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Give the mathematical expression for the...

Give the mathematical expression for the equlibrium constant `K_(c)` for the reaction.
`2SO_(3)(g)hArr2SO_(2)(g)+O_(2)(g)`

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AI Generated Solution

To derive the mathematical expression for the equilibrium constant \( K_c \) for the reaction: \[ 2SO_3(g) \rightleftharpoons 2SO_2(g) + O_2(g) \] we will follow these steps: ...
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The equlibrium constnt (K_(rho)) for the reaction, 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g) at 1000K is 3.5 atm^(-1) then find out equlibrium constnt (K_(rho)) for the reaction, 2SO_(3)(g)hArr2SO_(2)(g)+O_(2)(g)

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Knowledge Check

  • The expression for equilibrium constant, K_(c) for the following reaction is 2Cu(NO_(3))_(2(s))hArr2CuO_((s))+4NO_(2(g))+O_(2(g))

    A
    `K_(c)=([CuO_((s))]^(2)[NO_(2(g))]^(4)[O_(2(g))])/([Cu(NO_(3))_(2(s))]^(2))`
    B
    `K_(c)=([NO_(2(g))]^(4)[O_(2(g))])/([Cu(NO_(3))_(2(g))]^(2))`
    C
    `K_(c)=[NO_(2(g))]^(4)[O_(2(g))]`
    D
    `K_(c)=([CuO_((s))]^(2))/([Cu(NO_(3))_(2(g))]^(2))`
  • At 500 K, equlibrium constant, K_(c) for the following reaction is 5. 1//2 H_(2)(g)+ 1//2(g)hArr HI (g) What would be the equilibrium constant K_(c) for the reaction 2HI(g)hArrH_(2)(g)+l_(2)(g)

    A
    0.04
    B
    0.4
    C
    25
    D
    2.5
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