![OWLv2 with Student Solutions Manual eBook for Ebbing/Gammon's General Chemistry, 11th Edition, [Instant Access], 4 terms (24 months)](https://www.bartleby.com/isbn_cover_images/9781305864900/9781305864900_largeCoverImage.jpg)
(a)
Interpretation:
The cell potential (EMF) of given cell should be calculated at standard conditions by using Nernst equation.
Concept introduction:
Cell potential (EMF):
The maximum potential difference between two electrodes of voltaic cell is known as cell potential.
If standard reduction potentials of electrodes are given the cell potential (EMF) is given by,
Where,
Nernst equation:
The relationship between standard cell potential and cell potential at non standard conditions and the reaction quotient are given by Nernst equation it is,
Where,
(a)

Answer to Problem 19.146QP
The cell potential (EMF) of given voltaic cell is
Explanation of Solution
To calculate the cell potential (EMF) of given cell
The standard reduction potentials of (SRP) of Zinc and Silver are record from standard reduction potentials table and they are,
The most positive SQR is considering as cathode potential.
The SRP of electrodes are plugged in the bellow equation to give cell potential of given voltaic cell.
The cell potential (EMF) of given voltaic cell is
To calculate the cell potential (EMF) of given cell
Given:
Mass of
Mass of
Final volume of
Final volume of
To calculate the concentrations of
Molar mass of
Molar mass of
Taken mass and molar mass of
In this cell reaction, number of electrons transferred are 2
Faraday constant is
The calculated standard cell potential (EMF) of given voltaic cell, number of electron transferred in cell reaction, Faraday constant and calculated concentrations of ions are plugged in the above equation to give a cell potential (EMF) of given cell at non standard conditions.
The cell potential (EMF) of given cell at non-standard conditions is
The cell potential (EMF) of given cell was calculated at standard condition by using Nernst equation and it was found to be
(b)
Interpretation:
The free energy change of given voltaic cell should be calculated by using standard reduction potentials and cell potential of the cell should be explained, when doing given operations to the cell.
Concept introduction:
Free energy change:
In
Where,
(b)

Answer to Problem 19.146QP
Solution:
The free energy change of voltaic cell is
Explanation of Solution
To calculate the free energy change of given cell:
In this cell reaction number of electron transferred are 2
Faraday constant is
The calculated cell potential (EMF) of given voltaic cell and number of electron transferred in cell reaction and Faraday constant are plugged in the above equation to give a free energy change of given cell.
The free energy change of given cell reaction is
(c)
Interpretation:
The cell potential (EMF) of given cell should be explained in terms of concentration of
Concept introduction:
Nernst equation:
The relationship between standard cell potential and cell potential at standard conditions and the reaction quotient are given by Nernst equation it is,
Where,
(c)

Answer to Problem 19.146QP
The concentration of
Explanation of Solution
According to the Nernst equation, the concentration of makes changes in cell potential but in addition of
Hence, the concentration of
(d)
Interpretation:
The cell potential (EMF) of given cell should be explained in terms of electrode concentration.
Concept introduction:
Nernst equation:
The relationship between standard cell potential and cell potential at standard conditions and the reaction quotient are given by Nernst equation it is,
Where,
(d)

Answer to Problem 19.146QP
The cell potential would not affected by increasing mass of zinc electrode.
Explanation of Solution
The cell potential does not depended on mass of electrodes in voltaic cell.
Hence, the cell potential would not affected by increasing mass of zinc electrode.
(e)
Interpretation:
The cell potential (EMF) of given cell should be explained, when the addition of
Concept introduction:
Nernst equation:
The relationship between standard cell potential and cell potential at standard conditions and the reaction quotient are given by Nernst equation it is,
Where,
(e)

Answer to Problem 19.146QP
The addition of
Explanation of Solution
According to the Nernst equation, the addition of
Want to see more full solutions like this?
Chapter 19 Solutions
OWLv2 with Student Solutions Manual eBook for Ebbing/Gammon's General Chemistry, 11th Edition, [Instant Access], 4 terms (24 months)
- Fina x | Sign X Sign X lab: X Intro X Cop) X a chat x My x Grad xLaur x Laur x a sheg X S Shoj XS SHE X acmillanlearning.com/ihub/assessment/f188d950-dd73-11e0-9572-0800200c9a66/d591b3f2-d5f7-4983-843c-0d00c1c0340b/f2b47861-07c4-4d1b-a1ee-e7db27d6b4ee?actualCourseld=d591b3f2- 5 © Macmillan Learning Organic Chemistry Maxwell presented by Macmillan Learning For the dehydrohalogenation (E2) reaction shown, draw the Zaitsev product, showing the stereochemistry clearly. H H KOH Br EtOH Heat Select Draw Templates More Erase // C H Q Search hp Q2 Q Δ קו Resouarrow_forwardIs the structural form shown possible given the pKa constraints of the side chains?arrow_forwardon x Fina X Sign X Sign x lab X Intro X Cop X chat X My x Grac x Laur x Laur x ashes x S Shox S SHE x a eve.macmillanlearning.com/ihub/assessment/f188d950-dd73-11e0-9572-0800200c9a66/d591b3f2-d5f7-4983-843c-0d00c1c0340b/f2b47861-07c4-4d1b-a1ee-e7db27d6b4ee?actualCourseld=d591b3f2-c stions estion. ct each urces. +95 Macmillan Learning Draw the product formed by the reaction of potassium t-butoxide with (15,25)-1-bromo-2-methyl-1-phenylbutane (shown). Clearly show the stereochemistry of the product. H BH (CH3)3CO-K+ +100 H3CW (CH3)3COH +85 H3CH2C +95 ossible ↓ Q Search Select Draw Templates More C H 0 bp A Erase 2Q 112 Resouarrow_forward
- Identify the structure of the PTH derivative generated after two rounds of Edman degradation.arrow_forwardUse the data below from an electron impact mass spectrum of a pure compound to deduce its structure. Draw your structure in the drawing window. Data selected from the NIST WebBook, https://webbook.nist.gov/chemistry/ m/z Relative intensity 31 0.5 30 26 29 22 28 100 27 33 26 23 15 4 • You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. • In cases where there is more than one answer, just draw one. 妊 n ? Previous Nextarrow_forwardfor this question. Write the molecular formula for a compound with the possible elements C, H, N and O that exhibits a molecular ion at M+ = 98.1106. Exact Masses of the Most Abundant Isotope of Selected Elements Isotope Natural abundance (%) Exact mass 1H 99.985 1.008 12C 98.90 12.000 14N 99.63 14.003 160 99.76 15.995 Molecular formula (In the order CHNO, with no subscripts)arrow_forward
- PLEASE READ!!! I DONT WANT EXAMPLES, I DONT WANT WORDS OR PARAGRAPHS!!! PLEASE I UNDERSTAND THE BASICS BUT THIS IS AN EXCEPTION THAT EVEN THE INTERNET CANT HELP!!!! THIS IS THE THIRD TIME I'VE SENT THOSE QUESTIONS SO PLEASE DONT RESEND THE SAME STUFF, ITS NOT HELPING ME!!! I ALSO ALREADY TRIED TO DRAW THE MECHANISM MYSELF, SO IF ITS RIGHT PLEASE TELL ME OR TELL ME WHAT I HAVE TO CHANGE!!! First image: I have to SHOW (DRAWING) the mechanism (with arows and structures of molecules) NOT WORDS PLEASE! of the reaction at the bottom. Also I have to show by mecanism why the reaction wouldn't work if the alcohol was primary Second image: I have to show the mechanism (IMAGE) (with arrows and structures of the molecules) NOT WORDS PLEASE !! for the reaction on the left, where the alcohol A is added fast in one portion HOMEWORK, NOT EXAM!! ALL DETAILS ARE IN THE IMAGES PLEASE LOOK AT THE IMAGES, DONT LOOK AT THE AI GENERATED TEXT!!!arrow_forwardWrite the molecular formula for a compound with the possible elements C, H, N and O that exhibits a molecular ion at M+ = 85.0899. Exact Masses of the Most Abundant Isotope of Selected Elements Isotope Natural abundance (%) Exact mass 1H 99.985 1.008 12C 98.90 12.000 14N 99.63 14.003 160 99.76 15.995 Molecular formula (In the order CHNO, with no subscripts)arrow_forwardUse the data below from an electron impact mass spectrum of a pure compound to deduce its structure. Draw your structure in the drawing window. Data selected from the NIST WebBook, https://webbook.nist.gov/chemistry/ m/z Relative intensity 59 3.0 58 64 43 100 15 23 • You do not have to consider stereochemistry. •You do not have to explicitly draw H atoms. • In cases where there is more than one answer, just draw one. + n[] 85 // ? CH4 Previous Nextarrow_forward
- Write the molecular formula for a compound with the possible elements C, H, N and O that exhibits a molecular ion at M* = 128.0632. Exact Masses of the Most Abundant Isotope of Selected Elements Isotope Natural abundance (%) Exact mass 1H 99.985 12C 98.90 14N 99.63 160 99.76 Molecular formula 1.008 12.000 14.003 15.995 (In the order CHNO, with no subscripts)arrow_forwardCan I please get help with this? And can I please the lowest possible significant number?arrow_forwardWhat is the molar mass of a gas that takes three times longer to effuse than helium?arrow_forward
- Chemistry & Chemical ReactivityChemistryISBN:9781337399074Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningChemistry: Matter and ChangeChemistryISBN:9780078746376Author:Dinah Zike, Laurel Dingrando, Nicholas Hainen, Cheryl WistromPublisher:Glencoe/McGraw-Hill School Pub CoGeneral Chemistry - Standalone book (MindTap Cour...ChemistryISBN:9781305580343Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; DarrellPublisher:Cengage Learning
- Living By Chemistry: First Edition TextbookChemistryISBN:9781559539418Author:Angelica StacyPublisher:MAC HIGHERChemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage Learning



