
1.) The value of
S° for the oxidation of carbon to carbon dioxide,
is __________ J/K
mol. The combustion of carbon, as in charcoal briquettes, in the
presence of abundant oxygen produces carbon dioxide.
2.)The value of
S° for the reaction
is __________ J/K.
3.)The value of
S° for the decomposition of gaseous sulfur dioxide to solid
elemental sulfur and gaseous oxygen,
is __________ J/K
mol.
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1.) The value of S° for the oxidation of carbon to carbon dioxide, is __________ J/K...
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Cis. Thermodynamic Quantities for Selected Substances at 298.15 K (25°C) AHºf AG°f S (J/K- Substance KkJ/mol KkJ/mol mol) C(s. 1.88 2.84 2.43 diamond) lo 6 5.69 graphite) C2H2(8) 226.7 209.2 200.8 C2H4 (8) 52.30 68.11 219.4 C2H6 (g) -84.68 -32.89 229.5 CO(g) - 110.5 -137.2 197.9 CO2(g) -393.5 394.4 213.6 H2(g) 130.58 O2 (g) 0 205.0 H20 (1) 285.83 -237.13 69.91 0 The combustion of acetylene in the presence of excess oxygen yields carbon dioxide and...
Use the table below to answer question 1. Thermodynamic Quantities for Selected Substances at 298.15 K (25 °C) Substance AHºf (kJ/mol) AG°f (kJ/mol) S (J/K-mol) 2.84 2.43 Sige Carbon C(s, diamond) 1.88 C(s, graphite) 0 C2H2 (g) 226.7 C2H4 (g) 52.30 C2H6 (g) -84.68 CO(g) -110.5 CO2 (g) -393.5 209.2 68.11 -32.89 -137.2 -394.4 5.69 200.8 219.4 229.5 197.9 213.6 Hydrogen H2(g) 0 0 130.58 Oxygen O2 (g) H20 (1) 205.0 69.91 -285.83 -237.13 1) The combustion of acetylene in...
Use the table below to answer the question that follow. Thermodynamic Quantities for Selected Substances at 298.15K (25°C) Substance AHºf (kJ/mol) AG°f (kJ/mol) S (J/K mol) Carbon C (s, diamond) 1.88 2.84 2.43 C(s, graphite) 0 5.69 C2H2 (9) 226.7 209.2 200.8 C2H4 (9) 52.30 68.11 219.4 C2H6 (9) -84.68 -32.89 229.5 CO (9) -110.5 -137.2 197.9 CO2 (9) -393.5 -394.4 213.6 Hydrogen H2(g) 0 0 130.58 Oxygen 02 (9) 0 0 205.0 H₂O (1) -285.83 -237.13 69.91 The combustion...
Thermodynamic Quantities for Selected Substances at 298.15 K (25 °C) Substance AHºf (kJ/mol) AG°f (kJ/mol) S (J/K-mol) Oxygen O2 (g) H20 (1) 0 -285.83 205.0 69.91 -237.13 10 CHCOOH 0 Sulfur S (s, rhombie) 0 SO2(g) -269.9 SO3(g) -395.2 -300.4 31.88 248.5 256.2 OM-370.4 FASO for the decomposition of gaseous sulfur trioxide to solid elemental sulfur 3. The value of ASº for the d and gaseous oxygen, 2503 (g) → 28 (s, rhombie) + 302 (g) J/K. mol. (show your...
Use the table below to answer the questions that follow. Enhemuandin Thermodynamic Quantities for Selected Substances at 298.15 K (25°C) Substance Carbon Δ 1°f(kJ/mol) ΔGof(kJ/mol) S(J/K-mol) 2.84 0 209.2 2.43 5.69 200.8 219.4 229.5 197.9 213.6 C (s, diamond) 1.88 C (s, graphite) C2H2 (g) C2H4 (g) C2H6 (g) CO (g) co2 (g) 226.7 52.30 -84.68 -110.5 393.5 68.11 32.89 -137.2 -394.4 Hydrogen H2( g) 130.58 Oxygen 205.0 69.91 O2 (g) 0 -237.13 H20 1) -285.83 9) The value ofSo...
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Gaseous methane (CH) will react with gaseous oxygen (o2) to produce gaseous carbon dioxide (co2) and gaseous water (H,o). Suppose 0.321 9 of methane is mixed with 0.35 g of oxygen. Calculate the maximum mass of carbon dioxide that could be produced by the chemical reaction. Round your answer to 2 significant digits. -109 Explanation Check We were unable to transcribe this imageWe were unable to transcribe this image
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1/1 pts Question 12 Thermodynamic Quantities for Selected Substances at 298.15 K (25°C) Substance ΔΗ°F (kJ/mol) AGOF (kJ/mol S (J/K- mol) 1.88 2.84 2.43 5.69 C (s, diamond) C(s. graphite) C2H2(g) C2H4 (8) C2H6 (g) CO(g) CO2 (g) H2(g) O2(g) H2O(0) 226.7 52.30 -84.68 -110.5 -393.5 0 0 -285.83 209.2 200.8 68.11 219.4 -32.89 229.5 -137.2 197.9 -394.4 213.6 0 130.58 0 205.0 -237.13 69.91 The value of AH°for the catalytic hydrogenation of acetylene to ethane,...
Determine
S°rxn for Zn (s) + 2HCl (aq)
ZnCl2 (aq) + H2 (g).
Substance
S° (J/mol ⋅ K)
Zn(s)
60.9
HCl(aq)
56.5
H2(g)
130.58
Zn2+(aq)
−106.5
Cl−(aq)
55.10
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answer to both questions. Thank you!
Incorrect Question 19 0/1 pts The value of A Sº for the catalytic hydrogenation of acetylene to ethene, C2H2(g) + H2(g) →C2H4 (g) is_ J/K.mol. Use the following thermodynamic quantities for selected substances at 298.15 K (25°C). Substance AHºf (kJ/mol) AG°f (kJ/mol) S (J/K-mol) 2.84 Carbon C(s, diamond) 1.88 C(s, graphite) 0 C2H2(g) 226.7 C2H4 (g) 52.30 C2H6 (g) -84.68 CO(g) -110.5 CO2 (g) -393.5 209.2 68.11 -32.89 -137.2 -394.4...
We consider two phases of solid carbon: diamond and graphite, with S0diamond= 2.44 J/(K ∙ mol) and S0 graphite = 2.3 ∙ S0diamond . Which of the two carbon modifications is more stable if we establish a thermal equilibrium between them in an isolated system?