
(a)
Interpretation:
The full set of possible quantum numbers for the outermost electron in
Concept introduction:
The electrons in the outermost occupied shell that determine the chemical properties of the elements are called the outermost electrons.
The quantum numbers provide complete information about the electron. There are four quantum numbers as follows:
1. The principal quantum number and it is represented by n. It tells about the shell to which the electron belongs.
2. The azimuthal quantum number and it is represented by l. It tells about the subshell of the electrons.
3. The magnetic quantum number and it is represented by
4. The spin quantum number and it is represented by
(a)

Answer to Problem 8.21P
The possible quantum numbers for the outermost electron in
Explanation of Solution
The
Its outermost electron enters in the
The possible quantum numbers for the outermost electron in
(b)
Interpretation:
The full set of possible quantum numbers for the electron gained when an
Concept introduction:
The quantum numbers provide complete information about the electron. There are four quantum numbers as follows:
1. The principal quantum number and it is represented by n. It tells about the shell to which the electron belongs.
2. The azimuthal quantum number and it is represented by l. It tells about the subshell of the electrons.
3. The magnetic quantum number and it is represented by
4. The spin quantum number and it is represented by
(b)

Answer to Problem 8.21P
The possible quantum numbers for the electron gained when an
Explanation of Solution
The atomic number of sulfur is 16 so its electronic configuration is
The ion formation occurs as:
Its outermost electron enters in the
The value of the magnetic quantum number
The electron added to the
The possible quantum numbers for the electron gained when an
(c)
Interpretation:
The full set of possible quantum numbers for the electron lost when an
Concept introduction:
The quantum numbers provide complete information about the electron. There are four quantum numbers as follows:
1. The principal quantum number and it is represented by n. It tells about the shell to which the electron belongs.
2. The azimuthal quantum number and it is represented by l. It tells about the subshell of the electrons.
3. The magnetic quantum number and it is represented by
4. The spin quantum number and it is represented by
(c)

Answer to Problem 8.21P
The possible quantum numbers for the electron lost when gained when an
Explanation of Solution
The atomic number of silver is 47 so its electronic configuration is
The ion formation occurs as:
The electron is lost from the
The possible quantum numbers for the electron lost when gained when an
(d)
Interpretation:
The full set of possible quantum numbers for the electron gained when an
Concept introduction:
The quantum numbers provide complete information about the electron. There are four quantum numbers as follows:
1. The principal quantum number and it is represented by n. It tells about the shell to which the electron belongs.
2. The azimuthal quantum number and it is represented by l. It tells about the subshell of the electrons.
3. The magnetic quantum number and it is represented by
4. The spin quantum number and it is represented by
(d)

Answer to Problem 8.21P
The quantum numbers for the electron gained when an
Explanation of Solution
The atomic number of fluorine is 9 so its electronic configuration is
The ion formation occurs as:
The electron is added to the
The value of the magnetic quantum number
The value of the spin quantum number
The quantum numbers for the electron gained when an
Want to see more full solutions like this?
Chapter 8 Solutions
Connect 2-Year Access Card for Chemistry: The Molecular Nature of Matter and Change
- Steps and explanation please. Add how to solve or target similar problems.arrow_forwardWould the following organic synthesis occur in one step? Add any missing products, required catalysts, inorganic reagents, and other important conditions. Please include a detailed explanation and drawings showing how the reaction may occur in one step.arrow_forwardThis organic molecule is dissolved in an acidic aqueous solution: OH OH A short time later sensitive infrared spectroscopy reveals the presence of a new C = O stretch absorption. That is, there must now be a new molecule present with at least one C = O bond. In the drawing area below, show the detailed mechanism that could convert the molecule above into the new molecule. Videos 849 Explanation Check C Click and drag to start dwing a structure. # 3 MAR 23 Add/Remove steparrow_forward||| 7:47 ull 57% ← Problem 19 of 48 Submit Curved arrows are used to illustrate the flow of electrons. Use the reaction conditions provided and follow the curved arrows to draw the product of this carbocation rearrangement. Include all lone pairs and charges as appropriate. H 1,2-alkyl shift +arrow_forwardWould the following organic synthesis occur in one step? Add any missing products, required catalysts, inorganic reagents, and other important conditions. Please include a detailed explanation and drawings showing how the reaction may occur in one step.arrow_forwardBelow is the SN1 reaction of (S)-3-chlorocyclohexene and hydroxide (OH). Draw the missing curved arrows, lone pairs of electrons, and nonzero formal charges. In the third box, draw the two enantiomeric products that will be produced. 5th attempt Please draw all four bonds at chiral centers. Draw the two enantiomeric products that will be produced. Draw in any hydrogen at chiral centers. 1000 4th attempt Feedback Please draw all four bonds at chiral centers. 8. R5 HO: See Periodic Table See Hint H Cl Br Jid See Periodic Table See Hintarrow_forwardShow that a molecule with configuration π4 has a cylindrically symmetric electron distribution. Hint: Let the π orbitals be equal to xf and yf, where f is a function that depends only on the distance from the internuclear axis.arrow_forward(a) Verify that the lattice energies of the alkali metal iodides are inversely proportional to the distances between the ions in MI (M = alkali metal) by plotting the lattice energies given below against the internuclear distances dMI. Is the correlation good? Would a better fit be obtained by plotting the lattice energies as a function of (1 — d*/d)/d, as theoretically suggested, with d* = 34.5 pm? You must use a standard graphing program to plot the graph. It generates an equation for the line and calculates a correlation coefficient. (b) From the graph obtained in (a), estimate the lattice energy of silver iodide. (c) Compare the results of (b) with the experimental value of 886 kJ/mol. If they do not agree, explain the deviation.arrow_forwardCan I please get help with #3 & 4? Thanks you so much!arrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistryChemistryISBN:9781259911156Author:Raymond Chang Dr., Jason Overby ProfessorPublisher:McGraw-Hill EducationPrinciples of Instrumental AnalysisChemistryISBN:9781305577213Author:Douglas A. Skoog, F. James Holler, Stanley R. CrouchPublisher:Cengage Learning
- Organic ChemistryChemistryISBN:9780078021558Author:Janice Gorzynski Smith Dr.Publisher:McGraw-Hill EducationChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningElementary Principles of Chemical Processes, Bind...ChemistryISBN:9781118431221Author:Richard M. Felder, Ronald W. Rousseau, Lisa G. BullardPublisher:WILEY





