What is the only possible value of my for an electron in an s orbital? Express your answer numerically. > View Available Hint(s) Submit Previous Answers X Incorrect; Try Again; 5 attempts remaining

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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can therefore be any integer. For
the second shell.
What is the only possible value of my for an electron in an s orbital?
Express your answer numerically.
electron is located. s subshells are
=1. As a rule, l can have integer
• View Available Hint(s)
cead of 2pz, 2py, and 2pz, the
nave integer values ranging from
2 means an "up" spin, whereas
Submit
Previous Answers
X Incorrect; Try Again; 5 attempts remaining
Part B
What are the possible values of my for an electron in ad orbital?
Express your answer numerically with sequential values separated by commas.
> View Available Hint(s)
Submit
Part C
Which of the following set of quantum numbers (ordered n. l. me m) are possible for an electron in an atom?
Check all that apply.
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O5.2, 1,-1/2
04,3.-2. 1/2
O2.2.2.1/2
O 3.2.2.-1/2
O2.1.3. 1/2
O2.1.0.-1/2
O2.1.-2. 1/2
O2.1.0.-1
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Transcribed Image Text:can therefore be any integer. For the second shell. What is the only possible value of my for an electron in an s orbital? Express your answer numerically. electron is located. s subshells are =1. As a rule, l can have integer • View Available Hint(s) cead of 2pz, 2py, and 2pz, the nave integer values ranging from 2 means an "up" spin, whereas Submit Previous Answers X Incorrect; Try Again; 5 attempts remaining Part B What are the possible values of my for an electron in ad orbital? Express your answer numerically with sequential values separated by commas. > View Available Hint(s) Submit Part C Which of the following set of quantum numbers (ordered n. l. me m) are possible for an electron in an atom? Check all that apply. > View Available Hint(s) O5.2, 1,-1/2 04,3.-2. 1/2 O2.2.2.1/2 O 3.2.2.-1/2 O2.1.3. 1/2 O2.1.0.-1/2 O2.1.-2. 1/2 O2.1.0.-1 Submit Provide Feedback
Learning Goal:
To learn the restrictions on each quantum number.
Quantum numbers can be thought of as labels for an electron. Every electron in an atom has a unique set of four quantum numbers.
The principal quantum number n corresponds to the shell in which the electron is located. Thus n can therefore be any integer. For
example, an electron in the 2p subshell has a principal quantum number of n = 2 because 2p is in the second shell.
The azimuthal or angular momentum quantum number l corresponds to the subshell in which the electron is located. s subshells are
coded as 0, p subshells as 1, d as 2, andf as 3. For example, an electron in the 2p subshell has l = 1. As a rule, l can have integer
values ranging from 0 to n-1.
The magnetic quantum number me corresponds to the orbital in which the electron is located. Instead of 2pz, 2py, and 2p:, the
three 2p orbitals can be labeled -1, 0, and 1, but not necessarily respectively. As a rule, mẹ can have integer values ranging from
-l to +l.
The spin quantum number m, corresponds to the spin of the electron in the orbital. A value of 1/2 means an "up" spin, whereas
1/2 means a "down" spin.
Transcribed Image Text:Learning Goal: To learn the restrictions on each quantum number. Quantum numbers can be thought of as labels for an electron. Every electron in an atom has a unique set of four quantum numbers. The principal quantum number n corresponds to the shell in which the electron is located. Thus n can therefore be any integer. For example, an electron in the 2p subshell has a principal quantum number of n = 2 because 2p is in the second shell. The azimuthal or angular momentum quantum number l corresponds to the subshell in which the electron is located. s subshells are coded as 0, p subshells as 1, d as 2, andf as 3. For example, an electron in the 2p subshell has l = 1. As a rule, l can have integer values ranging from 0 to n-1. The magnetic quantum number me corresponds to the orbital in which the electron is located. Instead of 2pz, 2py, and 2p:, the three 2p orbitals can be labeled -1, 0, and 1, but not necessarily respectively. As a rule, mẹ can have integer values ranging from -l to +l. The spin quantum number m, corresponds to the spin of the electron in the orbital. A value of 1/2 means an "up" spin, whereas 1/2 means a "down" spin.
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