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The exothermic formation of C1F(3) is re...

The exothermic formation of `C1F_(3)` is represented by the equation `C1_(2(g)) + 3F_(2(g))hArr2C1F_(3(g))` , `Delta H = - 329 kJ` Which of the following will increase the quantity of `C1F_(3)` in an equilibrium mixture of `C1_(2)`, `F_(2)` and `C1F_(3)`

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The exothermic formation of ClF_(3) is represented by thr equation: Cl_(2)(g)+3F_(2)(g) hArr 2ClF_(3)(g), DeltaH=-329 kJ Which of the following will increase the quantity of ClF_(3) in an equilibrium mixture of Cl_(2), F_(2) , and ClF_(3) ?

The exothermic formation of ClF_(3) is represented by thr equation: Cl_(2)(g)+3F_(2)(g) hArr 2ClF_(3)(g), DeltaH=-329 kJ Which of the following will increase the quantity of ClF_(3) in an equilibrium mixture of Cl_(2), F_(2) , and ClF_(3) ?

The exothermic formation of ClF_(3) is represented by thr equation: Cl_(2)(g)+3F_(2)(g) hArr 2ClF_(3)(g), DeltaH=-329 kJ Which of the following will increase the quantity of ClF_(3) in an equilibrium mixture of Cl_(2), F_(2) , and ClF_(3) ?

The exothermic formation of ClF_3 is represented by the equations. Cl_2 (g) +3F_2 (g) hArr 2ClF_3 (g) : Delta ,H = -329 kJ Which of the following will increase the quantity of ClF_3 in an equilibrium mixture of Cl_2 , F_2 and ClF_3 ?

The exothermic formation of ClF_(3) is represented by the reaction : Cl_(2)(g)+3F_(2)(g)hArr 2ClF_(3)(g)Delta_(r )H=-329kJ Which of the following will increase the quantity of ClF_(3) in an equilibrium mixture of Cl_(2), F_(2) and ClF_(3) ?

Exothermic formation represented by equation Cl_(2(g)) + 3F_(2(g)) hArr 2ClF_(3) (g) . Delta H = - 339 KJ . Which of the following will increase the quantity of CIF_(3) in equilibrium mixture ?