Bronsted-Lowry base must have a(an) atom that does not obey the octet rule atom
ID: 85133 • Letter: B
Question
Bronsted-Lowry base must have a(an) atom that does not obey the octet rule atom with an unshared pair of electrons nitrogen atom amphiprotic atom oxygen atom Which reaction illustrates water acting as a base? Cu(H_2O)_4^2+ + 4NH_3 rightarrow Cu(NH_3)_4^2+ 4H_2O H_2 CO_3 rightarrow H_2O + CO_2 NH_3 + H_2O rightarrow NH_4^+ + OH^- HPO_4^2- + H_2O rightarrow OH^- + H_3PO_4 HSO_4^- + H_2O rightarrow H_3O^+ SO_4^2- Which of the following is a conjugate acid-base pair? CH_3COO^- and H_2O H_3O^+ and OH^- CH_3COOH and CH_3COO^- CH_3COOH and H_3O^+ CH_3COOH and OH^- How many mL of 0.10M NaOH are required to completely neutralize 10.0mL of a 0.2 M H3PO4? (don't forget, you need a balanced equation first) 60.0 mL 40.0 mL 30.0 mL 20.0 mL 10.0 mL. In basic solution, [H_3O^+] = [OH^-] [H_3O^+] > [OH^-] [H_3O^+] 7.00Explanation / Answer
43) A Bronsted- Lowry base must have an atom with an unshared pair of electrons.
The Bronsted-Lowry theory explains the acid-base interactions in terms of proton transfer between chemical species. In order to accept a proton, a Bronsted-Lowry base must have at least one lone pair of electrons to form a new bond with a proton.
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