activation energy of the reaction Consider the following diagram: A relationship can be seen when we compare the KE distribution to a PE diagram: • Ea very high - few molecules will have enough energy to react, reaction rate will be low • Ea low - more molecules will have enough energy to react, reaction rate will be high
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The activation energy and rate of a reaction are related by the equation k=Aexp(−E a /RT), where k is the rate constant, A is a temperature-independent constant (often called the frequency factor), exp is the function e x, E a is the activation energy, R is the universal gas constant, and T is the temperature. This relationship was derived by ... Describe how the motion of reactant molecules (speed and direction) contributes to a reaction happening. Predict how changes in temperature, or use of a catalyst will affect the rate of a reaction. On the potential energy curve, identify the activation energy for forward and reverse reactions and the energy change between reactants and products.
The reaction proceeds by an alternative pathway with a lower activation energy. The value of the equilibrium constant for the reaction is increased. The heat of reaction is increased thus increasing the rate of reaction.
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