मराठी
महाराष्ट्र राज्य शिक्षण मंडळएचएससी विज्ञान (सामान्य) इयत्ता १२ वी

Answer the following in brief. How will you determine activation energy from rate constants at two different temperatures? - Chemistry

Advertisements
Advertisements

प्रश्न

Answer the following in brief.

How will you determine activation energy from rate constants at two different temperatures?

व्युत्पत्ती

उत्तर

Determination of activation energy from rate constants at two different temperatures.

Arrhenius equation is k = `"Ae"^((-"E"_"a")/("RT"))`

From two different temperatures T1 and T2

log10k= log10A - `"E"_"a"/(2.303"RT"_1)`   ....(1)

log10k= log10A - `"E"_"a"/(2.303"RT"_2)`   ....(2)

where k1 and k2 are the rate constants at temperatures T1 and T2 respectively. Subtracting Eq.(1) from Eq.(2),

log10k- log10k= `-"E"_"a"/(2.303"R") 1/"T"_2 + "E"_"a"/(2.303"R") 1/"T"_1`

Hence, `"log"_10 "k"_2/"k"_1 = "E"_"a"/(2.303"R") (1/"T"_1 - 1/"T"_2) = "E"_"a"/(2.303"R") (("T"_2 - "T"_1)/("T"_1"T"_2))`

shaalaa.com
Temperature Dependence of Reaction Rates
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 6: Chemical Kinetics - Exercises [पृष्ठ १३७]

APPEARS IN

बालभारती Chemistry [English] 12 Standard HSC
पाठ 6 Chemical Kinetics
Exercises | Q 3. xiv. (b) | पृष्ठ १३७

संबंधित प्रश्‍न

Answer the following in one or two sentences.

Write the Arrhenius equation and explain the terms involved in it.


Answer the following in brief.

Explain graphically the effect of temperature on the rate of reaction.


Solve

The energy of activation for a first-order reaction is 104 kJ/mol. The rate constant at 25°C is 3.7 × 10–5 s –1. What is the rate constant at 30°C? (R = 8.314 J/K mol)


Solve

What is the energy of activation of a reaction whose rate constant doubles when the temperature changes from 303 K to 313 K?


The rate constant for the first-order reaction is given by log10 k = 14.34 – 1.25 × 104 T. Calculate activation energy of the reaction.


Explain with the help of the Arrhenius equation, how do the rate of reaction changes with activation energy.


Which among the following is correct when energy of activation, Ea of the catalyzed reaction decreases at constant temperature and for same concentration?


A catalyst lowers the activation energy of a certain reaction from 83.314 to 75 kJ mol−1 at 500 K. What will be the rate of reaction as compared to uncatalysed reaction? Assume other things are equal.


Which among the following equation represents Arrhenius equation?


Slope of the straight line obtained by plotting log10k against represents what term?


Write the mathematical equation between reaction rate constant and its activation energy.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with activation energy.


Explain, with the help of the Arrhenius equation, how does the rate of reaction changes with temperature.


Explain, with the help of the Arrhenius equation, how does the rate of reaction changes with activation energy.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with activation energy.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with activation energy.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with activation energy.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature. 


Explain with the help of Arrhenius equation, how does the rate of reaction changes with temperature.


Explain with the help of Arrhenius equation, how does the rate of reaction changes with activation energy.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×