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Q: What type of chemical reaction is the reaction below? 2C3H8O3 (g) + 702 (g) → 6CO2 (g) + 8H2O (g)…
A: To solve this problem we have to explain the given type of reaction .
Q: What type of chemical reaction is shown in the chemical equation below? * CH4 + 2 O2> CO2 + 2 H2O…
A: Given reaction, CH4 + 2O2----->CO2+2H2O
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A: The balanced equation representing a reaction: 2H2 + O2 -->2H2O + energy
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Q: 2CH3OH(g)+3O2(g)→2CO2(g)+4H2O(g) How many CO2CO2 molecules would be formed from the reaction…
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A: Please find the attachment
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Q: Question attached
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Q: type of reaction
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Q: How do you balance this equation? Xcl2 + agno3----x(no3)2 + agcl
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A: Ans
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Q: 1.Consider the following reaction: CO(g) + 3H2 (g) ⇌ CH4 (g) If Kc = 1.86 what…
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Q: What type of chemical reaction is shown in the chemical equation below? *1 4 P4 + 5 S8 8 P2S5 O…
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A: Find the solution below
What is the type of
2C3H803 (g) + 702 (g) > 6C02 (g) + 8H20 (g)
- Displacement
- Combination
- Decomposition
- Combustion
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- Caluclate change H for the reaction 4 NH3 (g) + 5 O2 (g) -> 4 NO (g) + 6 H2O (g).On the basis of Kc for the following reaction, would you expect the reaction to go almost completely to product at equilibrium? 2SO2(g) + O2(g) ↔ 2SO3(g); Kc = 3x1025 Yes No On the basis of Kc for the following reaction, would you expect nearly complete reaction at equilibrium? 2HF(g) ↔ 2H2(g) + F2(g); Kc = 3x10-95 Yes NoHello, can answer the question and could you please write out the full chemical reaction and the state of matter for each compound. Benzoic acid, HC7H5O2, and its salts are used as food preservatives. Ka for benzoic acid is6,3 x 10–5. A solution of sodium benzoate, NaC7H5O2, in water has a concentration of0,015 mol.dm–3. (a) What is the equilibrium concentration of benzoic acid in the sodium benzoatesolution?
- › Calculate the value of the equilibrium constant, Kỵ, for the reaction Q(g) + X(g) — 2M(g) + N(g) given that Kc = M(g) — Z(g) 6R(g) 2 N(g) + 4 Z(g) 3 X(g) + 3 Q(g) = 9R(g) Kc1 = 3.48 Kc2 Kc3 = 0.587 = = 13.6Consider the following equilibrium reaction: 2 CH3OH + CH2O ⇌CH2(OCH3)2+ H2O ΔH = + 46 indicate the direction that the equilibrium will shift when the following changes are made.(No states are provided because the solvent for the reaction is not water, so aq for aqueous would not be appropriate.) (a)Concentration of CH3OH increases (b)H2O is removed from the reaction (c)Reaction is heatedKc = 0.193 at 45 degrees Celsius for the reaction: Cycloheptane <--> Methylcyclohexane. What must be the initial concentration of cycloheptane for it to have an equilibrium concentration of 0.10 M?
- 8 Reactions between certain organic (alkyl) halides and water produce alcohols. Consider the overall reaction for t-butyl bromide (2-bromo-2-methylpropane). (CH3)3CBr(aq) + H2O(1) →(CH3)3COH(aq) + H*(aq) + Br "(ag) k[(CH3)3CB1]. The accepted mechanism for the The experimental rate law is rate = %3D reaction is shown below. (1) (CH3)3C-Br(aq) →(CH3)3C*(aq) + Br "(aq) [slow] (2) (CH3)3C*(aq) + H2O(1) →(CH3)3C-OH2*(aq) [fast] (3) (CH3)3C-OH2*(aq) →H*(aq) + (CH3)3C-OH(aq) [fast] a) Why doesn't H2O appear in the rate law? b) Write rate laws for the elementary steps. c) What intermediates appear in the mechanism? d) Show that the mechanism is consistent with the experimental rate law. ed to the of consumption of NThe equilibrium constant for the reaction2 NO1g2 + Br21g2 ∆ 2 NOBr1g2is Kc = 1.3 * 10-2 at 1000 K. (a) At this temperature doesthe equilibrium favor NO and Br2, or does it favor NOBr?(b) Calculate Kc for 2 NOBr1g2 ∆ 2 NO1g2 + Br21g2.(c) Calculate Kc for NOBr1g2 ∆ NO1g2 + 12 Br21g2.3) Based on the information below, determine the value of the unknown equilibrium constant, Kc. 4 CO2 (g) + 2 H2O (g) « 4 O2 (g) + 2 CH2CO (g)Kc = 3.7 x 1017 CO2 (g) + 2 H2O (g) « CH4 (g) + 2 O2 (g)Kc = 8.3 x 10-15 CH4 (g) + CO2 (g) « CH2CO (g) + H2O (g)Kc = ?
- Calculate the value of the equilibrium constant, Kc, for the reaction Q(g) + X(g) 2 M(g) + N(g) given that Kc = M(g) = Z(g) 6R(g) 2 N(g) + 4 Z(g) 3 X(g) + 3 Q(g) = 9 R(g) Kel : 3.49 Kc2 = 0.469 Kc3 = 14.4Consider the reaction: 2 NH3(g) N₂(g) + 3H₂(g). At T = 740 K, the equilibrium constant Kc for this reaction is Kc = 10. What is the correct form of the equilibrium constant Kc for this reaction? (A) Kc = [N₂] [H₂]³ (B) Kc (C) Kc = (D) Kc = (E) Kc - 2[NH3] [N₂]+3 [H₂] [N₂] +3 [H₂] 2[NH3] 2 [NH3] [N₂] [H₂] ³ 13 [N₂] [H₂] ³ [NH3]²For the following combustion reactions, predict whether compression will favour the formation of products or reactants, or whether there will be no change in the equilibrium composition:(a) C4H8(g) + 6 O2(g) → 4 CO2(g) + 4 H2O(I)(b) C2H5OH(I) + 3(1)/(2) O2(g) → 2 CO2(g) + 3 H2O(I)(c) C6H12O11(s) + 3(1)/(2) O2(g) → 6 CO2(g) + 6 H2O(I)(d) 2 C6H5NH2(1) + 17(1)/(2) O2(g) → 12 CO2(g) + 7 H2O(I) +2 NO2(g)