In photosynthesis, plants form glucose (C 6 H 1 2 O 6 ) and oxygen from carbon dioxide and water. Write a balanced equation for photosynthesis and calculate Δ H rxn ° , Δ S rxn ° and Δ G rxn ° , and Δ G rxn ° at 25°C. Is photosynthesis spontaneous?
In photosynthesis, plants form glucose (C 6 H 1 2 O 6 ) and oxygen from carbon dioxide and water. Write a balanced equation for photosynthesis and calculate Δ H rxn ° , Δ S rxn ° and Δ G rxn ° , and Δ G rxn ° at 25°C. Is photosynthesis spontaneous?
Solution Summary: The author explains that the balanced equation for the photosynthesis and H rxn 0,. s.r.x.n = 2802.68 kJ. If the free energy change is less
In photosynthesis, plants form glucose (C6H12O6) and oxygen from carbon dioxide and water. Write a balanced equation for photosynthesis and calculate
Δ
H
rxn
°
,
Δ
S
rxn
°
and
Δ
G
rxn
°
, and
Δ
G
rxn
°
at 25°C. Is photosynthesis spontaneous?
At 0oC and 1 atm, the viscosity of hydrogen (gas) is 8.55x10-5 P. Calculate the viscosity of a gas, if possible, consisting of deuterium. Assume that the molecular sizes are equal.
Indicate the correct option for the velocity distribution function of gas molecules:a) its velocity cannot be measured in any other way due to the small size of the gas moleculesb) it is only used to describe the velocity of particles if their density is very high.c) it describes the probability that a gas particle has a velocity in a given interval of velocitiesd) it describes other magnitudes, such as pressure, energy, etc., but not the velocity of the molecules
Indicate the correct option for the velocity distribution function of gas molecules:a) its velocity cannot be measured in any other way due to the small size of the gas moleculesb) it is only used to describe the velocity of particles if their density is very high.c) it describes the probability that a gas particle has a velocity in a given interval of velocitiesd) it describes other magnitudes, such as pressure, energy, etc., but not the velocity of the molecules
Chapter 19 Solutions
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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