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(a)
Interpretation:In mercury number of electrons occupied by atomic orbitals with
Concept introduction:Atomic orbital is mathematical function that depicts wave behavior of electrons in atom. It is used to indicate probability to find electrons in particular region around atomic nucleus. Probability density to find electron in space around sphere located at particular distance from nucleus is determined by radial distribution function.
Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions.
Below mentioned are four quantum numbers.
1. Principal Quantum Number
It is represented by
2.
It is represented by
Designation of orbitals on basis of different
3. Magnetic Quantum Number
This quantum number is denoted by
4. Spin Quantum Number
This quantum number is represented by
(a)
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Answer to Problem 88E
Number of electrons occupied by atomic orbitals with
Explanation of Solution
The element
Since the principle quantum number of mercury is 3 that is it is present in third energy level. Type of orbitals present in third level is
Total number of orbitals are expressed as
Hence, there are total 9 orbitals in third energy level and each orbital has minimum 2 electrons. Therefore, number of electrons in mercury is 18.
(b)
Interpretation:In mercury number of electrons occupied by
Concept introduction:Atomic orbital is mathematical function that depicts wave behavior of electrons in atom. It is used to indicate probability to find electrons in particular region around atomic nucleus. Probability density to find electron in space around sphere located at particular distance from nucleus is determined by radial distribution function.
Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions.
Below mentioned are four quantum numbers.
1. Principal Quantum Number
It is represented by
2. Angular Momentum Quantum Number
It is represented by
Designation of orbitals on basis of different
3. Magnetic Quantum Number
This quantum number is denoted by
4. Spin Quantum Number
This quantum number is represented by
(b)
![Check Mark](/static/check-mark.png)
Answer to Problem 88E
In mercury, number of electrons occupied by
Explanation of Solution
The element
Since in mercury there are three
(c)
Interpretation:In mercury number of electrons occupied by
Concept introduction:Atomic orbital is mathematical function that depicts wave behavior of electrons in atom. It is used to indicate probability to find electrons in particular region around atomic nucleus. Probability density to find electron in space around sphere located at particular distance from nucleus is determined by radial distribution function.
Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions.
Below mentioned are four quantum numbers.
1. Principal Quantum Number
It is represented by
2. Angular Momentum Quantum Number
It is represented by
Designation of orbitals on basis of different
3. Magnetic Quantum Number
This quantum number is denoted by
4. Spin Quantum Number
This quantum number is represented by
(c)
![Check Mark](/static/check-mark.png)
Answer to Problem 88E
In mercury number of electrons occupied by
Explanation of Solution
The element
Since in mercury there are four
(d)
Interpretation:In mercury number of electrons that have spin up
Concept introduction:Atomic orbital is mathematical function that depicts wave behavior of electrons in atom. It is used to indicate probability to find electrons in particular region around atomic nucleus. Probability density to find electron in space around sphere located at particular distance from nucleus is determined by radial distribution function.
Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions.
Below mentioned are four quantum numbers.
1. Principal Quantum Number
It is represented by
2. Angular Momentum Quantum Number
It is represented by
Designation of orbitals on basis of different
3. Magnetic Quantum Number
This quantum number is denoted by
4. Spin Quantum Number
This quantum number is represented by
(d)
![Check Mark](/static/check-mark.png)
Answer to Problem 88E
In mercury number of electrons that have spin up
Explanation of Solution
The element
Paired electrons have half spin up and half spin down. Since
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Chapter 12 Solutions
EBK CHEMICAL PRINCIPLES
- Do the electrons on the OH participate in resonance with the ring through a p orbital? How many pi electrons are in the ring, 4 (from the two double bonds) or 6 (including the electrons on the O)?arrow_forwardPredict and draw the product of the following organic reaction:arrow_forwardNonearrow_forward
- Redraw the molecule below as a skeletal ("line") structure. Be sure to use wedge and dash bonds if necessary to accurately represent the direction of the bonds to ring substituents. Cl. Br Click and drag to start drawing a structure. : ☐ ☑ Parrow_forwardK m Choose the best reagents to complete the following reaction. L ZI 0 Problem 4 of 11 A 1. NaOH 2. CH3CH2CH2NH2 1. HCI B OH 2. CH3CH2CH2NH2 DII F1 F2 F3 F4 F5 A F6 C CH3CH2CH2NH2 1. SOCl2 D 2. CH3CH2CH2NH2 1. CH3CH2CH2NH2 E 2. SOCl2 Done PrtScn Home End FA FQ 510 * PgUp M Submit PgDn F11arrow_forwardNonearrow_forward
- Add curved arrows to the reactants in this reaction. A double-barbed curved arrow is used to represent the movement of a pair of electrons. Draw curved arrows. : 0: si H : OH :: H―0: Harrow_forwardConsider this step in a radical reaction: Br N O hv What type of step is this? Check all that apply. Draw the products of the step on the right-hand side of the drawing area below. If more than one set of products is possible, draw any set. Also, draw the mechanism arrows on the left-hand side of the drawing area to show how this happens. O primary Otermination O initialization O electrophilic O none of the above × ☑arrow_forwardNonearrow_forward
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