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Control of Structure

Date post: 25-Feb-2016
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Control of Structure. Why do elements and compounds adopt one structure as opposed to another?. Thermodynamics Review: G = H - TS. Bond Strength Favored by strong bonds. Freedom of Movement Favored by more particles. Temperature Control?. Thermodynamics Review: G = H - TS. - PowerPoint PPT Presentation
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Control of Structure Why do elements and compounds adopt one structure as opposed to another?
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Page 1: Control of Structure

Control of Structure

Why do elements and compounds adopt one structure as opposed to

another?

Page 2: Control of Structure

Thermodynamics Review:

G = H - TS

Bond Strength

Favored by strong bonds.

Freedom of Movement

Favored by more particles.

Temperature Control?

Page 3: Control of Structure

Thermodynamics Review:

G = H - TS

Bond Strength

Favored by strong bonds.

Freedom of Movement

Favored by more particles.

Example: Cl-Cl vs. Cl Cl

Cl-Cl bond strength = 242 kJ/molSo (Cl) = 165 J/KmolSo (Cl2) = 223 J/Kmol

Page 4: Control of Structure

Bonding Concerns and Trends:

Number of bondsType of bonds: sigma vs. pi

Page 5: Control of Structure

Number of Bonds Possible: F, O

Page 6: Control of Structure

Number of Bonds Possible: N, C

Page 7: Control of Structure

Lewis Base Activity Expands # Bonds

Page 8: Control of Structure

sigma vs. pi bonding: Lewis structure examples

Page 9: Control of Structure

Shapes of sigma and pi bonds

Page 10: Control of Structure
Page 11: Control of Structure
Page 12: Control of Structure

sigma vs. pi bonding: shapes, strength and trends


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