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A gas phase decomposition of dimethyl ei...

A gas phase decomposition of dimethyl either follows the 1st order kinetics `CH_{3}OCH_{3}CH_{3}OCH_{3}harrCH_{4}(g)+H_{2}_(g)+CO_{(g)}`. The reaction is carried out in a costant volume container at `(500^oC)` and has a half life period of 14.5 (min). Initially only dimethyl ether is present at a pressure of 0.4 atmosphere. What is the total pressure of the system after 12 (min) ? Assume Ideal behaviour

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The decomposition of dimethyl ether leads to the formation of (CH)_(4) and (H)_(2) and (CO) and the reaction rate is given by Rate =(k)[(CH)_(3) (OCH)_(3)]^(3 / 2) The rate of reaction is followed by increase in pressure in a closed vessel, so the rate can also be expressed in terms of the partial pressure of dimethyl ether, i.e., Rate= (k)P (C H)_(3) (OCH)_(3)^(3 / 2) If the pressure is measured in bar and time in minutes, then what are the units of rate and rate constants?

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A compound 'A' dissociate by two parallel first order paths atcertain temperature A(g) overset(k_(1)(min^(-1))rarr2B(g) k_(1)=6.93xx10^(-3) min^(-1) A(g)overset(k_(2)(min^(-1))rarrC(g) k_(2)=6.93xx10^(-3) min^(-1) The reaction started whith 1 mole of pure A in 1 litre closed container with the initial pressure 2 atm what is the pressure (in atm ) developed in container after 50 minuts from start of experiment?

The gaseous decomposition reaction, A(g) rarr 2B(g) + C(g) is observed to first order over the excess of liquid water at 25^(@) C. It is found that after 10 minutes the total pressure of system is 188 torr and after very long time it is 388 torn The rate constant of the reaction (in hr^(1) ) is: [Given: vapour pressure of H_(2) O at 25^(@) C is 28 torr(In 2 = 0.7, In 3 = 1.1, In 10 = 2.3)]

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