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For a hypothetical reaction A + B rarr C...

For a hypothetical reaction `A + B rarr C`, suggest the rate law and order form the following data:
`|{:("Experiment",[A] (mol L^(-1)),[B] (mol L^(-1)),"Refer of reaction" (mol L^(-1) s^(-1)),),(I,0.25,0.25,3.0 xx 10^(-3),),(II,0.50,0.25,6.0 xx 10^(-3),),(III,0.50,0.50,1.20 xx 10^(-2),):}|`

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To determine the rate law and order of the reaction \( A + B \rightarrow C \) from the provided experimental data, we will follow these steps: ### Step 1: Write the general rate law expression The rate law for the reaction can be expressed as: \[ \text{Rate} = k [A]^x [B]^y \] where \( k \) is the rate constant, \( [A] \) and \( [B] \) are the concentrations of reactants A and B, and \( x \) and \( y \) are the orders of the reaction with respect to A and B, respectively. ...
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For the hypothetical reaction 2A + B rarr Products following data obtained: |{:("Experiment number","Initial conc of (A)" (mol L^(-1)),"Initial conc of (B)" (mol L^(-1)),"Initial rate mol" L^(-1) s^(-1),),(1,0.10,0.20,3 xx 10^(2),),(2,0.30,0.40,3.6 xx 10^(10^(3)),),(3,0.30,0.80,1.44 xx 10^(4),),(4,0.10,0.40,...,),(5,0.20,0.60,...,),(6,0.30,1.20,...,):}| Find out how the rate of the reaction depends upon the concentration of A and B and fill in the blanks given in the table.

Find the values of A,B and C in the following table for the reaction X + Y to Z . The reaction is of first order w.r.t X and zero order w.r.t. Y. {:("Exp",[X](mol L^(-1)),[Y](mol L^(-1)),"Initial rate (mol L^(-1) s^(-1))),(1,0.1,0.1,2xx10^(-2)),(2,A,0.2,4 xx 10^(-2)),(3,0.4,0.4,B),(4,C,0.2,2 xx 10^(-2)):}

For the reaction A + B to products, what will be the order of reaction with respect to A and B? {:("Exp",[A](mol L^(-1)),[B](mol L^(-1)),"Initial rate (mol L^(-1) s^(-1))),(1,2.5 xx 10^(-4), 3 xx 10^(-5), 5 xx 10^(-4)),(2,5 xx 10^(-4),6 xx 10^(-5), 4 xx 10^(-3)),(3, 1xx 10^(-3), 6 xx 10^(-5), 1.6 xx 10^(-2)):}

For a reaction 2NO(g) + 2H_(2)(g) rarr N_(2)(g)+2H_(2)O(g) the following data were obtained: |{:(,[NO] (mol L^(-1)),[H_(2)] (mol L^(-1)),"Rate" (mol L^(-1) s^(-1))),(1.,5 xx 10^(-3),2.5 xx 10^(-3),3 xx 10^(-5)),(2.,15 xx 10^(-3),2.5 xx 10^(-3),9xx10^(-5)),(3.,15 xx 10^(-3),10 xx 10^(-3),3.6 xx 10^(-4)):}| (a) Calculating the order of reactions. (b) Find the rate constant. (c ) Find the initial rate if [NO] = [H_(2)] = 8.0 xx 10^(-3) M

The experiment data for the reaction 2A + B_(2) rarr 2AB is |{:("Experiment",[A] M,[B_(2)] M,"Initial rate" (mol L^(-1) s^(-1)),),(I,0.50,0.5,1.6 xx 10^(-4),),(II,0.50,1.0,3.2 xx 10^(-4),),(III,1.00,1.0,3.2 xx 10^(-4),):}| Write the most probable rate equation for the reaction giving reason for your answer.

The experiment data for the reaction 2A + B_(2) rarr 2AB is |{:("Experiment",[A] M,[B_(2)] M,"Initial rate" (mol L^(-1) s^(-1)),),(I,0.50,0.5,1.6 xx 10^(-4),),(II,0.50,1.0,3.2 xx 10^(-4),),(III,1.00,1.0,3.2 xx 10^(-4),):}| Write the most probable rate equation for the reacting giving reason for you answer.

Identify the reaction order from each of the following rate : k=2.3 xx 10^5 L mol^(-1) s^(-1)

For the reaction 2A+BrarrC , the values of initial rate at different reactant concentrations are given in the table below. The rate law for the reaction is : {:([A]("mol"L^(-1)),[B]("mol"L^(-1)),{:("Initial Rate"),("mol"^(-1)s^(-1)):}),(0.05,0.05,0.045),(0.10,0.05,0.090),(0.20,0.10,0.72):}

CENGAGE CHEMISTRY ENGLISH-CHEMICAL KINETICS-Archives Subjective
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  2. Rate of a reaction A + B rarr Product, is given as a function of diffe...

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  3. A first order reaction is 20% complete in 10 min. Calculate (a) the sp...

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  4. While studying the decompoistion of gaseous N(2)O(5), it is observed t...

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  5. A first order gas reaction has k = 1.5 xx 10^(-6) s^(-1) at 200^(@)C. ...

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  7. In a Arrhenius equation for a certain reaction, the values of A and E(...

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  12. form the following data for the reaction between A and B, (a) Cal...

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  13. At 380^(@)C, the half-life period for the first order decomposition of...

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  20. An organic reaction is carried out at 500 K. If the same reaction carr...

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