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The rate law expressed the relationship of the rate of a reaction to the rate constant and the concentration of the reactants raised to some powers for the general reaction aA + bB → cC + dD
Rate law takes the form r = k [A]X [B]y
where x and y are number that must be determined experimentally k is the rate constant and [A] and [B] are concentration of A & B respectively.
Q.
The variation of concentration of 'A' with time in two experiments starting with two different initial concentration of 'A' is given by the following graph.The reaction is represented by A (aq) → B(aq) what is rate of reaction 1.5M (M/min) when conc. of A in aqueous solution was 1.8 M.
  • a)
    0.072 M min -1
  • b)
    0.1296 M min–1
  • c)
    0.036 M min -1
  • d)
    1 M min-1
Correct answer is option 'A'. Can you explain this answer?
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The rate law expressed the relationship of the rate of a reaction to the rate constant and the concentration of the reactants raised to some powers for the general reaction aA + bB → cC + dDRate law takes the form r = k [A]X [B]ywhere x and y are number that must be determined experimentally k is the rate constant and [A] and [B] are concentration of A & B respectively.Q.The variation of concentration of 'A' with time in two experiments starting with two different initial concentration of 'A' is given by the following graph.The reaction is represented by A (aq) → B(aq) what is rate of reaction 1.5M (M/min) when conc. of A in aqueous solution was 1.8 M.a)0.072 M min -1b)0.1296 M min–1c)0.036 M min -1d)1 M min-1Correct answer is option 'A'. Can you explain this answer?
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The rate law expressed the relationship of the rate of a reaction to the rate constant and the concentration of the reactants raised to some powers for the general reaction aA + bB → cC + dDRate law takes the form r = k [A]X [B]ywhere x and y are number that must be determined experimentally k is the rate constant and [A] and [B] are concentration of A & B respectively.Q.The variation of concentration of 'A' with time in two experiments starting with two different initial concentration of 'A' is given by the following graph.The reaction is represented by A (aq) → B(aq) what is rate of reaction 1.5M (M/min) when conc. of A in aqueous solution was 1.8 M.a)0.072 M min -1b)0.1296 M min–1c)0.036 M min -1d)1 M min-1Correct answer is option 'A'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about The rate law expressed the relationship of the rate of a reaction to the rate constant and the concentration of the reactants raised to some powers for the general reaction aA + bB → cC + dDRate law takes the form r = k [A]X [B]ywhere x and y are number that must be determined experimentally k is the rate constant and [A] and [B] are concentration of A & B respectively.Q.The variation of concentration of 'A' with time in two experiments starting with two different initial concentration of 'A' is given by the following graph.The reaction is represented by A (aq) → B(aq) what is rate of reaction 1.5M (M/min) when conc. of A in aqueous solution was 1.8 M.a)0.072 M min -1b)0.1296 M min–1c)0.036 M min -1d)1 M min-1Correct answer is option 'A'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The rate law expressed the relationship of the rate of a reaction to the rate constant and the concentration of the reactants raised to some powers for the general reaction aA + bB → cC + dDRate law takes the form r = k [A]X [B]ywhere x and y are number that must be determined experimentally k is the rate constant and [A] and [B] are concentration of A & B respectively.Q.The variation of concentration of 'A' with time in two experiments starting with two different initial concentration of 'A' is given by the following graph.The reaction is represented by A (aq) → B(aq) what is rate of reaction 1.5M (M/min) when conc. of A in aqueous solution was 1.8 M.a)0.072 M min -1b)0.1296 M min–1c)0.036 M min -1d)1 M min-1Correct answer is option 'A'. Can you explain this answer?.
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