
Concept explainers
(a)
Interpretation: Considering the given set of elements, nonmetals should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.
(b)
Interpretation: Considering the given set of elements, main group elements should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their atomic number, the electronic configuration and their properties. The elements placed on the left of the table are metals and non-metals are placed on right side of the table.
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Transition elements are included in 1B to 8B group’s elements.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.
(c)
Interpretation: Considering the given set of elements, lanthanides should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their atomic number, the electronic configuration and their properties. The elements placed on the left of the table are metals and non-metals are placed on right side of the table.
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Transition elements are included in 1B to 8B group’s elements.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.
(d)
Interpretation: Considering the given set of elements, transition elements should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their atomic number, the electronic configuration and their properties. The elements placed on the left of the table are metals and non-metals are placed on right side of the table.
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Transition elements are included in 1B to 8B group’s elements.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.
(e)
Interpretation: Considering the given set of elements, actinides should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their atomic number, the electronic configuration and their properties. The elements placed on the left of the table are metals and non-metals are placed on right side of the table.
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Transition elements are included in 1B to 8B group’s elements.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.
(f)
Interpretation: Considering the given set of elements, gases should be identified.
Concept Introduction:
Periodic Table: The available chemical elements are arranged considering their atomic number, the electronic configuration and their properties. The elements placed on the left of the table are metals and non-metals are placed on right side of the table.
In periodic table the horizontal rows are called periods and the vertical column are called group.
The elements placed on the left of the table are metals which contain its last electron on s-orbital hence considered as s-block elements and the elements placed on the right side of the table contains its last electron in p-orbital which is regarded as p-block elements.
The s and p block elements together are called as main group elements.
Nonmetals: The right of diagonal elements stretches from boron to Tellurium, in group 14 to 18.
Main group elements are included from group 1A to 8A.
Lanthanides are 6th period elements from lanthanide to hafnium.
Transition elements are included in 1B to 8B group’s elements.
Actinides are 7th period elements from actinium to lawrencium.
8A group elements, nitrogen, oxygen, fluorine and chlorine are the elements occur in gaseous state.

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Chapter 2 Solutions
OWLv2 6-Months Printed Access Card for Kotz/Treichel/Townsend's Chemistry & Chemical Reactivity, 9th, 9th Edition
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- Do not apply the calculations, based on the approximation of the stationary state, to make them perform correctly. Basta discard the 3 responses that you encounter that are obviously erroneous if you apply the formula to determine the speed of a reaction. For the decomposition reaction of N2O5(g): 2 N2O5(g) · 4 NO2(g) + O2(g), the following mechanism has been proposed: N2O5 -> NO2 + NO3_(K1) NO2 + NO3 →> N2O5 (k-1) → NO2 + NO3 → NO2 + O2 + NO (K2) NO + N2O5 → NO2 + NO2 + NO2 (K3) Give the expression for the acceptable rate. (A). d[N₂O] dt = -1 2k,k₂[N205] k₁+k₂ d[N₂O5] (B). dt =-k₁[N₂O₂] + k₁[NO2][NO3] - k₂[NO2]³ (C). d[N₂O] dt =-k₁[N₂O] + k₁[N205] - K3 [NO] [N205] (D). d[N2O5] =-k₁[NO] - K3[NO] [N₂05] dtarrow_forwardA 0.10 M solution of acetic acid (CH3COOH, Ka = 1.8 x 10^-5) is titrated with a 0.0250 M solution of magnesium hydroxide (Mg(OH)2). If 10.0 mL of the acid solution is titrated with 20.0 mL of the base solution, what is the pH of the resulting solution?arrow_forwardFor the decomposition reaction of N2O5(g): 2 N2O5(g) → 4 NO2(g) + O2(g), the following mechanism has been proposed: N2O5 NO2 + NO3 (K1) | NO2 + NO3 → N2O5 (k-1) | NO2 + NO3 NO2 + O2 + NO (k2) | NO + N2O51 NO2 + NO2 + NO2 (K3) → Give the expression for the acceptable rate. → → (A). d[N205] dt == 2k,k₂[N₂O₂] k₁+k₁₂ (B). d[N2O5] =-k₁[N₂O] + k₁[NO₂] [NO3] - k₂[NO₂]³ dt (C). d[N2O5] =-k₁[N₂O] + k [NO] - k₂[NO] [NO] d[N2O5] (D). = dt = -k₁[N2O5] - k¸[NO][N₂05] dt Do not apply the calculations, based on the approximation of the stationary state, to make them perform correctly. Basta discard the 3 responses that you encounter that are obviously erroneous if you apply the formula to determine the speed of a reaction.arrow_forward
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