The given plots represent the variation of the concentration of a reactant R with time for two different reactions (i) and (ii). The respective orders of the reactions are
0, 1
0, 2
1, 0
1, 1
A bacterial infection in an initial wound grows N0(t) = N0 exp(t), here the time t is in hours A dose of antibiotic, taken orally , needs 1 hour to reach the wound. Once it reaches there , the bacterial Population goes down as . what will be plot of
For the reaction of H2 with I2, the rate constant is 2.5 × 10-4 dm3 mol-1s-1 at 327°C and 1.0 dm3 mol-1s-1 at 527°C. The activation energy for the reaction, in kJ mol-1 is: (R= 8.314 Jk-1mol-1)
166
150
59
72
The rate of a first-order reaction is 0.04 mol L-1s-1 at 10 sec and 0.03 mol-1L-1 s-1 at 20 sec after initiation of the reaction. the half-life period of the reaction is
34.1 s
44.1 s
54.1 s
54.1 s
D.
54.1 s
The ionic radii of A+ and B- ions are 0.98 x 10-10 m and 1.81 x10-10 m. The coordination number of each ions in AB is
4
8
2
2
The activation energy of a reaction can be determined from the slope of which of the following graphs?
InK vs T
When initial concentration of a reactant is doubled in a reaction, its half-life period os not affected the order of the reaction is?
Zero
first
second
second
What is the activation energy for a reaction if its rate doubles when the temperature is raised from 200C to 350C ?(R=8.314 J mol-1 K-1).
342 kJ mol-1
269 kJ mol-1
34.7 kJ mol-1
34.7 kJ mol-1
In a reaction, A+B → Product, rate is doubled when the concentration of B is doubled, and rate increases by a factor of 8 when the concentrations of both the reactants (A and B) are doubled. Rate law for the reaction can be written as
Rate = k[A][B]2
Rate = k[A]2[B]2
Rate = k[A][B]
Rate k[A]2[B]
In Freundlich adsorption isotherm, the value of 1/n is
between 0 and 1 in all cases
between 2 and 4 in all cases
1 in case of physical adsorption
1 in case of chemisorption