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PCl(5)" Right-sided number "...

PCl_(5)" Right-sided number "

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Three moles of PCl_(5) , three moles of PCl_(3) and two moles of Cl_(2) are taken in a closed vessel. If at equilibium, the vessel has 1.5 moles of PCl_(5) the number of moles of PCl_(3) present in it is

Three moles of PCl_(5) , three moles of PCl_(3) and two moles of Cl_(2) are taken in a closed vessel. If at equilibium, the vessel has 1.5 moles of PCl_(5) the number of moles of PCl_(3) present in it is

Three moles of PCl_(5) , three moles of PCl_(3) and two moles of Cl_(2) are taken in a closed vessel . If at equilibrium the vessel has 1.5 moles of PCl_(5) , the number of moles of PCl_(3) present in it is

If x is the fraction of PCl_(5) dissociated at equilibrium in the reaction PCl_(5)hArrPCl_(3)+Cl_(2) then starting with 0.5 mole of PCl_(5) , the total number of moles of reactants and products at equilibrium is

Sn+PCl_(5) to

PCl_(5) hArr PCl_(3) + Cl_(3) " "K_(c)= 1.844 3.0 moles of PCl_(5) is introduced in a 1 L closed reaction vessel at 380 K. The number of moles of PCl_(5) at equilibrium is ________ xx 10^(-3) . (Round off to the Nearest Integer)

When PCl_(5) is heated