b) Figure 5 shows a Maxwell-Boltzmann distribution of molecular energies in a gaseous reaction mixture at 500 K. 11 Numb

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b) Figure 5 shows a Maxwell-Boltzmann distribution of molecular energies in a gaseous reaction mixture at 500 K. 11 Numb

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B Figure 5 Shows A Maxwell Boltzmann Distribution Of Molecular Energies In A Gaseous Reaction Mixture At 500 K 11 Numb 1
B Figure 5 Shows A Maxwell Boltzmann Distribution Of Molecular Energies In A Gaseous Reaction Mixture At 500 K 11 Numb 1 (38.39 KiB) Viewed 5 times
b) Figure 5 shows a Maxwell-Boltzmann distribution of molecular energies in a gaseous reaction mixture at 500 K. 11 Number of molecules Ε E Energy Figure 5 i) Describe how the values of Emp and Ea would change, if at all, for this mixture if the temperature was increased. (2 marks) ii) Describe how the values of Emp and Ewould change, if at all, for this mixture if the concentration was increased. (2 marks) iii) Explain why a small increase in temperature leads to a large change in the rate of reaction. (1 mark) iv) Explain how a catalyst increases the rate of reaction. (1 mark)
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