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Consider the reaction: Cl2(9)+3F (9) +2C1F3 (9) A[Cl]/At = -0.098 M/s. Find A[F2]/At Express your answer...
Consider the reaction: Cl2(g)+3F2(g) +2C1F3(g) A[Cl2]/At = -0.098 M/s. Part A Find A[F2]/At Express your answer to two significant figures and include the appropriate units. μΑ ? A[F]/At = Value Units Submit Request Answer Part B "Find ACIF3]/At Express your answer to two significant figures and include the appropriate units. HA ? A[CIF 31/At = Value Units Part Find the rate of the reaction. Express your answer to two significant figures and include the appropriate units. μΑ ? Rate =...
Consider the reaction: Cla(9)+3F,()+2C1F,() A[Cl]/At = -0.078 M/s. Part A Find A[F://At Express your answer to two significant figures and include the appropriate units. HA ? A[F]/At Value Units Submit Revest Answer Part 3 Find A CIP/A Express your answer to two significant figures and include the appropriate units. MA ? ACIF/At Value Units Submit Answer Part Part Find the rate of the reaction. Express your answer to two significant figures and include the appropriate units. MA ? Rate Value...
Part A Consider the reaction between NO and Cl2 to form NOCI: 2NO (9) + Cl2 (9)=2NOCI (9) A reaction mixture at a certain temperature initially contains only (NO) = 0.60 M and (Cl) = 0.63 M. After the reaction comes to equilibrium, the concentration of NOCI is 0.22 M. You may want to reference (Page 688) Section 15.6 while completing this problem. Find the value of the equilibrium constant (K) at this temperature. Express your answer using two significant...
Item 6 Part A Consider the reaction between NO and Cl, to form NOCI: 2NO (9) + Cl2 (9) = 2NOCI (9) A reaction mixture at a certain temperature initially contains only (NO) = 0.53 M and (Cl2] = 0.53 M. After the reaction comes to equilibrium, the concentration of NOCI is 0.40 M. You may want to reference (Page 688) Section 15.6 while completing this problem. Find the value of the equilibrium constant (K) at this temperature. Express your...
Consider the following reaction: PCl5(g)⇌PCl3(g)+Cl2(g) a. Initially, 0.62 mol of PCl5 is placed in a 1.0 L flask. At equilibrium, there is 0.20 mol of PCl3 in the flask. What is the equilibrium concentration of PCl5? Express your answer to two significant figures and include the appropriate units. b. What is the equilibrium concentration of Cl2? Express your answer to two significant figures and include the appropriate units. c. What is the numerical value of the equilibrium constant, Kc, for...
Consider the reaction 8H2S(g)+4O2(g)→8H2O(g)+S8(g)8H2S(g)+4O2(g)→8H2O(g)+S8(g) Δ[H2S]/ΔtΔ[H2S]/Δt = -0.022 M/sM/s You may want to reference (Pages 587 - 592) Section 14.3 while completing this problem. Part A Find Δ[O2]/ΔtΔ[O2]/Δt. Express your answer to two significant figures and include the appropriate units. Part B Find Δ[H2O]/ΔtΔ[H2O]/Δt. Express your answer to two significant figures and include the appropriate units. Part C Find Δ[S8]/ΔtΔ[S8]/Δt. Express your answer to two significant figures and include the appropriate units. Part D Find the rate of the reaction. Express...
Consider the reaction: Cl2(g)+3F2(g)→2ClF3(g) Δ[Cl2]/Δt = -0.052 mol L−1 s−1 . Find Δ[F2]/Δt Find Δ[CIF3]/Δt Find the rate of the reaction.
Part A Consider the reaction 8H,8(E) + 40.() +8H2O(g) + S.() A[HS]/At -0.083 M/s You may want to reference (Pages 587 - 592) Section 14.3 while completing this problem. Find A[0l/A. Express your answer to two significant figures and include the appropriate units. .: O ? A[0]/At Value Units Submit Request Answer Part B Find AH,0/At. Express your answer to two significant figures and include the appropriate units. ICH MÅ O ? AHO/A+ - Value Units Submit Resuest Answer
Consider the reaction: CO(g) + Cl2(9) COCI (9) Keq = 6.17x10-2 at 25°C A 5.89 - L flask containing an equilibrium reaction mixture has [CO]=0.205 M and (Cl) = 0.0220 M. Part A How much CoCl2 in grams is in the equilibrium mixture? Express your answer using two significant figures. 10 AP ? COCI 8 Submit Request Answer Provide Feedback
Consider the reaction 8H₂S(g)+4O₂(g)→8H₂O(g)+S₈(g) Δ[H₂S]/Δt = -0.067 M/s You may want to reference (Pages 587 - 592) Section 14.3 while completing this problem. Part A Find Δ[O₂]/Δt. Express your answer to two significant figures and include the appropriate units. Part B Find Δ[H₂O]/Δt. Express your answer to two significant figures and include the appropriate units.