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Section 4: Reaction Rates and Equilibrium

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Section 4: Reaction Rates and Equilibrium. Preview Key Ideas Bellringer Factors Affecting Reaction Rates Catalysts Equilibrium Systems. Key Ideas. What kinds of things speed up a reaction? What does a catalyst do? What happens when a reaction goes backward as well as forward?. - PowerPoint PPT Presentation
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Section 4 Chemical Reactions Section 4: Reaction Rates and Equilibrium Preview Key Ideas • Bellringer Factors Affecting Reaction Rates • Catalysts Equilibrium Systems
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Page 1: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Section 4: Reaction Rates and EquilibriumPreview• Key Ideas• Bellringer• Factors Affecting Reaction Rates• Catalysts• Equilibrium Systems

Page 2: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Key Ideas〉What kinds of things speed up a reaction?

〉What does a catalyst do?

〉What happens when a reaction goes backward as well as forward?

Page 3: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

BellringerNot all reactions happen at the same speed. Atoms, ions, and molecules can only interact when they are in close contact with each other. Below is a sample of zinc arranged in three different ways.

Page 4: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Bellringer, continued

1. In the reaction Zn + 2HCl → ZnCl2 + H2, which sample do you think would react the fastest?

2. When you want to start a bonfire, why do you use many small sticks as kindling to start the larger logs?

3. Which do you think will react faster with hydrochloric acid (HCl), atoms of liquid zinc at its melting point or atoms of solid zinc at its melting point? (Hint: Which situation allows more contact among the particles?)

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Section 4Chemical Reactions

Factors Affecting Reaction Rates〉What kinds of things speed up a reaction?

〉Anything that increases contact between particles will increase the rate of a reaction.

• For any reaction to occur, the particles of the reactants must collide with one another.

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Section 4Chemical Reactions

Factors Affecting Reaction Rates, continued

• Most reactions go faster at higher temperatures.

• A large surface area speeds up reactions.

• Higher concentrations of reactants react faster.

• Reactions are faster at higher pressure.

• Massive, bulky molecules react more slowly.

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Section 4Chemical Reactions

Factors Affecting Reaction Rate

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Section 4Chemical Reactions

Catalysts〉What does a catalyst do?

〉A catalyst speeds up or slows down a reaction but is not changed by the reaction.

• catalyst: is substance that changes the rate of a chemical reaction without being consumed or changed significantly

• inhibitors: substances that slow reactions

• Catalysts are often used in industry to make reactions go faster.

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Section 4Chemical Reactions

Visual Concept: Catalyst

Page 10: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Catalyst, continued• Enzymes are biological catalysts.• Enzyme: a type of protein that speeds up metabolic

reactions in plants and animals without being permanently changed or destroyed– Each enzyme controls one reaction or one set of similar reactions.– Most enzymes are fragile, and stop working above certain

temperatures.

• substrate: the reactant in reactions catalyzed by enzymes– Example: hydrogen peroxide is the substrate for catalase

catalase2 2 2 22H O 2H O + O

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Section 4Chemical Reactions

Visual Concept: Enzyme

Page 12: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Visual Concept: Inhibitors

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Section 4Chemical Reactions

Equilibrium Systems

〉What happens when a reaction goes backward as well as forward?

〉Some processes may go in both directions, which results in an equilibrium system.

• Equilibrium can be described as a balance that is reached by two opposing processes.

Page 14: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Equilibrium Systems, continued• Some changes are reversible.

– A reversible change is indicated by the ⇆ sign in a chemical equation.

– Example: the physical change of carbon dioxide dissolving

• Equilibrium results when rates balance.– Example: Molecules of CO2 are coming out of solution

and dissolving back into the liquid at the same rate.

increase pressure2 2decrease pressure

CO (gas above liquid) CO (gas dissolved in liquid)

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Section 4Chemical Reactions

Equilibrium

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Section 4Chemical Reactions

Equilibrium

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Section 4Chemical Reactions

Equilibrium Systems, continued• chemical equilibrium: a state of balance in which the

rate of a forward reaction equals the rate of the reverse reaction and the concentrations of products and reactants remain unchanged

• Systems in equilibrium respond to minimize change.• Le Châtelier’s principle predicts changes in equilibrium.

Page 18: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Visual Concept: Factors Affecting Equilibrium

Page 19: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Equilibrium Systems, continued• Le Châtelier’s principle:

If a change is made to a system in chemical equilibrium, the equilibrium shifts to oppose the change until a new equilibrium is reached.

• Le Châtelier’s principle can be used to control reactions.– The Haber process is used to make ammonia.

• The most ammonia is produced when the reaction is run at a high pressure and a low temperature.

Page 20: Section 4:  Reaction Rates and Equilibrium

Section 4Chemical Reactions

Visual Concept: Le Chatelier’s Principle


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