The change in entropy of the system in the givenisothermal expansion and compressionis to be calculated. Concept introduction: Entropy is the direct measurement of randomness or disorderness. Entropy is an extensive property. It is a state function. Entropy of a system is a measure of how spread out or how dispersed the system’s energy is. Change in entropy of a system is the difference between the entropy of the final state and the entropy of theinitial state. Mathematically, the change in entropy of a system is represented as: Δ S s y s t e m = Δ S f i n a l − Δ S i n i t i a l The above expression is reduced to: Δ S s y s t e m = n R ln ( V f i n a l ) ( V i n i t i a l ) Here, n is the number of moles, R is the universal gas constant, V f i n a l is the finalvolume, and V i n i t i a l is the initial volume of the system. The entropy of a system and the entropy of the surroundings make up the entropy of the universe.
The change in entropy of the system in the givenisothermal expansion and compressionis to be calculated. Concept introduction: Entropy is the direct measurement of randomness or disorderness. Entropy is an extensive property. It is a state function. Entropy of a system is a measure of how spread out or how dispersed the system’s energy is. Change in entropy of a system is the difference between the entropy of the final state and the entropy of theinitial state. Mathematically, the change in entropy of a system is represented as: Δ S s y s t e m = Δ S f i n a l − Δ S i n i t i a l The above expression is reduced to: Δ S s y s t e m = n R ln ( V f i n a l ) ( V i n i t i a l ) Here, n is the number of moles, R is the universal gas constant, V f i n a l is the finalvolume, and V i n i t i a l is the initial volume of the system. The entropy of a system and the entropy of the surroundings make up the entropy of the universe.
Solution Summary: The author explains that the change in entropy of a system in the givenisothermal expansion and compression is to be calculated.
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Question 59 of 70
The volume of
1
unit of plasma is 200.0 mL
If the recommended dosage
for adult patients is 10.0 mL per kg of body mass, how many units are needed for
a patient with a body mass of 80.0
kg ?
80.0
kg
10.0
DAL
1
units
X
X
4.00
units
1
1
Jeg
200.0
DAL
L
1 units
X
200.0 mL
= 4.00 units
ADD FACTOR
*( )
DELETE
ANSWER
RESET
D
200.0
2.00
1.60 × 10³
80.0
4.00
0.0400
0.250
10.0
8.00
&
mL
mL/kg
kg
units/mL
L
unit
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19
Identify the starting material in the following reaction. Click the "draw structure" button to launch the
drawing utility.
draw structure ...
[1] 0 3
C10H18
[2] CH3SCH3
H
In an equilibrium mixture of the formation of ammonia from nitrogen and hydrogen, it is found that
PNH3 = 0.147 atm, PN2 = 1.41 atm and Pн2 = 6.00 atm. Evaluate Kp and Kc at 500 °C.
2 NH3 (g) N2 (g) + 3 H₂ (g)
K₂ = (PN2)(PH2)³ = (1.41) (6.00)³ = 1.41 x 104
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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