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  1. There are two fundamentally different approaches to this - you can either investigate what happens to the initial rate of the reaction as you change concentrations, or you can follow a particular reaction all the way through, and process the results from that single reaction.

  2. Changing the concentration of substances taking part in a reaction usually changes the rate of the reaction. A rate equation shows this effect mathematically. Orders of reaction are a part of the rate equation. This page introduces and explains the various terms you will need to know about.

  3. Feb 13, 2023 · If the reaction is first order with respect to that substance, then a straight line results; in a first order reaction, the rate is proportional to the concentration. If a curve results, the reaction is not first order.

  4. Jul 12, 2023 · In a first-order reaction, the reaction rate is directly proportional to the concentration of one of the reactants. First-order reactions often have the general form A → products.

  5. Feb 13, 2023 · To test if it the reaction is a first-order reaction, plot the natural logarithm of a reactant concentration versus time and see whether the graph is linear. If the graph is linear and has a negative slope, the reaction must be a first-order reaction.

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  6. Solution. Check Your Learning. The rate law for the reaction: H2(g)+2N O(g) N 2O(g)+H2O(g) H 2 (g) + 2 N O (g) N 2 O (g) + H 2 O (g) has been determined to be rate = k [NO] 2 [H 2]. What are the orders with respect to each reactant, and what is the overall order of the reaction? Solution. Check Your Learning.

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  8. Oct 18, 2019 · You will understand the difference between the rate of reaction of a first-order process and the first-order rate constant, and you will learn how to use the leading coefficient and the input of first-order equation to compare the elimination profile of different drugs.

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