Among Li , N , Ni , Te , Ba and Hg that are paramagnetic should be identified. Also, number of unpaired electrons in paramagnetic atoms should be determined. Concept introduction: Paramagnetic atoms are those that consist of unpaired electrons. Paramagnetic substances are those that have net spin that is orbitals are singly filled with electrons.The unpaired electrons in ground state of elements are given by its electronic configuration. The subshells s , p , d and f have different number of orbitals and possess different number of electrons in it. Number of orbitals is expressed by 2 l + 1 value. Therefore, number of orbitals for different orbitals is as follows: Orbital s p d f Value of l 0 1 2 3 2 l + 1 1 3 5 7 Each orbital occupies 2 electrons. Therefore, from above table it is clear that s orbital occupies 2 electrons, p orbital occupies 6 electrons, d orbital occupies 10 electrons and f orbital occupies 14 electrons.
Among Li , N , Ni , Te , Ba and Hg that are paramagnetic should be identified. Also, number of unpaired electrons in paramagnetic atoms should be determined. Concept introduction: Paramagnetic atoms are those that consist of unpaired electrons. Paramagnetic substances are those that have net spin that is orbitals are singly filled with electrons.The unpaired electrons in ground state of elements are given by its electronic configuration. The subshells s , p , d and f have different number of orbitals and possess different number of electrons in it. Number of orbitals is expressed by 2 l + 1 value. Therefore, number of orbitals for different orbitals is as follows: Orbital s p d f Value of l 0 1 2 3 2 l + 1 1 3 5 7 Each orbital occupies 2 electrons. Therefore, from above table it is clear that s orbital occupies 2 electrons, p orbital occupies 6 electrons, d orbital occupies 10 electrons and f orbital occupies 14 electrons.
Solution Summary: The author explains that the number of unpaired electrons in paramagnetic atoms should be determined.
Interpretation:Among Li , N , Ni , Te , Ba and Hg that are paramagnetic should be identified. Also, number of unpaired electrons in paramagnetic atoms should be determined.
Concept introduction:Paramagnetic atoms are those that consist of unpaired electrons. Paramagnetic substances are those that have net spin that is orbitals are singly filled with electrons.The unpaired electrons in ground state of elements are given by its electronic configuration. The subshells s , p , d and f have different number of orbitals and possess different number of electrons in it. Number of orbitals is expressed by 2l+1 value. Therefore, number of orbitals for different orbitals is as follows:
OrbitalspdfValue of l01232l+11357
Each orbital occupies 2 electrons. Therefore, from above table it is clear that s orbital occupies 2 electrons, p orbital occupies 6 electrons, d orbital occupies 10 electrons and f orbital occupies 14 electrons.
Draw the Fischer projection of D-fructose.
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structure.
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Consider this step in a radical reaction:
Y
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.
ionization
propagation
initialization
passivation
none of the above
22.16 The following groups are ortho-para directors.
(a)
-C=CH₂
H
(d)
-Br
(b)
-NH2
(c)
-OCHS
Draw a contributing structure for the resonance-stabilized cation formed during elec-
trophilic aromatic substitution that shows the role of each group in stabilizing the
intermediate by further delocalizing its positive charge.
22.17 Predict the major product or products from treatment of each compound with
Cl₁/FeCl₂-
OH
(b)
NO2
CHO
22.18 How do you account for the fact that phenyl acetate is less reactive toward electro-
philic aromatic substitution than anisole?
Phenyl acetate
Anisole
CH
(d)
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Quantum Numbers, Atomic Orbitals, and Electron Configurations; Author: Professor Dave Explains;https://www.youtube.com/watch?v=Aoi4j8es4gQ;License: Standard YouTube License, CC-BY