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Concept explainers
Name the following compounds:
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Interpretation:
The names the of given compounds are to be identified from the formula.
Concept introduction:
Steps for naming the ionic compounds are as follows:
Identify the cation and the anion in the compound.
Combine the names of the cations and the anions by elimination of the word ‘ion’ from the names of the individual ions.
Steps for naming the binary molecular compounds are as follows:
First name the element that appears first in its molecular formula.
Now, name the second element by changing its ending to –ide.
Use proper prefixes to indicate the number of atoms present for individual elements.
Steps for naming the acids are as follows:
From hydrogen, omit the term ‘–gen’, leaving the name hydro-.
The name ending with ‘–ide’ is changed to ‘–ic’.
Now, combine the two terms and add the word acid to give complete name.
The oxoacids are named according to the names of the oxoanions from which they are derived. The acid based on an -ate ion is called –ic acid.
Answer to Problem 61QP
Solution:
a)
Potassium dihydrogen phosphate
b)
Potassium hydrogen phosphate
c)
Hydrogen bromide
d)
Hydrobromic acid
e)
Lithium carbonate
f)
Potassium dichromate
g)
Ammonium nitrite
h)
Hydrogen iodate (in water Iodic acid)
i)
Phosphorous pentafluoride
j)
Tetraphosphorus hexoxide
k)
Cadmium iodide
l)
Strontium sulfate
m)
Aluminum hydroxide
Explanation of Solution
a)
The compound
b)
The compound
c)
The compound
d)
The molecular compound
e)
The compound
f)
The compound
g)
The compound
h)
The compound
i)
The molecular compound
j)
The molecular compound
k)
The compound
l)
The compound
m)
The compound
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Chapter 2 Solutions
EBK CHEMISTRY
- In the solid state, oxalic acid occurs as a dihydrate with the formula H2C2O4 C+2H2O. Use this formula to calculate the formula weight of oxalic acid. Use the calculated formula weight and the number of moles (0.00504mol) of oxalic acid in each titrated unknown sample recorded in Table 6.4 to calculate the number of grams of pure oxalic acid dihydrate contained in each titrated unknown sample.arrow_forward1. Consider a pair of elements with 2p and 4p valence orbitals (e.g., N and Se). Draw their (2p and 4p AO's) radial probability plots, and sketch their angular profiles. Then, consider these orbitals from the two atoms forming a homonuclear л-bond. Which element would have a stronger bond, and why? (4 points)arrow_forwardWrite the reaction and show the mechanism of the reaction. Include the mechanism for formation of the NO2+ 2. Explain, using resonance structures, why the meta isomer is formed. Draw possible resonance structures for ortho, meta and para.arrow_forward
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- 6. a) C2's. Phosphorus pentafluoride PF5 belongs to D3h symmetry group. Draw the structure of the molecule, identify principal axis of rotation and perpendicular (4 points) b) assume that the principal axis of rotation is aligned with z axis, assign symmetry labels (such as a1, b2, etc.) to the following atomic orbitals of the P atom. (character table for this group is included in the Supplemental material). 3s 3pz (6 points) 3dz²arrow_forward2. Construct Lewis-dot structures, and draw VESPR models for the ions listed below. a) SiF5 (4 points) b) IOF4 (4 points)arrow_forward5. Complex anion [AuCl2]¯ belongs to Doh symmetry point group. What is the shape of this ion? (4 points)arrow_forward
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