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Find the density of CO(2)(g) with respec...

Find the density of `CO_(2)(g)` with respect to `N_(2)O(g).`

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The density of O_(2)"(g)" is maximum at :

The reaction 2N_(2)O_(5)(g)rarr4NO_(2)(g)+O_(2)(g) is found to be firt order with respect to N_(2)O_(5)(g) . Which of the following is correct ?

For a homogeneous decomposition of N_(2)O_(5) into NO_(2)" and "O_(2) , 2N_(2)O_(5)(g)to4NO_(2)(g)+O_(2)(g)," rate "=(-(1)/(2)Delta[N_(2)O_(5)])/(Deltat)=k[N_(2)O_(5)] Find out the order with respect to N_(2)O_(5) .

Find the value of Delta_(f) H^(@) for the reaction N_(2) O_(4) (g) + 3 CO(g) rarr N_(2) O (g) + 3 CO_(2) (g) Standard enthalpies of formation of CO(g), CI_(2) (g), N_(2) O (g) , and N_(2) O_(4) (g) are - 110, - 393, 81 , and 9.7 kJ mol^(-1) , respectively. Strategy : The standard enthalpy change of a reaction is equal to the sum of the standard molar enthalpie of formation of the products each miltiplied by its stiochiometric coefficient in the balanced equation, minus the corresponding sum of the standard molar enthalpies of formation of the reactants

The relative density of a mixture of CO_(2)(g) and H_(2)O(g) w.r.t. gaseous hydrogen atoms is 30. The mol% of the CO_(2) is

N_(2)O_(3) is an unstable oxide of nitrogen and it decomposes into NO (g) and NO_(2)(g) where NO_(2)(g) is further dimerise dimerise into N_(2)O_(4) as N_(2)O_(3)(g)hArrNO_(2)(g)+NO(g)" ",K_(p_(1)=2.5 bar 2NO_(2)(g)hArrN_(2)O_(4)(g)" ": K_(P2) A flask is initially filled with pure N_(2)O_(3)(g) having pressure 2 bar and equilibria was established. At equilibrium partial pressure of NO (g) was found to be 1.5 ber. The equilibrium partiaal pressure of N_(2)O_(3)(g) is :

A gaseous mixture contains CO_(2) (g) and N_(2)O(g) in 2:5 ratio by mass. The ratio of the number of molecules of CO_(2)(g) and N_(2)O(g) is:

GRB PUBLICATION-MOLE CONCEPT, STOICHIOMETRY & CONCENTRATION TERMS-Subjective type
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  2. Br(2)(l) reacts with Cl(2)(g) to form BrCl and BrCl(3), simultaneously...

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  3. Find the density of CO(2)(g) with respect to N(2)O(g).

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