The element whose oxide forms an acidic solution is to be classified as a metal or a non-metal. Concept Introduction: Bronsted-Lowry acids are those species which donate H + and those which accept H + are considered as Bronsted-Lowry bases. The species formed after the donation of H + by a Bronsted-Lowry acid is called its conjugate base while that formed after accepting H + by a base is called its conjugate acid. Metals are characterized by their luster, high thermal and electrical conductivity, sonorous nature, ductility, malleability, the formation of ionic hydroxides and tendency to release hydroxides in solution. Non-metals are characterized by their rough surface, low melting and boiling point, low or no thermal and electrical conductivity, the formation of covalent oxides and tendency to release protons in solution.
The element whose oxide forms an acidic solution is to be classified as a metal or a non-metal. Concept Introduction: Bronsted-Lowry acids are those species which donate H + and those which accept H + are considered as Bronsted-Lowry bases. The species formed after the donation of H + by a Bronsted-Lowry acid is called its conjugate base while that formed after accepting H + by a base is called its conjugate acid. Metals are characterized by their luster, high thermal and electrical conductivity, sonorous nature, ductility, malleability, the formation of ionic hydroxides and tendency to release hydroxides in solution. Non-metals are characterized by their rough surface, low melting and boiling point, low or no thermal and electrical conductivity, the formation of covalent oxides and tendency to release protons in solution.
Solution Summary: The author explains that the element whose oxide forms an acidic solution is to be classified as a metal or non-metal.
The element whose oxide forms an acidic solution is to be classified as a metal or a non-metal.
Concept Introduction:
Bronsted-Lowry acids are those species which donate H+ and those which accept H+ are considered as Bronsted-Lowry bases. The species formed after the donation of H+ by a Bronsted-Lowry acid is called its conjugate base while that formed after accepting H+ by a base is called its conjugate acid.
Metals are characterized by their luster, high thermal and electrical conductivity, sonorous nature, ductility, malleability, the formation of ionic hydroxides and tendency to release hydroxides in solution.
Non-metals are characterized by their rough surface, low melting and boiling point, low or no thermal and electrical conductivity, the formation of covalent oxides and tendency to release protons in solution.
Don't used hand raiting and don't used Ai solution
Can you explain these two problems for me
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Blackboard
x Organic Chemistry II Lecture (m x
Aktiv Learning App
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Curved arrows are used to illustrate the flow of electrons. Using
the provided starting and product structures, draw the curved
electron-pushing arrows for the following reaction or
mechanistic step(s).
Be sure to account for all bond-breaking and bond-making
steps.
Problem 28 of 35
:OH H
HH
KO
Select to Edit Arrows
CH CH₂OK, CH CH2OH
5+
H
:0:
Done
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