Using the value of change in entropy of the universe (ΔS univ ) , the nature of the given process has to be explained. Concept Introduction: Entropy is a thermodynamic quantity, which is the measure of randomness in a system. The term entropy is useful in explaining the spontaneity of a process. The second law of thermodynamics says that entropy of the universe is increasing. The change in entropy in the universe (ΔS univ ) is given by the summation of entropy change in the system (ΔS sys ) and surroundings (ΔS surr ) . ΔS univ =ΔS sys +ΔS surr ΔS sys associated with a phase transition reaction can be found by the following equation. ΔS sys = ΔΗ sys T Where, ΔΗ sys is the change in enthalpy of the system T is the absolute value of the temperature ΔS surr associated with a phase transition reaction can be found by the following equation. ΔS surr = -ΔΗ sys T
Using the value of change in entropy of the universe (ΔS univ ) , the nature of the given process has to be explained. Concept Introduction: Entropy is a thermodynamic quantity, which is the measure of randomness in a system. The term entropy is useful in explaining the spontaneity of a process. The second law of thermodynamics says that entropy of the universe is increasing. The change in entropy in the universe (ΔS univ ) is given by the summation of entropy change in the system (ΔS sys ) and surroundings (ΔS surr ) . ΔS univ =ΔS sys +ΔS surr ΔS sys associated with a phase transition reaction can be found by the following equation. ΔS sys = ΔΗ sys T Where, ΔΗ sys is the change in enthalpy of the system T is the absolute value of the temperature ΔS surr associated with a phase transition reaction can be found by the following equation. ΔS surr = -ΔΗ sys T
Solution Summary: The author explains that entropy is a thermodynamic quantity, which is useful in explaining the spontaneity of the process.
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
Chapter 17, Problem 17.81QP
Interpretation Introduction
Interpretation:
Using the value of change in entropy of the universe (ΔSuniv), the nature of the given process has to be explained.
Concept Introduction:
Entropy is a thermodynamic quantity, which is the measure of randomness in a system. The term entropy is useful in explaining the spontaneity of a process. The second law of thermodynamics says that entropy of the universe is increasing. The change in entropy in the universe (ΔSuniv) is given by the summation of entropy change in the system (ΔSsys) and surroundings (ΔSsurr).
ΔSuniv=ΔSsys+ΔSsurr
ΔSsys associated with a phase transition reaction can be found by the following equation.
ΔSsys=ΔΗsysT
Where,
ΔΗsys is the change in enthalpy of the system
T is the absolute value of the temperature
ΔSsurr associated with a phase transition reaction can be found by the following equation.
Comparison of experimental data to “known” value. Monna and co-workers used radioactive isotopes to date sediments from lakes and estuaries.21 To verify this method they analyzed a 208Po standard known to have an activity of 77.5 decays/min, obtaining the following results.
77.09, 75.37, 72.42, 76.84, 77.84, 76.69, 78.03, 74.96, 77.54, 76.09, 81.12, 75.75
Do the results differ from the expected results at the 95% confidence interval?
Explain the difference between the propagated uncertainty and the standard deviation. Which number would you use to describe the uncertainty in the measurement? if the standard deviation is 0.01 and the propagated uncertainty is 0.03
Propagation of uncertainty. Find the absolute and percent relative uncertainty assuming the ±-values are random error.
7.65±0.04 + 5.28±0.02 – 1.12±0.01
85.6±0.9 × 50.2±0.7 ÷ 13.8±0.5
[4.88±0.07 + 3.22±0.05] / 1.53±0.02
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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