Using enthalpies of formation (Appendix C), calculate Δ H ° for the following reaction at 25°C. Also calculate Δ S ° for this reaction from standard entropies at 25°C. Use these values to calculate Δ G ° for the reaction at this temperature. 4 HCN ( l ) + 5 O 2 ( g ) → 2 H 2 O ( g ) + 4 CO ( g ) + 2 N 2 ( g )
Using enthalpies of formation (Appendix C), calculate Δ H ° for the following reaction at 25°C. Also calculate Δ S ° for this reaction from standard entropies at 25°C. Use these values to calculate Δ G ° for the reaction at this temperature. 4 HCN ( l ) + 5 O 2 ( g ) → 2 H 2 O ( g ) + 4 CO ( g ) + 2 N 2 ( g )
Solution Summary: The author explains that free energy is measured by subtracting the product of temperature and entropy from the entthalpy of a system.
Using enthalpies of formation (Appendix C), calculate ΔH° for the following reaction at 25°C. Also calculate ΔS° for this reaction from standard entropies at 25°C. Use these values to calculate ΔG° for the reaction at this temperature.
4
HCN
(
l
)
+
5
O
2
(
g
)
→
2
H
2
O
(
g
)
+
4
CO
(
g
)
+
2
N
2
(
g
)
The SN 1 mechanism starts with the rate-determining step which is the dissociation of the alkyl halide into a carbocation and a halide ion. The next step is
the rapid reaction of the carbocation intermediate with the nucleophile; this step completes the nucleophilic substitution stage. The step that follows the
nucleophilic substitution is a fast acid-base reaction. The nucleophile now acts as a base to remove the proton from the oxonium ion from the previous
step, to give the observed product. Draw a curved arrow mechanism for the reaction, adding steps as necessary. Be sure to include all nonzero formal
charges.
Cl:
Add/Remove step
G
Click and drag to start
drawing a structure.
Please correct answer and don't use hand rating
A monochromatic light with a wavelength of 2.5x10-7m strikes a grating containing 10,000 slits/cm. Determine the angular positions of the second-order bright line.
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