Using data from this chapter, calculate the change inenergy expected for each of the following processes. a. Na( g )+Cl( g ) → Na + ( g )+Cl – ( g ) b. Mg( g )+F( g ) → Mg + ( g )+F – ( g ) c. Mg + ( g )+F( g ) → Mg 2+ ( g )+F – ( g ) d. Mg( g )+2F( g ) → Mg 2+ ( g )+2F – ( g )
Using data from this chapter, calculate the change inenergy expected for each of the following processes. a. Na( g )+Cl( g ) → Na + ( g )+Cl – ( g ) b. Mg( g )+F( g ) → Mg + ( g )+F – ( g ) c. Mg + ( g )+F( g ) → Mg 2+ ( g )+F – ( g ) d. Mg( g )+2F( g ) → Mg 2+ ( g )+2F – ( g )
Solution Summary: The author explains how energy change can be obtained from the sum of ionization energy and electron affinity.
Using data from this chapter, calculate the change inenergy expected for each of the following processes. a.
Na(
g
)+Cl(
g
)
→
Na
+
(
g
)+Cl
–
(
g
)
b.
Mg(
g
)+F(
g
)
→
Mg
+
(
g
)+F
–
(
g
)
c.
Mg
+
(
g
)+F(
g
)
→
Mg
2+
(
g
)+F
–
(
g
)
d.
Mg(
g
)+2F(
g
)
→
Mg
2+
(
g
)+2F
–
(
g
)
You have started a patient on a new drug. Each dose introduces 40 pg/mL of drug after redistribution and prior to elimination. This drug is administered at 24 h intervals and has a half life of 24 h. What will the concentration of drug be after each of the first six doses? Show your work
a. What is the concentration after the fourth dose? in pg/mL
b. What is the concentration after the fifth dose? in pg/mL
c. What is the concentration after the sixth dose? in pg/mL
None
identify the formal charge in the case.
below by indicating the magnitude,
sign, and location of the charge
magnitude and sign of formal charge
location of formal charge (atom
number):
N
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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