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OCR A Level Chemistry A – Module 3 Periodic Table and Energy

3.2.2
Reaction Rates

Section 3.2.2 covers the effect of concentration and pressure on rate in terms of collision frequency, calculating rates from the gradients of graphs, the techniques used to follow a reaction (mass, gas volume, time), catalysts and their economic and environmental importance, homogeneous and heterogeneous catalysis, and the Boltzmann distribution used to explain the effects of temperature and of a catalyst.

Exam Paper
Paper 1 & 3
H432/01 and H432/03
Specification Points
3.2.2 (a) – (g)
7 learning outcomes
Topic Parts
4 pages
Revision notes available
Exam Board
OCR A
H432 (2015 onwards)
Specification Coverage

3.2.2 Reaction Rates – OCR A Level Chemistry A

The following OCR A learning outcomes state what candidates should be able to do. Wording is taken from the OCR A Level Chemistry A (H432) specification.

3.2.2 Reaction rates

3.2.2(a)
the effect of concentration, including the pressure of gases, on the rate of a reaction, in terms of frequency of collisions
3.2.2(b)
calculation of reaction rate from the gradients of graphs measuring how a physical quantity changes with time
3.2.2(c)
explanation of the role of a catalyst:
i
in increasing reaction rate without being used up by the overall reaction
ii
in allowing a reaction to proceed via a different route with lower activation energy, as shown by enthalpy profile diagrams
3.2.2(d)
catalysts:
i
explanation of the terms homogeneous and heterogeneous catalyst
ii
explanation that catalysts have great economic importance and benefits for increased sustainability by lowering temperatures and reducing energy demand from combustion of fossil fuels, with resulting reduction in CO₂ emissions
3.2.2(e)
the techniques and procedures used to investigate reaction rates including the measurement of mass, gas volumes and time
3.2.2(f)
qualitative explanation of the Boltzmann distribution and its relationship with activation energy
3.2.2(g)
explanation, using Boltzmann distributions, of the qualitative effect on the proportion of molecules exceeding the activation energy and hence the reaction rate, for:
i
temperature changes
ii
catalytic behaviour