Using the table of bond dissociation energies, the AH for the following gas-phase reaction is kJ. H H H H / 1 T C=C + H Cl H-C-C-Cl 1 H 1 H 1 H H Bond D (kJ/mol) 1Cand697 he ta K sorte CI RAH nere a 348 C-C Opceis poH 2016 614 C-C 413 C-H 431 H-C1 328 C-CI
Q: 2. Calculate A H for 4FE0(s) + 02(g) → 2Fe203 (s) based on the reactions: 6FEO (s) + O2 (g) →2FE3O4…
A: Calculate enthalpy of the reaction, 4FeO + O2 -----> 2Fe2O3 ∆Hrxn = ?
Q: 2Al(s) + 302(g) ---> 2Al203(s) ΔHo = -3351 kJ The reaction shown above is…
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Q: a) Calculate the AH far the fellowiveg reaction usivng Heas' Law: i) CS 2+2H2O +COz+ 2H2S Gilen…
A: Since you have asked multiple questions, we will solve the first question for you. If you want any…
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Q: A] Calculate AH° for the reaction C:Hug) + 3 Ozg ² 200xg) + 2H;O The average bond energies of…
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Q: Given the following reaction 2NO(g) + O2(g) --> 2NO2(g) ΔH(rxn) = -114.2 kJ If ΔHf…
A: Given: 2NO(g) + O2(g) --> 2NO2(g) ΔH(rxn) = -114.2 kJ If ΔHf NO2 = +33.2 kJ/mol
Q: Calculate AH° for the following reaction 3 Fez03(s) + CO(g) → 2 Fe3O4(s) + CO2(g). Species AH°F,…
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Q: Using the table of average bond energies below, the AH for the reaction is kJ. C=O (g) + 2H2 (g) -…
A: Given,
Q: Calculate the ΔH for the reaction: CS2 (l) + 2 O2(g) CO2 (g) + 2 SO2 (g) Given: ΔHfCO2 (g) = - 393.5…
A: Given data contains, ΔHfCO2 (g) = - 393.5 kJ/mol; ΔHfSO2 g= -296.8 kJ/mol; ΔHfCS2 (l) = 87.9kJ/mol…
Q: Calculate the ΔH for the following reactions: A- Mg (s) + C (s, graphite) + 3/2 O2 (g) > MgCO3 (s)…
A: Calculate the ΔH for the following reactions:
Q: JA H;º of H2O(1) is -285.8 kJ/mol. calculate A H° of MgO. The relevant reactions for these two heats…
A: Heat of formation: For the heat of formation of compound from its stable elemental state, the…
Q: 6. Calculate A,G° for the reaction below at 25.0 °C CS2(g) + 3 Cl2(g) → S2Cl2(g) + CCL4(g) given…
A: Given, Temperature = 25.0oC = 298K. ∆rHo = -231.1kJ/mol. ∆rSo = -287.6J/K.mol.
Q: Using the appropriate bond energies, calculate the heat of reaction AH for the following reaction:…
A: Interpretation: We have to find the bond energy for the given reaction.
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Q: Determine Delta H for the following reaction: Mg (S) + 1/2 O2 (G) ----> MgO (S) Given: H2 (G)…
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A: Standard heat of a reaction ( ΔH0rxn ) can be found out using bond enthalpies. ΔH0rxn = Σ…
Q: Given that S(g) + O2(g) → SO2(g) A,G° = -300.1 kJ/mol-rxn 2 S(g) + 3 O2(g) → 2 SO3(g) A,G° = -742.1…
A: Given,
Q: C4H2O4²- + H2O C4H¾O5²- C4H4Og²- AG° = -3.25 kJ/mol (a) Since AG> 0, Keq is less than 1, and the…
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Q: Given the following data: 4NO(g) + 6H2O(g) → 4NH3(g) + 5O2(g) ΔH = 906.2 kJ 2NH3(g) → N2(g) +…
A: As per the question, given reactions are mentioned below:
Q: 9. One method for making ethanol, C2H5OH, involves the gas-phase hydration of ethylene, C Estimate…
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Q: For which reaction is ΔG° expected to be closest to ΔH°? N2(g) + 3H2(g) ⇄ 2NH3(g) H2O(ℓ) ⇄ H2O(s)…
A: To find the reaction which will have ΔG° closest to ΔH°.
Q: ∆H rxn
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Q: Given the reaction: N2(g) + 2 O2lg) N204(g) Delta H = +9.66 kJ ---> What is Delta H for the reaction…
A: We will bring the reaction to the required form and then predict value of ∆H .
Q: lculate ∆H for the reaction 4NH3 (g) + 5O2 (g) → 4NO (g) + 6H2O (g), from the following data. 1. N2…
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Q: Using the given bond dissociation energies, calculate AH° xn for the following reaction: 2 H- CI(g)…
A: Given reaction: 2 H-Cl (g) + Br-Br (g) → 2 H-Br (g) + Cl-Cl (g) Given bond energies: H-Cl = 427…
Q: What is the ΔH for the reaction below? C2H2(g) + 3 H2O(l) → CH4(g) + O2(g) + CH3OH(l)…
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Q: Calculate ∆Horxn for the following reaction 2H2O2(l) 2H2O(l) + O2(g) given that…
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Q: 2 OF2(g) + 2 S(s) → SO2(g) + SF4(g) OF2(g) + H2O(l) → O2(g) + 2 HF(g) ΔH = – 78.5 kJ…
A: Given, OF2(g) + H2O(s) → O2(g) + 2HF(g) ∆H =-78.5 kJ --------------- (1)…
Q: Find the ΔH for the reaction below, given the following reactions and subsequent ΔH values: N2(g)…
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Q: Using the appropriate bond energies, calculate the heat of reaction AH for the following reaction:…
A: ∆Hrxn = Bond energies of reactants – Bond energies of products. 2H-Cl + Br-Br → 2H-Br + Cl-Cl…
Q: Calculate ΔH for this reaction: 2N2 (g) + 5O2 (g) => 2N2O5(g) Using the following three…
A: Hess's law: It states that the total amount of heat absorbed or released for a given chemical…
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A: CH2=CH2. + HBr --> CH2(Br)CH3
Q: Calculate G°rrxn for the reaction below at 25.0 °C NH4CI(s) HCI(g) + NH3(g) given G°f [NH4CI(s)] =…
A: Free energy of reaction :- The standard free energy change ( G°rxn ) of a chemical reaction…
Q: kJ. Using the table of average bond energies below, the AH°F for the reaction is Bond: C=C 839 C-C…
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Q: Find the ∆H for the reaction below, given the following reactions and subsequent ∆H values: H2SO4…
A: To calculate ∆H for the reaction H2SO4 (l) → SO3 (g) + H2O (g) we need to rewrite equation 1, 2 and…
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A: Answer to the following question can be written as:
Q: 6. Calculate the formation enthalpy (AHform) for benzene (C¿Hs). Is this reaction endothermic or…
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Q: Using the appropriate bond energies, calculate the heat of reaction AH for the following reaction:…
A: B.E (H-H ) = 436 KJ/mole B.E(Br-Br) = 193 KJ/mole B.E (H-Br) = 366 KJ/mole
Q: Calculate DS°, for the following reaction. The S° for each species is shown below rxn the reaction.…
A: Given reaction is P4(g) + 10 Cl2(g) ------> 4 PCl5(g) Given S° values are Compound S°…
Q: Find the ΔH for the reaction below, given the following reactions and subsequent ΔH values: FeO(s)…
A: Solution: From the Hess's law total enthalpy chage of reaction is the sum of all chages e.i the sum…
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Q: Using the appropriate bond energies, calculate the heat of reaction AH for the following reaction:…
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Q: Use the reactions below to determine AHrxn of the reaction: PCI5(g) → PCI3(g) + C12(g). * P4(s) +…
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Q: Calculate the value of ∆H for the following reaction given this additional information; Al (s) +…
A: The expression for change in enthalpy is shown below: ∆H=Σn∆Hfproducts -Σm∆Hfreactants where;…
Q: Which of the following reactions will release the most energy? Group of answer choices CH4(l) +…
A: ∆ Hrxn = ∆o Hproduct - ∆o Hreactant
Q: Calculate AH° for the following reaction 3 Fe2O3(3) + CO(g) → 2 Fe3O4(s) + CO2(g). Species |AH"f, k…
A: Calculate change in enthalpy of the given reaction---
Q: Using the appropriate bond energies, calculate the heat of reaction AH for the following reaction:…
A:
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- Calculate the ∆Hrxn for the reaction below: MgCl2 (aq) + 2 KOH (aq) ---> Mg(OH)2 (s) + 2 KCl (aq) ∆Hfo for MgCl2 (aq) = -797.1 kJ/mol ∆Hfo for KOH (aq) =-424.2 kJ/mol ∆Hfo for Mg(OH)2 (s) = -924.7 kJ/mol ∆Hfo for KCl (aq) = -419.6 kJ/mol ∆Hrxno = ? kJ Don't forget the sign and write your 4 significant figures.Calculate ∆Hrxn for the following reaction:N2H4(l) + CH4O(l) → CH2O(g) + N2(g) + 3H2(g)Use the following reactions and given ∆H values.2 NH3(g) → N2H4(l) + H2(g) ΔH = +22.5 kJ/molN2(g) + 3 H 2(g) → 2 NH3(g) ΔH = +57.5 kJ/molCH2O(g) + H2(g) → CH4O(l) ΔH = +81.2 kJ/molCalculate ΔS°rxn for the following reaction. The S° for each species is shown below the reaction. C2H2(g) + H2(g) → C2H4(g) S°(J/mol∙K) 200.9 130.7 219.3
- For which reaction below would you expect to have the largest orientation factor (p)?(a) N2(g) + 3 H2(g) → 2 NH3(g)(b) O3(g) + O(g) → 2 O2(g)(c) CH3OH(l) + HCl(g) → CH3Cl(l) + H2O(l)(d) 4 NH3(g) + 5 O2(g) → 4 NO(g) + 6 H2O(g)Using the table of average bond dissociation enthalpies at 25°C, determine which of the following reactions are energetically favorable at room temperature. Assume that ▲S = 0. Q. CH2=CH2 + (CH3)3SiH --> CH3CH2Si(CH3)3Calculate △G° for the equilibrium reaction below. Given: CH3NH2(aq)+H2O(l)-->CH3NH3+(aq)+-OH(aq) Kb @25°C=4.4x10-4
- Using the table of average bond dissociation enthalpies at 25°C, determine which of the following reactions are energetically favorable at room temperature. Assume that ▲S = 0. Q.CH2=CH2 + 2H2 + N2 --> H2NCH2CH2NH2From the enthalpies of reaction2 C1s2 + O21g2¡ 2 CO1g2 ΔH = -221.0 kJ2 C1s2 + O21g2 + 4 H21g2¡ 2 CH3OH1g2 ΔH = -402.4 kJcalculate ΔH for the reactionCO1g2 + 2 H21g2¡CH3OH1g2Calculate ΔrHΔrH for the following reaction:CaO(s)+CO2(g)→CaCO3(s)Use the following reactions and given ΔrH's.Ca(s)+CO2(g)+12O2(g)→CaCO3(s)ΔrH= -812.8 kJmol−12Ca(s)+O2(g)→2CaO(s) ΔrH= -1269.8 kJmol−1
- What are the reagents used and why? (Options for each reaction below) Can you please explain thoroughly how they affect the reactions and when they should be used? Options for a) MCPBA H202,NaOH Conc H2S04, heat HC(triple bond)CNa BH3THF NaOET NBS, heat Options for b) BH3THf MCPBA PCC, CH2CL2 H202,NaOH Conc. H2SO4, heat HC(triple bond)CNa Options for c) Conc. H2S04, heat MCPBA H2O2, NaOH HC(triple bond)CNa NBS, heat PCC, Ch2Cl2Which of the following reactions will release the most energy? Group of answer choices CH4(l) + O2(l) -> CO2(g) + 2H2O(g) CH4(l) + O2(l) -> CO2(l) + 2H2O(l) CH4(g) + O2(g) -> CO2(l) + 2H2O(l) CH4(g) + O2(g) -> CO2(g) + 2H2O(g)Really hoping for solutions since I’m having a hard time with this. Pls. skip if unsure or not willing to answer the subitems (these are all connected for one item). Thanks in advanced. A kinetics experiment was performed for the formation of a novel compound, UNO, from its reactants, Chemicals G, R, A, D, and E. The first six runs (Runs 1-6) were all performed at 301 K, while the next two runs (Runs 7-8) at varying temperatures. These are tabulated in the table shown below. Table 1. Reaction rate for the reaction of the different chemicals at a given concentration at 301 K. Run [G], M [R], M [A], M [D], M [E], M Rate, M/s 1 0.80 0.01 0.20 0.50 2.00 0.180 2 0.80 0.02 0.20 0.50 0.02 3.54 x 10-3 3 0.80 0.01 0.20 0.50 0.02 1.80 x 10-3 4 0.80 0.01 0.60 0.50 0.02 1.80 x 10-3 5 1.20 0.01 0.20 0.50 0.02 4.02 x 10-3 6 0.80 0.01 0.20 0.15 0.02 1.95 x 10-2 a. Calculate the rate order of each chemical and overall rate order of the…