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Concept explainers
(a)
Interpretation: The number of valence electrons that present in Boron should be calculated.
Concept Introduction:
The closer the atomic orbital is to the nucleus, the lower its energy.
Degenerate orbitals have the same energy.
The electronic configuration of an atom explain the atomic orbital occupies by the atoms electrons.
Electron are assigned to orbitals occupied by the atoms electrons.
Electron are assigned to orbitals (atomic or molecular) following the Aufbau principle, the Pauli Exclusion Principle, and valence electron are electron in the outer most shell.
Core electron are electrons in inner shells.
The outer most shell electron is known as the Valence electron.
(b)
Interpretation: The number of valence electrons that present in Nitrogen should be calculated.
Concept Introduction:
- The closer the atomic orbital is to the nucleus, the lower its energy.
- Degenerate orbitals have the same energy.
- The electronic configurations of an atom explain the atomic orbital occupies by the atoms electrons.
- Electrons are assigned to orbitals occupied by the atoms electrons.
- Electron is assigned to orbitals (atomic or molecular) following the Aufbau principle, the Pauli Exclusion Principle, and valence electron are electron in the outer most shell.
- Core electron is electrons in inner shells.
- The outer most shell electron is known as the Valence electron.
(c)
Interpretation: The number of valence electrons that present in Oxygen should be calculated.
Concept Introduction:
- The closer the atomic orbital is to the nucleus, the lower its energy.
- Degenerate orbitals have the same energy.
- The electronic configuration of an atom explains the atomic orbital occupies by the atoms electrons.
- Electrons are assigned to orbitals occupied by the atoms electrons.
- Electrons are assigned to orbitals (atomic or molecular) following the aufbau principle, the Pauli Exclusion Principle, and valence electron are electron in the outer most shell.
- Core electron is electrons in inner shells.
- The outer most shell electron is known as the Valence electron.
(d)
Interpretation: The number of valence electronss that present in Fluorine should be calculated.
Concept Introduction:
The closer the atomic orbital is to the nucleus, the lower its energy.
Degenerate orbitals have the same energy.
The electronic configuration of an atom explains the atomic orbital occupies by the atoms electrons.
Electron is assigned to orbitals occupied by the atoms electrons.
Electrons are assigned to orbitals (atomic or molecular) following the aufbau principle, the Pauli Exclusion Principle, and valence electron are electron in the outer most shell.
Core electrons are electrons in inner shells.
The outer most shell electron is known as the Valence electron.
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Chapter 1 Solutions
ORGANIC CHEMISTRY-W/S.G+SOLN.MANUAL
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- needing help draw all of the possible monochlorination products that would result from the free radical chlorination of 2,3,4-trimethylpentanearrow_forwardHAND DRAWarrow_forwardBased on the 1H NMR, 13C NMR, DEPT 135 NMR and DEPT 90 NMR, provide a reasoning step and arrive at the final structure of an unknown organic compound containing 7 carbons. Dept 135 shows peak to be positive at 128.62 and 13.63 Dept 135 shows peak to be negative at 130.28, 64.32, 30.62 and 19.10. Provide assignment for the provided structurearrow_forward
- O Predict the 'H NMR integration ratio for the following structure. IV I. 3 H A II. 1 H III. 2 H IV. 3 H I. 3 H B II. O H III. 2 H IV. 3 H I. 3 H C II. 2 H III. 2 Harrow_forward205. From the definition of the Gibbs free energy, G = H - TS, derive the Gibbs-Helmholtz equation a (or (G)),- =- H T2arrow_forward229. Show that ән (~~)--(*), др =V-T Parrow_forward
- Describe hyperconjugation (Organic Chemistry).arrow_forwardDescribe the mesomeric or resonance effect and differentiate between types +E or +M and -R or -M.arrow_forwardI need help with the following two problems, understanding them in a simple manner. Can you please draw them out for me with a detailed explanation so that I can better comprehend? I'm a visual person, so I definitely need that. Thank you very much!arrow_forward
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