The identity of the alkaline earth metal chloride has to be revealed. Concept introduction: The non-spontaneous reaction takes place in an electrolytic cell in which there occurs conversion of electrical energy into chemical energy and this is used for the electrolysis of a metal. The charge generated in the cell is calculated as, Q = I t When electricity is passed through an electrolytic cell, at that time the amount of the substance that is liberated at an electrode is given by, W = Z Q = Z I t The value of Z is given as, Z = Atomic mass n × 96 , 485 The mass of metal is calculated by multiplying the moles of metal with its atomic molar mass. This gives the mass of the metal to be plated out in the electrolytic cell. To determine: The identity of the alkaline earth metal chloride liberated at cathode due to electrolysis process for a given current for a given period of time
The identity of the alkaline earth metal chloride has to be revealed. Concept introduction: The non-spontaneous reaction takes place in an electrolytic cell in which there occurs conversion of electrical energy into chemical energy and this is used for the electrolysis of a metal. The charge generated in the cell is calculated as, Q = I t When electricity is passed through an electrolytic cell, at that time the amount of the substance that is liberated at an electrode is given by, W = Z Q = Z I t The value of Z is given as, Z = Atomic mass n × 96 , 485 The mass of metal is calculated by multiplying the moles of metal with its atomic molar mass. This gives the mass of the metal to be plated out in the electrolytic cell. To determine: The identity of the alkaline earth metal chloride liberated at cathode due to electrolysis process for a given current for a given period of time
Solution Summary: The author explains the non-spontaneous reaction in an electrolytic cell in which there occurs conversion of electrical energy into chemical energy and this is used for the electrolysis of a metal.
The identity of the alkaline earth metal chloride has to be revealed.
Concept introduction:
The non-spontaneous reaction takes place in an electrolytic cell in which there occurs conversion of electrical energy into chemical energy and this is used for the electrolysis of a metal.
The charge generated in the cell is calculated as,
Q=It
When electricity is passed through an electrolytic cell, at that time the amount of the substance that is liberated at an electrode is given by,
W=ZQ=ZIt
The value of
Z is given as,
Z=Atomicmassn×96,485
The mass of metal is calculated by multiplying the moles of metal with its atomic molar mass. This gives the mass of the metal to be plated out in the electrolytic cell.
To determine: The identity of the alkaline earth metal chloride liberated at cathode due to electrolysis process for a given current for a given period of time
Propose an efficient synthesis for the following transformation:
EN
The transformation above can be performed with some reagent or combination of the reagents listed below. Give the necessary
reagents in the correct order, as a string of letters (without spaces or punctuation, such as "EBF"). If there is more than one correct
solution, provide just one answer.
A. t-BuOK
B. Na2Cr2O7, H2SO4, H2O
C. NBS, heat
F. NaCN
D. MeOH
E. NaOH
G. MeONa
H. H2O
I. 1) O3; 2) DMS
Stereochemistry
Identifying the enantiomer of a simple organic molecule
1/5
Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the none of t
above box under the table.
Br
ま
HO
H
0
Molecule 1
Molecule 2
Molecule 3
OH
H
Br
H
H"
Br
OH
Br
Molecule 4
Br
H
OH
+ +
OH
Molecule 5
Br
H
OH
none of the above
Molecule 6
Br
H...
OH
Please answer the questions and provide detailed explanations.
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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