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N(2)O(5(g)) rarr 2NO(2(g)) + (1)/(2)O(2(...

`N_(2)O_(5(g)) rarr 2NO_(2(g)) + (1)/(2)O_(2(g))`. In the above first order reaction the initial concentration of `N_(2)O_(5)` is `2.40 xx 10^(-2) mol L^(-1)` at 318 K. The concentration of `N_(2)O_(5)` after 1 hour was `1.60 xx 10^(-2) mol L^(-1)`. The rate constant of the reaction at 318K is ______ `xx 10^(-3) "min"^(-1)`. (Nearest integer) [Given: log3= 0.477, log 5= 0.699]

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For the reaction N_(2)O_(5) rarr 2NO_(2) + (1)/(2) O_(2) , the rate of disappearance of N_(2)O_(5) is 6.25 xx 10^(-3) "mol L"^(-1) s^(-1) . The rate of formation of NO_(2) and O_(2) will be respectively.

The rate constant of the first order, decomposition of N_(2)O_(5) at 25^(@) is 3.00 xx 10^(-3) min^(-1) . If the initial concentration of N_(2)O_(2) is 2.00 xx 10^(-3) mol L^(-1) , How long will it take for the concentration to drop to 5.00 xx 10^(-4) mol L^(-1) ?

PCl _(5) (g) to PCl _(3) (g) + Cl _(2) (g) In the above first order reaction the concentration of PCl _(5) reduces from initial concentration 50 mol L ^(-1) to 10 mol L ^(-1) m 120 minutes at 300K. The rate constant for the reaction at 300 K is x xx 10 ^(-2) "min"^(-1). The value of x is ______________[Given log 5 = 0.69989 ]

The rate constant of the reaction 2H_(2)O_(2)(aq) rarr 2H_(2)O(l) + O_(2)(g) is 3 xx 10^(-3) min^(-1) At what concentration of H_(2)O_(2) , the rate of the reaction will be 2 xx 10^(-4) Ms^(-1) ?

The rate constant for the reaction 2N_(2)O_(5) rarr 4NO_(2)+O_(2) is 3.0 xx 10^(-5) s^(-1) . If the rate is 2.40 xx 10^(-5) mol L^(-1) s^(-1) , then the concentration of N_(2)O_(5) (in mol L^(-1) ) is

JEE MAINS PREVIOUS YEAR-JEE MAINS 2021-CHEMISTRY (SECTION-B)
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