The values of Δ H ∘ , temperature and pressure for the stated reactions are given. The value of Δ S surr is to be calculated in each case. Concept introduction: Entropy is the measure of degree of disorder or randomness. Entropy of surrounding ( Δ S surr ) decreases for endothermic process whereas, it increases for exothermic process.
The values of Δ H ∘ , temperature and pressure for the stated reactions are given. The value of Δ S surr is to be calculated in each case. Concept introduction: Entropy is the measure of degree of disorder or randomness. Entropy of surrounding ( Δ S surr ) decreases for endothermic process whereas, it increases for exothermic process.
Solution Summary: The author explains the entropy of the surrounding left decreases for endothermic process whereas, it increases for exotherm.
Interpretation: The values of
ΔH∘, temperature and pressure for the stated reactions are given. The value of
ΔSsurr is to be calculated in each case.
Concept introduction: Entropy is the measure of degree of disorder or randomness. Entropy of surrounding
(ΔSsurr) decreases for endothermic process whereas, it increases for exothermic process.
(b)
Interpretation Introduction
Interpretation: The values of
ΔH∘, temperature and pressure for the stated reactions are given. The value of
ΔSsurr is to be calculated in each case.
Concept introduction: Entropy is the measure of degree of disorder or randomness. Entropy of surrounding
(ΔSsurr) decreases for endothermic process whereas, it increases for exothermic process.
20,0
Complete the electron pushing mechanism to
y drawing the necomery unicaciones and carved on for
Step 1: Add curved arms for the tint step, traiment with NalilĻ. The Nation
458
Step 2: Added for the second step, inalment with), how the "counterion
bar
Step 3: Daw the products of the last simplom organic and one incoganic spacient, including all nonbonding
please provide the structure for this problem, thank you!
Draw the Fischer projection from the skeletal
structure shown below.
HO
OH
OH
OH
OH H
Q
Drawing
Atoms, Bonds
and Rings
Charges
I
☐
T
HO
H
H
OH
HO
I
CH2OH
H
OH
Drag
H
OH
-CH2OH
CHO
-COOH
Undo
Reset
Remove
Done
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The Laws of Thermodynamics, Entropy, and Gibbs Free Energy; Author: Professor Dave Explains;https://www.youtube.com/watch?v=8N1BxHgsoOw;License: Standard YouTube License, CC-BY