Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated. Concept Introduction: All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated. Concept Introduction: All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
Solution Summary: The author explains that all elements present in the periodic table cannot form multiple covalent bonds.
Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated.
Concept Introduction:
All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
(b)
Interpretation Introduction
Interpretation:
Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated.
Concept Introduction:
All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
(c)
Interpretation Introduction
Interpretation:
Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated.
Concept Introduction:
All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
(d)
Interpretation Introduction
Interpretation:
Whether the given representation is a normal expected bonding pattern of the element or not has to be indicated.
Concept Introduction:
All the elements present in the periodic table cannot form multiple covalent bonds. Atleast two vacancies has to be present in the valence shell of atom prior to bond formation for forming a double covalent bond and three vacancies has to be present in the valence shell of atom prior to bond formation for forming triple covalent bond. Elements present in Group VIIA and hydrogen cannot form multiple covalent bonds as there is only one vacancy.
Consider a solution of 0.00304 moles of 4-nitrobenzoic acid (pKa = 3.442) dissolved in 25 mL water and titrated with 0.0991 M NaOH. Calculate the pH at the equivalence point
What is the name of the following compound?
SiMe3
Chapter 5 Solutions
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