me equilibrium constant K of a reaction at a particular amperature is determined by the concentrations or prestures the

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me equilibrium constant K of a reaction at a particular amperature is determined by the concentrations or prestures the

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Me Equilibrium Constant K Of A Reaction At A Particular Amperature Is Determined By The Concentrations Or Prestures The 1
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me equilibrium constant K of a reaction at a particular amperature is determined by the concentrations or prestures the reactants and products at equilibrium ora gaseous reaction with the general form aA+MC+ dD K, and K, expressions are given by Ka CHO TAR PERTANY PASTINY K₂ of otec no subscriptic or p indicates whether K is expressed i ons or pressures Equilibrium costant pressions do not include a term for any pure solds lds that may ed since the composition does wange t ughout the action. The standard state c a pura abstance is pure substance hell and although t anty may change the sample remain pure The constam se incorporated into the value of N and dires not need be accounted for sewatels na you were given the equiorum pressures, which coua pe pugged arecy in the roma vorrannowever you we gee concentrations and only one equilibrium concentration. You must use this data to find all three epulbrium concentrations before you can apply the Hedew Constants Periodic Table formula for K ♥ Part 8 The following reaction was performed in a sealed vessel at 779 "C H₂()+)2(e) inlay only Hy and I were present at concentrations of (H₂)-3.30M and al-2.75Af The equium contration of 10.000 M What is the equilibrium constant K. for the reaction at this temperatur? Express your answer numerically. View Available int(s) K.- Submit VAX 9
Calculating Equilibrium Constants The equilibrium constant. K of a reaction at a particular temperature is determined by the concentrations or pressures of the reactares and products at equilibrium For a gaseous reaction with the general forms A+MC+D the K. and K. xpressions are given by K CO TAPPI (b)(b (PAYKANY K₁ The sunsoptor p indicates whether Kis pressed in terms of concentrations or pressures Equitum-constant expressions do not include a terms for any pure solids or Siquids that may be involved since their composition does not changes throughout the reaction. The standard state of a pur since is the pure substance that and though the quantity may change the sample remain pure. The constant Valuata incorporated into the value of and does not need to be accounted for party • Part A CO()+C) COC( Carbon monoxide and chlorine gas are allowed to react in a sealed vessel at 455 "C. At equltum, the following results obtained Phosgene (carbonyl chloride), COC), is an extremely toxic gas that is used in manufacturing certain dyes and plastics Phongee can he produced by reacting carbon monoxide and chlorine gas at high temperatures What is the album constant of this reaction? Express your answer numerically View Available His) IVO ALA K t FR Gas CO Ch сос 13 of 24 > Partial Pressure (alm) 770 113 0140 Helew 1 Contacts | Ta www.mased and the
Part B The following reaction was performed in a sealed vessel at 779 °C H₂(g) +12(g) 2HI(g) Initially, only H₂ and I were present at concentrations of [H₂]- 3.30M and [12] -2.75M The equilibrium concentration of Is is 0.0300 M What is the equilibrium constant, Ke. for the reaction at this temperature? Express your answer numerically. ▸View Available Hint(s) K₂= Submit Provide Feedback V ΑΣΦ → gut Next >
Y Part A What is the equilibrium constant Kp. of this reaction? Express your answer numerically. View Available Hint(s) Phosgene (carbonyl chloride). COCI₂, is an extremely toxic gas that is used in manufacturing certain dyes and plastics. Phosgene can be produced by reacting carbon monoxide and chlorine gas at high temperatures: CO(g) + Cl₂(g) = COCk₂(g) Carbon monoxide and chlorine gas are allowed to react in a sealed vessel at 455 °C. At equilibrium, the concentrations were measured and the following results obtained: K₂ = IVE ΑΣΦ Gas CO Ch₂ COCI₂ Partial Pressure (atm) 0.770 13 of 24 1.13. 0.140 Review | Constants | Periodic Table
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