
(a)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of of sulfur difluoride
(a)

Explanation of Solution
Sulfur belongs to the Group
Fluorine is a non-metal of the
Oxidation state
In
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(b)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of sulfur hexafluoride
(b)

Explanation of Solution
Sulfur belongs to the Group
Fluorine is a non-metal of the
Oxidation state
In
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(c)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of
(c)

Explanation of Solution
Sodium belongs to the Group
Dihydrogen phosphate is an anion having oxidation state
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(d)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of lithium nitride
(d)

Explanation of Solution
Lithium belongs to the Group
Nitrogen is a non-metal of the
Oxidation state
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(e)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of chromium (III) carbonate.
(e)

Explanation of Solution
Chromium belongs to the Group
Carbonate is an anion having oxidation state
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(f)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of tin (II) fluoride.
(f)

Explanation of Solution
Tin belongs to the Group
Fluorine is a non-metal of the
Oxidation state
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(g)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of ammonium acetate.
(g)

Explanation of Solution
The oxidation state of ammonium
Acetate
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(h)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of ammonium hydrogen sulfate.
(h)

Explanation of Solution
The oxidation state of ammonium
Hydrogen sulfate
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(i)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of cobalt (III) nitrate.
(i)

Explanation of Solution
The oxidation state of cobalt
Nitrate
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(j)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of mercury (I) chloride.
(j)

Explanation of Solution
The oxidation state of mercury
Chloride
Two mercury and chlorine ions is joined to form mercury (I) chloride.
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(k)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of potassium chlorate.
(k)

Explanation of Solution
The oxidation state of potassium
Chlorate
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
(l)
Interpretation: The formula of the binary compound formed from the given pairs of elements in each case is to be stated.
Concept introduction: The oxidation state of an element corresponds to the group number of that element. In case of non-metals, the oxidation state can be calculated as,
To determine: The formula of sodium hydride.
(l)

Explanation of Solution
The oxidation state of sodium
Hydride
So, the formula of the given compound is
The formula of ionic compound is given such that positive ion (cation) always written first and negative ion written second.
Want to see more full solutions like this?
Chapter 3 Solutions
EBK CHEMISTRY: AN ATOMS FIRST APPROACH
- Assign these protonarrow_forwardCould you please solve the first problem in this way and present it similarly but color-coded or step by step so I can understand it better? Thank you!arrow_forwardCould you please solve the first problem in this way and present it similarly but color-coded or step by step so I can understand it better? Thank you!arrow_forward
- Could you please solve the first problem in this way and present it similarly but (color-coded) and step by step so I can understand it better? Thank you! I want to see what they are doingarrow_forwardCan you please help mne with this problem. Im a visual person, so can you redraw it, potentislly color code and then as well explain it. I know im given CO2 use that to explain to me, as well as maybe give me a second example just to clarify even more with drawings (visuals) and explanations.arrow_forwardPart 1. Aqueous 0.010M AgNO 3 is slowly added to a 50-ml solution containing both carbonate [co32-] = 0.105 M and sulfate [soy] = 0.164 M anions. Given the ksp of Ag2CO3 and Ag₂ soy below. Answer the ff: Ag₂ CO3 = 2 Ag+ caq) + co} (aq) ksp = 8.10 × 10-12 Ag₂SO4 = 2Ag+(aq) + soy² (aq) ksp = 1.20 × 10-5 a) which salt will precipitate first? (b) What % of the first anion precipitated will remain in the solution. by the time the second anion starts to precipitate? (c) What is the effect of low pH (more acidic) condition on the separate of the carbonate and sulfate anions via silver precipitation? What is the effect of high pH (more basic)? Provide appropriate explanation per answerarrow_forward
- Part 4. Butanoic acid (ka= 1.52× 10-5) has a partition coefficient of 3.0 (favors benzene) when distributed bet. water and benzene. What is the formal concentration of butanoic acid in each phase when 0.10M aqueous butanoic acid is extracted w❘ 25 mL of benzene 100 mL of a) at pit 5.00 b) at pH 9.00arrow_forwardCalculate activation energy (Ea) from the following kinetic data: Temp (oC) Time (s) 23.0 180. 32.1 131 40.0 101 51.8 86.0 Group of answer choices 0.0269 kJ/mole 2610 kJ/mole 27.6 kJ/mole 0.215 kJ/mole 20.8 kJ/molearrow_forwardCalculate activation energy (Ea) from the following kinetic data: Temp (oC) Time (s) 23.0 180. 32.1 131 40.0 101 51.8 86.0 choices: 0.0269 kJ/mole 2610 kJ/mole 27.6 kJ/mole 0.215 kJ/mole 20.8 kJ/molearrow_forward
- Living By Chemistry: First Edition TextbookChemistryISBN:9781559539418Author:Angelica StacyPublisher:MAC HIGHERIntroductory Chemistry: A FoundationChemistryISBN:9781337399425Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage Learning
- World of Chemistry, 3rd editionChemistryISBN:9781133109655Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCostePublisher:Brooks / Cole / Cengage Learning



