(a)
Interpretation:
For the given processes, whether
Concept Introduction:
Entropy is a
(b)
Interpretation:
For the given processes, whether
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. For all spontaneous process in an isolated system there will be an increase in entropy. Let us consider the example of diffusion of gas molecule to understand the concept of entropy. When a perfume bottle is opened the fragrance is immediately spread into the surroundings. Inside the bottle the gas molecules are close to each other and entropy is less. Once the bottle is opened the gas molecules escapes into the surroundings and have more disorderly arrangements.
(c)
Interpretation:
For the given processes, whether
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. For all spontaneous process in an isolated system there will be an increase in entropy. Let us consider the example of diffusion of gas molecule to understand the concept of entropy. When a perfume bottle is opened the fragrance is immediately spread into the surroundings. Inside the bottle the gas molecules are close to each other and entropy is less. Once the bottle is opened the gas molecules escapes into the surroundings and have more disorderly arrangements.
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Chemistry: Atoms First
- Describe each highlighted bond in terms of the overlap of atomic orbitals. (a) Н Н H H [References] HIC H H C H H-C-CC-N: H σ character n character (b) HIC H H H H-C-C-C HIC H Н H O-H σ character n character Submit Answer Try Another Version 3 item attempts remainingarrow_forward11 Naming and drawing alcohols Write the systematic (IUPAC) name for each of the following organic molecules: structure OH HO OH Explanation Check name ☐arrow_forwardwhat is the drawn mechanism for diethyl carbonate and 4 - bromo - N, N -dimethylaniline to create crystal violet?arrow_forward
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- Don't used Ai solutionarrow_forwardPart 3: AHm,system Mass of 1.00 M HCI Vol. of 1.00 M HCI Mass of NaOH(s) Total Mass in Calorimeter Mole product if HCI limiting reactant Trial 1 62.4009 1.511g Mole product if NaOH limiting reactant Limiting reactant Initial Temperature Final Temperature 23.8°C 37.6°C Change in Temperature AHm,system (calculated) Average AHm,system (calculated) (calculated) (calculated) Trial 2 64.006g 1.9599 (calculated) (calculated) (calculated) (calculated) (calculated) (calculated) 24.7°C 41.9°C (calculated) (calculated) (2 pts. each)arrow_forwardDon't used Ai solutionarrow_forward
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