(a) Interpretation: The formula and the charge of silicate anion should be determined. Concept introduction: A tetrahedron denotes a SiO 4 structural unit. Number of silicon atoms can be determined by counting the number of tetrahedrons while oxygen atoms by counting the number of corners. To determine the charge of the anion, the number of unshared corners should be counted.
(a) Interpretation: The formula and the charge of silicate anion should be determined. Concept introduction: A tetrahedron denotes a SiO 4 structural unit. Number of silicon atoms can be determined by counting the number of tetrahedrons while oxygen atoms by counting the number of corners. To determine the charge of the anion, the number of unshared corners should be counted.
Solution Summary: The author explains the formula and the charge of silicate anion, which is composed of silicon and oxygen atoms.
The formula and the charge of silicate anion should be determined.
Concept introduction:
A tetrahedron denotes a SiO4 structural unit. Number of silicon atoms can be determined by counting the number of tetrahedrons while oxygen atoms by counting the number of corners. To determine the charge of the anion, the number of unshared corners should be counted.
Interpretation Introduction
(b)
Interpretation:
The formula and the charge of silicate anion should be determined.
Concept introduction:
A tetrahedron denotes a SiO4 structural unit. Number of silicon atoms can be determined by counting the number of tetrahedrons while oxygen atoms by counting the number of corners. To determine the charge of the anion, the number of unshared corners should be counted.
You are asked to use curved arrows to generate the significant resonance structures for the following series of compounds and to label the most significant contributor. Identify the errors that would occur if you do not expand the Lewis structures or double-check the mechanisms. Also provide the correct answers.
how to get limiting reactant and %
yield based off this data
Compound
Mass 6) Volume(mL
Ben zaphone-5008
ne
Acetic Acid
1. Sam L
2-propanot
8.00
Benzopin-
a col
030445
Benzopin
a Colone 0.06743
Results
Compound
Melting Point (°c)
Benzopin
acol
172°c - 175.8 °c
Benzoping
to lone
1797-180.9
Assign ALL signals for the proton and carbon NMR spectra on the following pages.
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