Chapter 7 – Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2)
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Listed in the table are forward and reverse rate constants for the reaction 2NO(g)⇔N2(g)+O2(g)
02
Jun
Listed in the table are forward and reverse rate constants for the reaction 2NO(g)⇔N2(g)+O2(g) Listed in the table are forward and reverse rate constants for the reaction 2NO(g)⇔N2(g)+O2(g) June 2, 2021 Category: Chapter 7 - Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2) , N Awasthi Physical Chemistry ,
Which of the following relation is correct for kf and kb in an equilibrium process that contains equal moles of reactants and products.
02
Jun
Which of the following relation is correct for kf and kb in an equilibrium process that contains equal moles of reactants and products. Which of the following relation is correct for kf and kb in an equilibrium process that contains equal moles of reactants and products. June 2, 2021 Category: Chapter 7 - Chemical Kinetics [...]
Which of the following statement is incorrect? (a) Unit of rare of disappearance is Ms^-1
02
Jun
Which of the following statement is incorrect? (a) Unit of rare of disappearance is Ms^-1 Which of the following statement is incorrect? (a) Unit of rare of disappearance is Ms^-1 June 2, 2021 Category: Chapter 7 - Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2) , N Awasthi Physical Chemistry ,
The rate constant of nth order has units:
02
Jun
The rate constant of nth order has units: The rate constant of nth order has units: June 2, 2021 Category: Chapter 7 - Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2) , N Awasthi Physical Chemistry ,
For the reaction 2A gives B + 3C; If -d[A]/dt = k1 [A}^2; D[B]/dt = k2 [A]^2; d[C]/dt = k3[A]^2 the correct relation between k1, k2 and k3 is :
02
Jun
For the reaction 2A gives B + 3C; If -d[A]/dt = k1 [A}^2; D[B]/dt = k2 [A]^2; d[C]/dt = k3[A]^2 the correct relation between k1, k2 and k3 is : For the reaction 2A gives B + 3C; If -d[A]/dt = k1 [A}^2; D[B]/dt = k2 [A]^2; d[C]/dt = k3[A]^2 the correct relation between k1 [...]
The rate of a reaction is expressed in different ways as follows: +1/2d[C]/dt =−1/3d[D]/dt =+1/4d[A]/dt=−d[B]/dt the reaction is
02
Jun
The rate of a reaction is expressed in different ways as follows: +1/2d[C]/dt =−1/3d[D]/dt =+1/4d[A]/dt=−d[B]/dt the reaction is The rate of a reaction is expressed in different ways as follows: +1/2d[C]/dt =−1/3d[D]/dt =+1/4d[A]/dt=−d[B]/dt the reaction is June 2, 2021 Category: Chapter 7 - Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2) , N [...]
In the reaction , A+2B→6C+2D, if the initial rate -d[A]/dt at t= 0 is 2.6×10^-2 M sec^-1, what will be the value of -d[B]/dt at t=0?
02
Jun
In the reaction , A+2B→6C+2D, if the initial rate -d[A]/dt at t= 0 is 2.6×10^-2 M sec^-1, what will be the value of -d[B]/dt at t=0? A+2B→6C+2D if the initial rate -d[A]/dt at t= 0 is 2.6×10^-2 M sec^-1 In the reaction what will be the value of -d[B]/dt at t=0? June 2, 2021 Category: [...]
The differential rate law equation for the elementary reaction A+2Bk→3C, is.
02
Jun
The differential rate law equation for the elementary reaction A+2Bk→3C, is. is The differential rate law equation for the elementary reaction A+2Bk→3C June 2, 2021 Category: Chapter 7 - Chemical Kinetics and Nuclear Chemistry (Level 1 and Level 2) , N Awasthi Physical Chemistry ,