The production of 1,4-dicyanobutane electrochemically and the further reduction of compound for its use in the production of nylon is given. The amount of current used to produce given amount of NC − ( CH 2 ) 4 − CN per hour is to be calculated. 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 = Molar mass n × 96 , 485 To determine: The amount of current used to produce given amount of NC − ( CH 2 ) 4 − CN per hour.
The production of 1,4-dicyanobutane electrochemically and the further reduction of compound for its use in the production of nylon is given. The amount of current used to produce given amount of NC − ( CH 2 ) 4 − CN per hour is to be calculated. 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 = Molar mass n × 96 , 485 To determine: The amount of current used to produce given amount of NC − ( CH 2 ) 4 − CN per hour.
Solution Summary: The author calculates the amount of current used to produce 1,4-dicyanobutane electrochemically and the further reduction of compound for its use in production of nylon.
The production of 1,4-dicyanobutane electrochemically and the further reduction of compound for its use in the production of nylon is given. The amount of current used to produce given amount of
NC−(CH2)4−CN per hour is to be calculated.
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=Molarmassn×96,485
To determine: The amount of current used to produce given amount of
NC−(CH2)4−CN per hour.
For which element is the 3d subshell higher in energy than that 4s subshell?
Group of answer choices
Zr
Ca
V
Ni
ii) Molecular ion peak
:the peak corresponding to the intact molecule (with a positive charge)
What would the base peak and Molecular ion peaks when isobutane is subjected
to Mass spectrometry? Draw the structures and write the molecular weights of
the fragments.
Circle most stable cation
a) tert-butyl cation
b) Isopropyl cation c) Ethyl cation. d) Methyl cation
6. What does a loss of 15 represent in Mass spectrum?
a fragment of the molecule with a mass of 15 atomic mass units has been lost during
the ionization Process
7. Write the isotopes and their % abundance of isotopes of
i) Cl
Choose a number and match the atomic number to your element on the periodic table. For your element, write each of these features on a side of your figure.
1. Element Name and symbol
2. Family and group
3. What is it used for?
4. Sketch the Valence electron orbital
5. What ions formed. What is it's block on the periodic table.
6. Common compounds
7. Atomic number
8. Mass number
9. Number of neutrons- (show calculations)
10. Sketch the spectral display of the element
11.Properties
12. Electron configuration
13. Submit a video of a 3-meter toss in slow-mo
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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