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Chapter Menu Covalent Bonding Section 8.1 The Covalent Bond Section 8.2   Naming Molecules Section 8.3   Molecular Structures Section 8.4   Molecular Shapes Section 8.5 Electronegativity and Polarity Exit Click a hyperlink or folder tab to view the corresponding slides.
Section 8-1 Section 8.1  The Covalent Bond ,[object Object],chemical bond:   the force that holds two atoms together ,[object Object],[object Object],[object Object]
Section 8-1 Section 8.1  The Covalent Bond  (cont.) covalent bond molecule Lewis structure sigma bond Atoms gain stability when they share electrons and form covalent bonds. pi bond endothermic reaction exothermic reaction
Section 8-1 Why do atoms bond? ,[object Object],[object Object],[object Object],[object Object]
Section 8-1 Why do atoms bond?  (cont.) ,[object Object],[object Object],[object Object]
Section 8-1 Why do atoms bond?  (cont.) ,[object Object]
Section 8-1 Why do atoms bond?  (cont.) ,[object Object]
Section 8-1 Single Covalent Bonds ,[object Object],[object Object]
Section 8-1 Single Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-1 Single Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-1 Single Covalent Bonds  (cont.) ,[object Object]
Section 8-1 Single Covalent Bonds  (cont.) ,[object Object]
Section 8-1 Single Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-1 Multiple Covalent Bonds ,[object Object],[object Object]
Section 8-1 Multiple Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-1 The Strength of Covalent Bonds ,[object Object],[object Object]
Section 8-1 The Strength of Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-1 The Strength of Covalent Bonds  (cont.) ,[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],Section 8-1 Section 8.1 Assessment What does a triple bond consists of?   A. three sigma bonds  B. three pi bonds  C. two sigma bonds and one pi bond  D. two pi bonds and one sigma bond
[object Object],[object Object],[object Object],[object Object],Section 8-1 Section 8.1 Assessment Covalent bonds are different from ionic bonds because:   A. atoms in a covalent bond lose  electrons to another atom  B. atoms in a covalent bond do not have  noble-gas electron configurations  C. atoms in a covalent bond share  electrons with another atom  D. atoms in covalent bonds gain  electrons from another atom
End of Section 8-1
Section 8-2 Section 8.2  Naming Molecules ,[object Object],oxyanion:   a polyatomic ion in which an element (usually a nonmetal) is bonded to one or more oxygen atoms oxyacid ,[object Object],Specific rules are used when naming binary molecular compounds, binary acids, and oxyacids.
Section 8-2 Naming Binary Molecular Compounds ,[object Object],[object Object]
Section 8-2 Naming Binary Molecular Compounds  (cont.) ,[object Object]
Section 8-2 Naming Binary Molecular Compounds  (cont.) ,[object Object]
Section 8-2 Naming Acids ,[object Object],[object Object]
Section 8-2 Naming Acids  (cont.) ,[object Object],[object Object],[object Object]
Section 8-2 Naming Acids  (cont.) ,[object Object]
Section 8-2 Naming Acids  (cont.) ,[object Object]
Section 8-2 Naming Acids  (cont.) ,[object Object]
Section 8-2 Naming Acids  (cont.)
[object Object],[object Object],[object Object],[object Object],Section 8-2 Section 8.2 Assessment Give the binary molecular name for water (H 2 O).   A. dihydrogen oxide  B. dihydroxide   C. hydrogen monoxide   D. dihydrogen monoxide
[object Object],[object Object],[object Object],[object Object],Section 8-2 Section 8.2 Assessment Give the name for the molecule HClO 4 . A. perchloric acid B. chloric acid C. chlorous acid D. hydrochloric acid
End of Section 8-2
Section 8-3 Section 8.3  Molecular Structures ,[object Object],ionic bond:   the electrostatic force that holds oppositely charged particles together in an ionic compound ,[object Object],[object Object]
Section 8-3 Section 8.3  Molecular Structures  (cont.) structural formula  resonance  coordinate covalent bond Structural formulas show the relative positions of atoms within a molecule.
Section 8-3 Structural Formulas ,[object Object]
Section 8-3 Structural Formulas  (cont.) ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Section 8-3 Structural Formulas  (cont.) ,[object Object]
Section 8-3 Resonance Structures ,[object Object],[object Object]
Section 8-3 Resonance Structures  (cont.) ,[object Object],[object Object],[object Object]
Section 8-3 Exceptions to the Octet Rule ,[object Object],[object Object],[object Object]
Section 8-3 Exceptions to the Octet Rule  (cont.) ,[object Object],[object Object]
Section 8-3 Exceptions to the Octet Rule  (cont.) ,[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],Section 8-3 Section 8.3 Assessment What is it called when one or more correct Lewis structures can be drawn for a molecule?   A. suboctet  B. expanded octet  C. expanded structure  D. resonance
[object Object],[object Object],[object Object],[object Object],Section 8-3 Section 8.3 Assessment Where do atoms with expanded octets occur?   A. transition metals  B. noble gases  C. elements in period 3 or higher  D. elements in group 3 or higher
End of Section 8-3
Section 8-4 Section 8.4  Molecular Shapes ,[object Object],atomic orbital:   the region around an atom’s nucleus that defines an electron’s probable location VSEPR model hybridization ,[object Object],[object Object],The VSEPR model is used to determine molecular shape.
Section 8-4 VSEPR Model ,[object Object],[object Object]
Section 8-4 VSEPR Model  (cont.) ,[object Object],[object Object],[object Object]
Section 8-4 Hybridization ,[object Object],[object Object],[object Object]
Section 8-4 Hybridization  (cont.) ,[object Object]
Section 8-4 Hybridization  (cont.)
Section 8-4 Hybridization  (cont.)
Section 8-4 Hybridization  (cont.)
[object Object],[object Object],[object Object],[object Object],Section 8-4 Section 8.4 Assessment The two lone pairs of electrons on a water molecule do what to the bond angle between the hydrogen atoms and the oxygen atom?  A. They attract the hydrogen atoms and increase the angle greater than 109.5°. B. They occupy more space and squeeze  the hydrogen atoms closer together. C. They do no affect the bond angle.  D. They create resonance structures  with more than one correct angle.
[object Object],[object Object],[object Object],[object Object],Section 8-4 Section 8.4 Assessment The sp 3  hybrid orbital in CH 4  has what shape?  A. linear  B. trigonal planar  C. tetrahedral  D. octahedral
End of Section 8-4
Section 8-5 Section 8.5  Electronegativity and Polarity ,[object Object],electronegativity:   the relative ability of an atom to attract electrons in a chemical bond  ,[object Object],[object Object]
Section 8-5 Section 8.5  Electronegativity and Polarity  (cont.) polar covalent bond A chemical bond’s character is related to each atom’s attraction for the electrons in the bond.
Section 8-5 Electron Affinity, Electronegativity, and Bond Character ,[object Object],[object Object]
Section 8-5 Electron Affinity, Electronegativity, and Bond Character  (cont.) ,[object Object]
Section 8-5 Electron Affinity, Electronegativity, and Bond Character  (cont.) ,[object Object],[object Object]
Section 8-5 Electron Affinity, Electronegativity, and Bond Character  (cont.) ,[object Object]
Section 8-5 Polar Covalent Bonds ,[object Object],[object Object]
Section 8-5 Polar Covalent Bonds  (cont.) ,[object Object],[object Object],[object Object]
Section 8-5 Polar Covalent Bonds  (cont.) ,[object Object],[object Object]
Section 8-5 Polar Covalent Bonds  (cont.) ,[object Object]
Section 8-5 Polar Covalent Bonds  (cont.) ,[object Object],[object Object],[object Object]
Section 8-5 Properties of Covalent Compounds ,[object Object],[object Object],[object Object]
Section 8-5 Properties of Covalent Compounds  (cont.) ,[object Object],[object Object],[object Object]
Section 8-5 Properties of Covalent Compounds  (cont.) ,[object Object],[object Object],[object Object],[object Object]
Section 8-5 Properties of Covalent Compounds  (cont.) ,[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],Section 8-5 Section 8.5 Assessment The force between water molecules is what kind of intermolecular force?   A. induced dipole  B. hydrogen bond  C. sigma bond  D. partial dipole
[object Object],[object Object],[object Object],[object Object],Section 8-5 Section 8.5 Assessment What kind of bond occurs within a molecule with unequal sharing of electron pairs?  A. ionic bond  B. sigma bond  C. non-polar covalent bond  D. polar covalent bond
End of Section 8-5
Resources Menu Chemistry Online Study Guide Chapter Assessment Standardized Test Practice Image Bank Concepts in Motion
Study Guide 1 Section 8.1  The Covalent Bond Key Concepts ,[object Object],[object Object],[object Object],[object Object]
Study Guide 2 Section 8.2  Naming Molecules Key Concepts ,[object Object],[object Object]
Study Guide 3 Section 8.3  Molecular Structures Key Concepts ,[object Object],[object Object],[object Object]
Study Guide 4 Section 8.4  Molecular Shapes Key Concepts ,[object Object],[object Object]
Study Guide 5 Section 8.5  Electronegativity  and Polarity Key Concepts ,[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],Chapter Assessment 1 What type of bond results from two atoms sharing electrons?  A. hydrogen bond  B. covalent bond  C. ionic bond  D. dipole bond
[object Object],[object Object],[object Object],[object Object],Chapter Assessment 2 Give the correct name for the molecule HSO 4  in water solution.   A. hydrosulfuric acid  B. sulfuric acid  C. sulfurous acid  D. hydrogen sulfate
[object Object],[object Object],[object Object],[object Object],Chapter Assessment 3 What molecule is an example of the expanded octet rule?   A. H 2 O   B. BF 3   C. BeH 2   D. PCl 5
[object Object],[object Object],[object Object],[object Object],Chapter Assessment 4 What is the molecular shape of a compound with the hybrid sp orbital?   A. linear  B. trigonal planar  C. tetrahedral  D. spherical
[object Object],[object Object],[object Object],[object Object],Chapter Assessment 5 Which of the following is a polar molecule?   A. CCl 4   B. H 2   C. CH 4   D. NH 3
[object Object],[object Object],[object Object],[object Object],STP 1 What is the molecular name for hydrazine (N 2 H 4 )?   A. nitrogen tetrahydride  B. dinitrogen tetrahydride  C. dinitrogen hydride  D. dinitrogen tetrachloride
[object Object],[object Object],[object Object],[object Object],STP 2 In general, electronegativity increases as:   A. you move up a group  B. you move down a group  C. you move from right to left  across a period  D. none of the above
[object Object],[object Object],[object Object],[object Object],STP 3 Which technique would you use to separate mixtures with different boiling points?   A. filtration  B. chromatography  C. distillation  D. sublimation
[object Object],[object Object],[object Object],[object Object],STP 4 Which of the following contains an ionic bond?   A. LiBr  B. H 2 O   C. F 2   D. CO 2
[object Object],[object Object],[object Object],[object Object],STP 5 What are van der Waals forces?   A. forces between two ions  B. forces between two electrons  C. forces within a molecule  D. forces between two molecules
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CIM Figure 8.9 	Sigma and Pi Bonding Table 8.3 	Prefixes in Covalent Compounds Table 8.5 	Formulas and Names of Some Covalent Compounds Figure 8.19 	Molecular Shapes Table 8.6 	Molecular Shapes Figure 8.22 	Bond Types
Help Click any of the background top tabs to display the respective folder. Within the Chapter Outline, clicking a section tab on the right side of the screen will bring you to the first slide in each respective section. Simple navigation buttons will allow you to progress to the next slide or the previous slide. The “Return” button will allow you to return to the slide that you were viewing when you clicked either the Resources or Help tab. The Chapter Resources Menu will allow you to access chapter specific resources from the Chapter Menu or any Chapter Outline slide. From within any feature, click the Resources tab to return to this slide. To exit the presentation, click the Exit button on the Chapter Menu slide or hit Escape [Esc] on your keyboards while viewing any Chapter Outline slide.
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Cmc chapter 08

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  • 2. Chapter Menu Covalent Bonding Section 8.1 The Covalent Bond Section 8.2 Naming Molecules Section 8.3 Molecular Structures Section 8.4 Molecular Shapes Section 8.5 Electronegativity and Polarity Exit Click a hyperlink or folder tab to view the corresponding slides.
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  • 4. Section 8-1 Section 8.1 The Covalent Bond (cont.) covalent bond molecule Lewis structure sigma bond Atoms gain stability when they share electrons and form covalent bonds. pi bond endothermic reaction exothermic reaction
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  • 32. Section 8-2 Naming Acids (cont.)
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  • 37. Section 8-3 Section 8.3 Molecular Structures (cont.) structural formula resonance coordinate covalent bond Structural formulas show the relative positions of atoms within a molecule.
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  • 61. Section 8-5 Section 8.5 Electronegativity and Polarity (cont.) polar covalent bond A chemical bond’s character is related to each atom’s attraction for the electrons in the bond.
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  • 78. Resources Menu Chemistry Online Study Guide Chapter Assessment Standardized Test Practice Image Bank Concepts in Motion
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  • 123. CIM Figure 8.9 Sigma and Pi Bonding Table 8.3 Prefixes in Covalent Compounds Table 8.5 Formulas and Names of Some Covalent Compounds Figure 8.19 Molecular Shapes Table 8.6 Molecular Shapes Figure 8.22 Bond Types
  • 124. Help Click any of the background top tabs to display the respective folder. Within the Chapter Outline, clicking a section tab on the right side of the screen will bring you to the first slide in each respective section. Simple navigation buttons will allow you to progress to the next slide or the previous slide. The “Return” button will allow you to return to the slide that you were viewing when you clicked either the Resources or Help tab. The Chapter Resources Menu will allow you to access chapter specific resources from the Chapter Menu or any Chapter Outline slide. From within any feature, click the Resources tab to return to this slide. To exit the presentation, click the Exit button on the Chapter Menu slide or hit Escape [Esc] on your keyboards while viewing any Chapter Outline slide.
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