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Calculate the heat of formation of methane (CH4) given the following values: - The standard enthalpy of combustion of methane is -890.3 kJ/mol- The bond energies are as follows: C-H = 413 kJ/mol and C-C = 348 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
AleciaAlleyn
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1.5k
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0
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1
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47
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Calculate the heat of formation of methane (CH4) given the following thermochemical equations and standard heats of formation:2H2 (g) + O2 (g) → 2H2O (l) ΔH° = -572 kJ/molC (s) + O2 (g) → CO2 (g) ΔH° = -393.5 kJ/molNote: The standard heat of formation of CH4 is -74.8 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
DominickPlum
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2.5k
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1
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68
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Calculate the heat of formation of methane (CH4) given the following bond energy values: C-H bond energy = 413 kJ/mol and C-C bond energy = 348 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
Clint1927671
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1.7k
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0
votes
1
answer
75
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Calculate the heat of formation of methane (CH4) given the enthalpies of formation of H2(g) = 0 kJ/mol and CH3(g) = 120.6 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
DieterSchrod
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1.9k
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0
votes
1
answer
51
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Calculate the heat of formation of carbon dioxide gas (CO2) given the following bond energies: C=O bond energy is 799 kJ/mol and C-O bond energy is 358 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
VanceW838771
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1.9k
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0
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1
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51
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Calculate the heat of formation of carbon dioxide (CO2) using the following information: The heat of formation of carbon monoxide (CO) is -110.5 kJ/mol and the heat of formation of water (H2O) is -285.8 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
CaitlynTulab
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1.2k
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0
votes
1
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62
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Calculate the heat of formation of carbon dioxide (CO2) given the following information: heat of formation of C(graphite) = 0 kJ/mol, heat of formation of O2(g) = 0 kJ/mol, and heat of combustion of graphite = -393.5 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
CorrinePerre
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2.1k
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0
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1
answer
63
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Calculate the heat of formation of a water molecule from its elements, hydrogen and oxygen gas, given that the standard enthalpy of formation of hydrogen gas is -285.8 kJ/mol and the standard enthalpy of formation of oxygen gas is 0 kJ/mol. Show all your work and explain what the resulting sign of the enthalpy of formation means in terms of the stability of the water molecule.
asked
Jan 23
in
Chemical bonding
by
KaraTva8370
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2.3k
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0
votes
1
answer
74
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Calculate the heat of formation for the compound methane (CH4) given that the enthalpy change for the reaction of carbon (C) with hydrogen gas (H2) to form methane gas (CH4) is -74.8 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
MarcyLowrie
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2.3k
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0
votes
1
answer
56
views
Calculate the heat of formation (ΔHf) of methane (CH4) given the following bond energies: C-C = 347 kJ/mol, C-H = 413 kJ/mol.
asked
Jan 23
in
Chemical bonding
by
JaninaStroh
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2.1k
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0
votes
1
answer
59
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Calculate the heat of formation (∆Hf) of water (H2O) given the following reactions and their respective heats of reaction (∆Hr):2H2(g) + O2(g) → 2H2O(g); ∆Hr = -484 kJ/mol ½ O2(g) + H2(g) → H2O(l); ∆Hr = -285.8 kJ/mol Note: The heat of formation is the amount of heat released or absorbed when one mole of a compound is formed from its elements in their standard states.
asked
Jan 23
in
Chemical bonding
by
SelmaHartsoc
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1.8k
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0
votes
1
answer
56
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Calculate the heat of crystallization, in kilojoules per mole, when 50.0 grams of sodium hydroxide (NaOH) is dissolved in 500.0 grams of water at 25⁰C and then cooled to 5⁰C, assuming that all the heat evolved during the process is transferred to the solution. The heat capacity of water is 4.18 J/gK, and the enthalpy of formation of NaOH is -425 kJ/mol.
asked
Jan 23
in
ThermoChemistry
by
OliverOtis4
(
2.3k
points)
0
votes
1
answer
61
views
Calculate the heat of crystallization when 10.0 g of sodium acetate trihydrate (NaCH3COO.3H2O) is dissolved in 100.0 mL of water at 25°C and the solution is allowed to cool to 15°C. The specific heat capacity of the solution is 4.18 J/g °C and the density of the solution is 1.0 g/mL. The heat of solution of sodium acetate trihydrate is -7126 J/mol.
asked
Jan 23
in
ThermoChemistry
by
JeremiahMoli
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1.7k
points)
0
votes
1
answer
62
views
Calculate the heat of crystallization of NaOH given that 10 grams of NaOH dissolves in 100 mL of water at 25°C and the resulting solution is cooled to 0°C. The enthalpy of solution of NaOH is -44.5 kJ/mol, and the density of the resulting solution is 1.1 g/mL.
asked
Jan 23
in
ThermoChemistry
by
TamikaCarril
(
2.2k
points)
0
votes
1
answer
68
views
Calculate the heat of crystallization of NaCl if 1786 kJ of heat is released when 5.00 moles of NaCl form from its elements in their standard states.
asked
Jan 23
in
ThermoChemistry
by
ArnulfoWall
(
1.5k
points)
0
votes
1
answer
53
views
Calculate the heat of crystallization of 5 moles of calcium chloride, given that the enthalpy change of hydration of calcium ions is –1622 kJ/mol and that of chloride ions is –364 kJ/mol.
asked
Jan 23
in
ThermoChemistry
by
PeggyBednall
(
1.9k
points)
0
votes
1
answer
66
views
Calculate the heat of crystallization of 10 grams of sodium acetate trihydrate (NaC2H3O2•3H2O) when it is cooled from 50°C to 10°C and crystallizes. The specific heat capacity of water is 4.18 J/g°C. The molar mass of sodium acetate is 82.03 g/mol.
asked
Jan 23
in
ThermoChemistry
by
FawnSharrow
(
1.9k
points)
0
votes
1
answer
57
views
Calculate the heat of crystallization in kJ/mol of a substance, given that 100 g of it dissolved in water and cooled from 60°C to 20°C, releasing 5490 J of heat. The molar mass of the substance is 120 g/mol.
asked
Jan 23
in
ThermoChemistry
by
MargueriteSl
(
1.9k
points)
0
votes
1
answer
53
views
Calculate the heat of crystallization for the solidification of 25 grams of a solution containing 10% sucrose (C12H22O11) by mass. The enthalpy of solution for sucrose in water at a given temperature is -5.73 kJ/mol. The molar mass of sucrose is 342.3 g/mol. Assuming that the solution completely solidifies upon cooling, determine the energy released or absorbed in the process.
asked
Jan 23
in
ThermoChemistry
by
BrandieB8434
(
2.2k
points)
0
votes
1
answer
73
views
Calculate the heat of crystallization for NaCl from the given data:The enthalpy of fusion of NaCl = 28.3 kJ/mol and the heat capacity of NaCl is approximately constant at 40.0 J/mol.K for temperatures close to room temperature. The melting point of NaCl is 801 °C and the density of the solid NaCl is 2.16 g/cm³.
asked
Jan 23
in
ThermoChemistry
by
Samira94683
(
2.2k
points)
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