The time (in hours) to produce the given amount of metallic chromium by electrolytic reduction is to be determined. Concept introduction: According to the mole concept in terms of mass, the number of moles is the ratio of the mass of a substance to the molar mass of that substance. The formula is given as follows: number of moles = mass of substance molar mass of substance Charge can be calculated by using the relation given as follows: Q = n F Here, Q is the charge in coulomb (C) , n is the number moles of electrons transferred and F is the Faraday constant ( 1F = 96485 .340 J/V . mol e − ) . Electric current is defined as the rate of flow of electric charge. Electric current can be calculated by using the relation given as follows: I = Q t Here, I is the electric current in ampere (A) , Q is the charge in coulomb (C) and t is the time for which the electron current is passed.
The time (in hours) to produce the given amount of metallic chromium by electrolytic reduction is to be determined. Concept introduction: According to the mole concept in terms of mass, the number of moles is the ratio of the mass of a substance to the molar mass of that substance. The formula is given as follows: number of moles = mass of substance molar mass of substance Charge can be calculated by using the relation given as follows: Q = n F Here, Q is the charge in coulomb (C) , n is the number moles of electrons transferred and F is the Faraday constant ( 1F = 96485 .340 J/V . mol e − ) . Electric current is defined as the rate of flow of electric charge. Electric current can be calculated by using the relation given as follows: I = Q t Here, I is the electric current in ampere (A) , Q is the charge in coulomb (C) and t is the time for which the electron current is passed.
Solution Summary: The author explains that the time to produce the given amount of metallic chromium by electrolytic reduction is to be determined.
The time (in hours) to produce the given amount of metallic chromium by electrolytic reduction is to be determined.
Concept introduction:
According to the mole concept in terms of mass, the number of moles is the ratio of the mass of a substance to the molar mass of that substance. The formula is given as follows:
numberofmoles=massofsubstancemolarmassofsubstance
Charge can be calculated by using the relation given as follows:
Q=nF
Here, Q is the charge in coulomb (C), n is the number moles of electrons transferred and F is the Faraday constant (1F = 96485.340 J/V . mol e−).
Electric current is defined as the rate of flow of electric charge. Electric current can be calculated by using the relation given as follows:
I=Qt
Here, I is the electric current in ampere (A), Q is the charge in coulomb (C) and t is the time for which the electron current is passed.
Macmillan Learning
One of the molecules shown can be made using the Williamson ether synthesis. Identify the ether and draw the
starting materials.
А
со
C
Strategy: Review the reagents, mechanism and steps of the Williamson ether synthesis. Determine which of the molecules
can be made using the steps. Then analyze the two possible disconnection strategies and deduce the starting materials.
Identify the superior route.
Step 6: Put it all together.
Complete the two-step synthesis by selecting the reagents and starting materials.
C
1.
2.
Answer Bank
NaH
NaOH
NaOCH,
снен, сен, он
Сиси, Сне
(СН), СОН
(Сн, Св
Write the systematic name of each organic molecule:
structure
CH3
O
CH3-CH-CH-C-CH3
OH
HV.
CH3-C-CH-CH2-CH3
OH
CH3
O
HO—CH, CH–CH—C CH3
OH
오-오
name
X
G
☐
HI
Organic Functional Groups
Predicting the reactants or products of esterification
What is the missing reactant in this organic reaction?
HO
OH
H
+回
+ H₂O
60013
Naomi V
Specifically, in the drawing area below draw the skeletal ("line") structure of R.
If there is more than one reasonable answer, you can draw any one of them. If there is no reasonable answer, check the No
answer box under the drawing area.
No answer
Click and drag to start drawing a
structure.
Explanation
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell