Using & Controlling Reactions: Equilibrium Flashcards

1
Q

Reversible Reactions

A

most chemical reactions are reversible ie.
forward reaction = R ->P
back reaction = R <- P

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2
Q

Reversible Reactions…Equilibrium

A

the concentrations of products & reactants in a reversible reaction will eventually reach constant values if:

  • in a closed system (no loss/gain of total mass of reactants/products)
  • at a constant temperature
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3
Q

Equilibrium

A
  • dynamic (not static)
  • forward & back reactions occur at equal rates
  • measurable/observable properties are constant (eg. pH, colour, pressure)
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4
Q

Equilibrium Constant Kc

A

= indicates the position of equilibrium at a given temperature (related to [reactants] and [products])

  • indicates the equilibrium yield of products relative to quantities of reactions (the extent of a reaction)
  • large Kc > 10 = high yield of products
  • low Kc < 0.1 = low yield of products
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5
Q

Le Chatelier’s Principle

A

= if a change is made to a system at equilibrium, the system will react to counteract that change

  • the extent of a reversible reaction may be changed by altering reaction conditions: concentration, pressure, temperature
  • important in industrial chemistry - yield of product
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6
Q

Le Chatelier’s Principle - Concentration

A
= changed by addition/removal of reactants/products
increase R = eqm moves to P
decrease R = eqm moves to R
increase product = eqm moves to R
decrease product = eqm moves to P
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7
Q

Le Chatelier’s Principle - Pressure

A
= changed by altering the volume of the reaction vessel
increase pressure (by decreasing volume) = eqm moves to side with less molecules
decrease pressure (by increasing volume) = eqm moves to side with more molecules
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8
Q

Le Chatelier’s Principle (Explanation)

A

… if we increase the concentration of reactant, we have upset the equilibrium & so according to Le Chatelier’s Principle, the system to react to try to counteract the change. The equilibrium will push to the right (more product) to remove the excess reactant.

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9
Q

Le Chatelier’s Principle - Temperature

A

= change in temperature, equilibrium shifts in the direction of endothermic/exothermic reaction to absorb/replace energy
increase temperature = eqm moves to endothermic side
decrease temperature = eqm moves to exothermic side

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