In the periodic table, the most reactive and least reactive metal has to be identified. Concept introduction: A metal higher in the series will reduce ions of any metal lower in the series. Activity series of metals is given below, Figure 1
In the periodic table, the most reactive and least reactive metal has to be identified. Concept introduction: A metal higher in the series will reduce ions of any metal lower in the series. Activity series of metals is given below, Figure 1
Solution Summary: The author explains that the most reactive and least reactive metals in the periodic table have to be identified.
Definition Definition Elements containing partially filled d-subshell in their ground state configuration. Elements in the d-block of the periodic table receive the last or valence electron in the d-orbital. The groups from IIIB to VIIIB and IB to IIB comprise the d-block elements.
Chapter 3, Problem 57QRT
(a)
Interpretation Introduction
Interpretation:
In the periodic table, the most reactive and least reactive metal has to be identified.
Concept introduction:
A metal higher in the series will reduce ions of any metal lower in the series.
Activity series of metals is given below,
Figure 1
(b)
Interpretation Introduction
Interpretation:
If the Ag react with a solution of aluminum nitrate Al(NO3)3, the chemical reaction has to be written
Concept introduction:
Refer to part (a)
(c)
Interpretation Introduction
Interpretation:
The chemical equation has to be written for the reaction of Pb with a AgNO3 solution.
Concept introduction:
Refer to part (a)
(d)
Interpretation Introduction
Interpretation:
For the given Ag, Al, and Pb, the decreasing order of reactivity has to be arranged.
4. Provide a clear arrow-pushing mechanism for each of the following reactions. Do not skip proton
transfers, do not combine steps, and make sure your arrows are clear enough to be interpreted
without ambiguity.
a.
2.
1. LDA
3. H3O+
HO
b.
H3C CH3
H3O+
✓ H
OH
2. Provide reagents/conditions to accomplish the following syntheses. More than one step is
required in some cases.
a.
CH3
Chapter 3 Solutions
OWLv2 for Moore/Stanitski's Chemistry: The Molecular Science, 5th Edition, [Instant Access], 1 term (6 months)
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