposes explosively when heated. What is its formula?
  2. S2N4
  3. B. S4N2
  4. 4SN2
  5. S4N
  6. S2N

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

  1. Which of the following is the empirical formula for hexane, C6H14?
  2. C12H28
  3. C6H14
  4. C. C3H7
  5. CH2.3
  6. C0.43H

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Which of the following is a molecular formula for a compound with an empirical formula of CH?
  2. C2H6
  3. C3H9
  4. C4H10
  5. D. C6H6
  6. None of the answers is correct.

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Chemical Formulas

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Which of the following is a molecular formula for a compound with an empirical formula of CH2O and a molar mass of 150. g/mol?
  2. C7H18O3
  3. B. C5H10O5
  4. C3H6O3
  5. CH2O
  6. None of the answers is correct.

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Which of the following is an empirical formula of a compound that is 52.15 percent C, 13.13 percent H, and 34.73 percent O?
  2. C4H12O2
  3. CH6O2
  4. C3HO6
  5. D. C2H6O
  6. None of the answers is correct.

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Subtopic: Mass Percent Composition

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Calcium fluoride, CaF2, is a source of fluorine and is used to fluoridate drinking water. Calculate its formula mass.
  2. 118.15 g/mol
  3. 99.15 g/mol
  4. C. 08 g/mol
  5. 59.08 g/mol
  6. 50.01 g/mol

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the molecular mass of tetraphosphorus decaoxide, P4O10, a corrosive substance which can be used as a drying agent.
  2. 469.73 amu
  3. B. 88 amu
  4. 190.97 amu
  5. 139.88 amu
  6. 94.97 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the formula mass of rubidium carbonate, Rb2CO3.
  2. 340.43 amu
  3. 255.00 amu
  4. C. 95 amu
  5. 145.47 amu
  6. 113.48 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the formula mass of (NH4)3AsO4.
  2. 417.80 amu
  3. B. 05 amu
  4. 165.02 amu
  5. 156.96 amu
  6. 108.96 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Aluminum sulfate, Al2(SO4)3, is used in tanning leather, purifying water, and the manufacture of antiperspirants. Calculate its molecular or formula mass.
  2. 450.06 amu
  3. B. 17 amu
  4. 315.15 amu
  5. 278.02 amu
  6. 74.98 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the molar mass of Ca(BO2)2·6H2O.
  2. 273.87 g/mol
  3. B. 80 g/mol
  4. 183.79 g/mol
  5. 174.89 g/mol
  6. 143.71 g/mol

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the formula mass of potassium permanganate, KMnO4.
  2. 149.91 amu
  3. 79.41 amu
  4. 127.41 amu
  5. D. 04 amu
  6. 174.04 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the molecular mass of menthol, C10H20O.
  2. A. 156 amu
  3. 140 amu
  4. 29 amu
  5. 146 amu
  6. 136 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. What is the molecular mass of acetaminophen, C8H9NO2?
  2. 43 amu
  3. 76 amu
  4. C. 151 amu
  5. 162 amu
  6. 125 amu

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Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. What is the molar mass of nicotine, C10H14N2?
  2. 134 g/mol
  3. 148 g/mol
  4. 158 g/mol
  5. 210 g/mol
  6. E. 162 g/mol

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Household sugar, sucrose, has the molecular formula C12H22O11. What is the % of carbon in sucrose, by mass?
  2. 26.7%
  3. 33.3%
  4. 41.4%
  5. D. 1%
  6. 51.4%

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. What is the percent carbon in CH3CH2OH?
  2. 13%
  3. 26%
  4. 35%
  5. 46%
  6. E. 52%

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. What is the percent sodium in sodium carbonate?
  2. A. 4%
  3. 11.3%
  4. 45.3%
  5. 27.7%
  6. 21.7%

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass percent of oxygen in barium perchlorate?
  2. 4.7%
  3. 8.5%
  4. 23.4%
  5. D. 1%
  6. 19.0%

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the percent sulfur in iron(III) sulfate?
  2. 28%
  3. 32%
  4. C. 24%
  5. 48%
  6. 42%

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Chemical Formulas

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the number of moles in 17.8 g of the antacid magnesium hydroxide, Mg(OH)2.
  2. 3.28 mol
  3. 2.32 mol
  4. 0.431 mol
  5. D.305 mol
  6. 0.200 mol

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many moles are present in 17.4 g of lead?
  2. 0.0994 moles
  3. 1.05 ´ 1025 moles
  4. C.0840 moles
  5. 10.06 moles
  6. 11.9 moles

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many grams are present in 0.885 moles of manganese?
  2. 62.1 g
  3. B.6 g
  4. 21.5 g
  5. 27.5 g
  6. 0.016 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many moles of aspirin, C9H8O4, are in a tablet that contains 325 mg of aspirin?
  2. A.00180 moles
  3. 0.555 moles
  4. 0.467 moles
  5. 0.357 moles
  6. 2.80 moles

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many grams are contained in a 0.893 mol sample of methane, CH4?
  2. 1.48 ´ 10–24 g
  3. 5.38 ´ 1023 g
  4. 8.64 ´ 1024 g
  5. D.3 g
  6. 18.0 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many moles of ammonia, NH3, are in 13.81 g of NH3?
  2. 1.234 moles
  3. B.8107 moles
  4. 8.316 ´ 1024 moles
  5. 4.881 ´ 1023 moles
  6. 235.3 moles

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. How many grams are contained in a 0.183 mol sample of ammonium phosphate?
  2. 1.23 ´ 10–3 g
  3. 617 g
  4. 20.7 g
  5. D.3 g
  6. 815.1 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Phosphorus pentachloride, a white solid that has a pungent, unpleasant odor, is used as a catalyst for certain organic reactions. Calculate the number of moles in 38.7 g of phosphorus pentachloride.
  2. 5.38 mol
  3. 3.55 mol
  4. 0.583 mol
  5. 0.282 mol
  6. E.186 mol

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Aluminum oxide, Al2O3, is used as a filler for paints and varnishes as well as in the manufacture of electrical insulators. Calculate the number of moles in 47.51 g of Al2O3.
  2. 2.377 mol
  3. 2.146 mol
  4. 1.105 mol
  5. D.4660 mol
  6. 0.4207 mol

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass in grams of 0.250 mol of the common antacid calcium carbonate?
  2. 4.00 ´ 102 g
  3. B.0 g
  4. 17.0 g
  5. 4.00 ´ 10–2 g
  6. 2.50 ´ 10–3 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass of 0.0250 mol of P2O5?
  2. 35.5 g
  3. 5676 g
  4. 0.0250 g
  5. 1.51 ´ 1022 g
  6. E.55 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the mass of 3.00 moles of CF2Cl2.
  2. 3.00 g
  3. 174 g
  4. C. 363 g
  5. 1.81 ´ 1024 g
  6. 40.3

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Determine the number of ammonia molecules in 4.85 g of ammonia. (NA = 6.022 ´ 1023 mol–1)
  2. 2.92 ´ 1023 molecules
  3. 4.73 ´ 10–25 molecules
  4. 1.24 ´ 1023 molecules
  5. 5.83 ´ 10–24 molecules
  6. E.71 ´ 1023 molecules

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the average mass, in grams, of one atom of iron? (NA = 6.022 ´ 1023 mol–1)
  2. 6.02 ´ 1023 g
  3. 1.66 ´ 10–24 g
  4. C.27 ´ 10–23 g
  5. 55.85 g
  6. 5.85 ´ 10–23 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass, in grams, of one arsenic atom? (NA = 6.022 ´ 1023 mol–1)
  2. 5.48 ´ 10–23 g
  3. 33.0 g
  4. 74.9 g
  5. D.24 ´ 10–22 g
  6. 8.04 ´ 1021 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass of one copper atom? (NA = 6.022 ´ 1023 mol–1)
  2. A.055 ´ 10–22 g
  3. 63.55 g
  4. 1 amu
  5. 1.66 ´ 10–24 g
  6. 9.476 ´ 1021 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass of 1.21 ´ 1020 atoms of sulfur? (NA = 6.022 ´ 1023 mol–1)
  2. 3.88 ´ 1021 g
  3. 2.00 mg
  4. 32.06 g
  5. D.44 mg
  6. 2.00 ´ 10–4 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass of 1.63 ´ 1021 atoms of silicon? (NA = 6.022 ´ 1023 mol–1)
  2. 2.71 ´ 10–23 g
  3. 4.58 ´ 1022 g
  4. 28.08 g
  5. 1.04 ´ 104 g
  6. E.60 ´ 10–2 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. What is the mass of 7.80 ´ 1018 carbon atoms? (NA = 6.022 ´ 1023 mol–1)
  2. 1.30 ´ 10–5 g
  3. 6.43 ´ 103 g
  4. 7.80 ´ 1018 g
  5. D.56 ´ 10–4 g
  6. 12.01 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Structure of the Atom

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. The density of water is 1.00 g/mL at 4°C. How many water molecules are present in 6.25 mL of water at this temperature? (NA = 6.022 ´ 1023 mol–1)
  2. 6.27 ´ 1023 molecules
  3. 3.76 ´ 1024 molecules
  4. C.09´ 1023 molecules
  5. 6.02 ´ 1023 molecules
  6. 0.347 molecules

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Stoichiometry and Chemical Reactions

  1. Sulfur trioxide can react with atmospheric water vapor to form sulfuric acid that falls as acid rain. Calculate the mass in grams of 3.65 ´ 1020 molecules of sulfur trioxide.
  2. 6.06 ´ 10–4 g
  3. 2.91 ´ 10–2 g
  4. C.85 ´ 10–2 g
  5. 20.6 g
  6. 1650 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Molecules and Ions

Subtopic: Nomenclature

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Calculate the mass in grams of 8.35 ´ 1022 molecules of CBr4.
  2. 0.0217 g
  3. 0.139 g
  4. 7.21 g
  5. 12.7 g
  6. E.0 g

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: The Mole (Definition and Avogadro’s Number)

Topic: Stoichiometry and Chemical Reactions

  1. Which of the following substances contains the greatest mass of carbon?
  2. 100 g CH4
  3. B. 100 g C2H4
  4. 100 g CCl4
  5. 100 g CH2Cl2
  6. 100 g CO2

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Hard

Subtopic: Mass Percent Composition

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Which of the following substances is a molecule, but not a compound?
  2. SO2
  3. B. O2
  4. CS2
  5. Ar
  6. CO32–

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Blooms: 5. Evaluate

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Topic: Components of Matter

  1. What is the chemical name of FeSO3?
  2. A. iron(II) sulfite
  3. iron(III) sulfate
  4. iron sulfate
  5. iron sulfur trioxide
  6. None of the above names is correct.

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molecules and Ions

Topic: Components of Matter

  1. Proteins found in humans are polymers that consist of different combinations of 20 amino acids. Proline, one of the 20 amino acids, has the molecular formula, C5H9NO2. If a human protein has 25 proline monomers, how many carbon atoms from proline are present in the protein?
  2. 4 C atoms
  3. 25 C atoms
  4. 40 C atoms
  5. 100 C atoms
  6. E. 125 C atoms

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. Smooth muscle myosin is a motor protein that plays a crucial role in the contraction of smooth muscle. If this protein has a molar mass of 480,000 grams/mol, what is the mass, in grams, of 27 moles of smooth muscle myosin?
  2. 1.8 ´ 104 g
  3. B.3 ´ 107 g
  4. 1.8 ´ 102 g
  5. 2.8 ´ 1029 g
  6. None of the answers is correct.

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Molar Mass

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

  1. As a research assistant, you are asked to prepare a 3.00-liter solution of magnesium sulfate at 45.0 micromoles per liter. How many moles of magnesium sulfate are required to make this solution?
  2. A.000135 moles
  3. 0.0000150 moles
  4. 1.35 ´ 108 moles
  5. 1.50 ´ 107 moles
  6. None of the answers is correct.

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Measurement (SI Units)

Subtopic: Mole Conversions

Topic: Stoichiometry and Chemical Reactions

Topic: Study of Chemistry

  1. Calculate the molar mass of sulfuric acid.
  2. A.086 g/mol
  3. 81.078 g/mol
  4. 49 g/mol
  5. 41 g/mol
  6. None of the answers are correct.

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Bloom’s Level: 3. Apply

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Chemical Formulas

Subtopic: Molar Mass

Subtopic: Mole Conversions

Subtopic: Nomenclature

Topic: Components of Matter

Topic: Stoichiometry and Chemical Reactions

  1. Ionic compounds tend to form between metals and nonmetals when electrons are transferred from an element with high ionization energy (metal) to an element with a low electron affinity (nonmetal).

FALSE

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Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Subtopic: Periodic Classification of the Elements

Subtopic: Trends in Physical Properties (Atomic Radius, Ionization Energy, Ionic Radius, Electron Affinity)

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. Ionic compounds may carry a net positive or net negative charge.

FALSE

Accessibility: Keyboard Navigation

Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Medium

Subtopic: Ionic Bonding and Lattice Energy

Topic: Chemical Bonding

  1. When an alkali metal combines with a nonmetal, a covalent bond is normally formed.

FALSE

Accessibility: Keyboard Navigation

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Covalent Bonding

Subtopic: Electronegativity

Subtopic: Periodic Classification of the Elements

Topic: Chemical Bonding

Topic: Chemical Periodicity

  1. The empirical formula of C6H6 is CH.

TRUE

Accessibility: Keyboard Navigation

Bloom’s Level: 4. Analyze

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Topic: Stoichiometry and Chemical Reactions

  1. The empirical formula is the simplest whole number ratio of atoms representing a chemical formula of a molecule.

TRUE

Accessibility: Keyboard Navigation

Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Topic: Stoichiometry and Chemical Reactions

  1. Many compounds can be represented with the same empirical formula.

TRUE

Accessibility: Keyboard Navigation

Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Topic: Stoichiometry and Chemical Reactions

  1. There is only one distinct empirical formula for each compound that exists.

TRUE

Accessibility: Keyboard Navigation

Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Topic: Stoichiometry and Chemical Reactions

  1. The molecular formula is a whole number multiple of the empirical formula.

TRUE

Accessibility: Keyboard Navigation

Bloom’s Level: 2. Understand

Chapter: 05 Ionic and Covalent Compounds

Difficulty: Easy

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)

Topic: Stoichiometry and Chemical Reactions

Category                                                                                                                                                                           # of Questions

Accessibility: Keyboard Navigation                                                                                                                                                             109

Bloom’s Level: 1. Remember                                                                                                                                                                        1

Bloom’s Level: 2. Understand                                                                                                                                                                      11

Bloom’s Level: 3. Apply                                                                                                                                                                               31

Bloom’s Level: 4. Analyze                                                                                                                                                                            70

Blooms: 5. Evaluate                                                                                                                                                                                      3

Chapter: 05 Ionic and Covalent Compounds                                                                                                                                               116

Difficulty: Easy                                                                                                                                                                                            43

Difficulty: Hard                                                                                                                                                                                            14

Difficulty: Medium                                                                                                                                                                                       59

Subtopic: Acid-Base Definitions                                                                                                                                                                  3

Subtopic: Bond Polarity                                                                                                                                                                                13

Subtopic: Chemical Formulas                                                                                                                                                                      39

Subtopic: Covalent Bonding                                                                                                                                                                         11

Subtopic: Electron Configurations of Cations and Anions                                                                                                                          2

Subtopic: Electronegativity                                                                                                                                                                           14

Subtopic: Formula Determination of Unknown Compounds (Empirical and Molecular Formulas)                                                           9

Subtopic: Ionic Bonding and Lattice Energy                                                                                                                                               27

Subtopic: Lewis Dot Symbols                                                                                                                                                                      14

Subtopic: Mass Percent Composition                                                                                                                                                           7

Subtopic: Measurement (SI Units)                                                                                                                                                               1

Subtopic: Molar Mass                                                                                                                                                                                  40

Subtopic: Mole Conversions                                                                                                                                                                        42

Subtopic: Molecules and Ions                                                                                                                                                                      35

Subtopic: Nomenclature                                                                                                                                                                                27

Subtopic: Periodic Classification of the Elements                                                                                                                                        4

Subtopic: Structure of the Atom                                                                                                                                                                   6

Subtopic: The Mole (Definition and Avogadro’s Number)                                                                                                                          10

Subtopic: Trends in Physical Properties (Atomic Radius, Ionization Energy, Ionic Radius, Electron Affinity)                                         3

Subtopic: Writing Lewis Dot Structures                                                                                                                                                      14

Topic: Acids and Bases                                                                                                                                                                                3

Topic: Chemical Bonding                                                                                                                                                                             52

Topic: Chemical Periodicity                                                                                                                                                                         6

Topic: Components of Matter                                                                                                                                                                       46

Topic: Electron Configuration                                                                                                                                                                      2

Topic: Molecular Shape                                                                                                                                                                               14

Topic: Stoichiometry and Chemical Reactions                                                                                                                                            51

Topic: Study of Chemistry                                                                                                                                                                            1

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