OWLV2 FOR MOORE/STANITSKI'S CHEMISTRY:
OWLV2 FOR MOORE/STANITSKI'S CHEMISTRY:
5th Edition
ISBN: 9781285460369
Author: STANITSKI
Publisher: Cengage Learning
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Chapter 20, Problem 48QRT

(a)

Interpretation Introduction

Interpretation:

Ligands present in the coordination compounds Na3[IrCl6] and [Mo(CO)4]Br2 has to be identified.

(a)

Expert Solution
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Explanation of Solution

Ligands present in complex Na3[IrCl6]:

In this complex, the counter ion is three Na+ ions.  Complex ion is [IrCl6]3- ions.  In the complex ion, there are six chloride ions.  These six chloride ions are coordinated to the central metal atom.  Therefore, the ligands present in Na3[IrCl6] is Cl.

Ligands present in complex [Mo(CO)4]Br2:

In this complex, the counter ion is two Br ions.  Complex ion is [Mo(CO)4]2+ ions.  In the complex ion, there are four carbon monoxide molecule.  These four carbon monoxide molecule are coordinated to the central metal atom.  Therefore, the ligands present in [Mo(CO)4]Br2 is CO.

(b)

Interpretation Introduction

Interpretation:

Central metal atom and its charge in the coordination compounds Na3[IrCl6] and [Mo(CO)4]Br2 has to be identified.

(b)

Expert Solution
Check Mark

Explanation of Solution

Central metal atom present in complex Na3[IrCl6]:

In this complex, the counter ion is three Na+ ions.  Complex ion is [IrCl6]3- ions.  In the complex ion, there are six chloride ions.  These six chloride ions are coordinated to the central metal atom.  The central metal atom is iridium.  As the overall charge on the complex ion is 3 and each chloride ion possess 1 charge on it, the charge on the central metal atom is found to be 3+.  The central metal atom and its charge can be given as Ir3+.

Central metal atom present in complex [Mo(CO)4]Br2:

In this complex, the counter ion is two Br ions.  Complex ion is [Mo(CO)4]2+ ions.  In the complex ion, there are four carbon monoxide molecule.  These four carbon monoxide molecule are coordinated to the central metal atom.  As carbon monoxide are neutral ligand, in order to maintain neutrality of the complex, the charge carried by the central metal atom will be opposite to that of the counter ion.  The central atom is found to have a charge of +2.  The central metal atom and its charge can be given as Mo2+.

(c)

Interpretation Introduction

Interpretation:

Formula and charge of the complex ion in the coordination compounds Na3[IrCl6] and [Mo(CO)4]Br2 has to be identified.

(c)

Expert Solution
Check Mark

Explanation of Solution

Formula and charge of the complex ion in Na3[IrCl6]:

In this complex, the counter ion is three Na+ ions.  As there are 3+ charge on the counter ion, the complex ion has to possess 3 charge in order to make the complex neutral.  The formula and charge on the complex ion is [IrCl6]3-.

Formula and charge of the complex ion in [Mo(CO)4]Br2:

In this complex, the counter ion is two Br ions.  Therefore, the complex ion should have 2+ charge in order to make the coordination complex neutral.  The formula and charge on the complex ion is [Mo(CO)4]2+.

(d)

Interpretation Introduction

Interpretation:

Ions that are not part of complex ion in the complexes Na3[IrCl6] and [Mo(CO)4]Br2 has to be identified.

(d)

Expert Solution
Check Mark

Explanation of Solution

Ions that are not part of complex ion in Na3[IrCl6]:

Complex ion in the given complex is [IrCl6]3- ion.  Apart from the complex ion, there are counter ions present in order to make the coordination complex neutral.  The ions that are present apart from complex ion are three Na+ ions.

Ions that are not part of complex ion in [Mo(CO)4]Br2:

Complex ion in the given complex is [Mo(CO)4]2+ ion.  Apart from the complex ion, there are counter ions present in order to make the coordination complex neutral.  The ions that are present apart from complex ion are two Br ions.

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Chapter 20 Solutions

OWLV2 FOR MOORE/STANITSKI'S CHEMISTRY:

Ch. 20.5 - Use Le Chatelier’s principle to explain how the...Ch. 20.5 - At what pH does Ecell = 0.00 V for the reduction...Ch. 20.6 - Prob. 20.6PSPCh. 20.6 - Prob. 20.8CECh. 20.6 - (a) Name this coordination compound:...Ch. 20.6 - Prob. 20.9CECh. 20.6 - Prob. 20.8PSPCh. 20.6 - Prob. 20.10CECh. 20.6 - Prob. 20.11CECh. 20.6 - Prob. 20.9PSPCh. 20.6 - Prob. 20.12ECh. 20.7 - Prob. 20.10PSPCh. 20.7 - Prob. 20.13CECh. 20.7 - Prob. 20.14CECh. 20 - Prob. 1QRTCh. 20 - Prob. 2QRTCh. 20 - Prob. 3QRTCh. 20 - Prob. 4QRTCh. 20 - Prob. 5QRTCh. 20 - Prob. 6QRTCh. 20 - Prob. 7QRTCh. 20 - Prob. 8QRTCh. 20 - Prob. 9QRTCh. 20 - Prob. 10QRTCh. 20 - Prob. 11QRTCh. 20 - Prob. 12QRTCh. 20 - Prob. 13QRTCh. 20 - Prob. 14QRTCh. 20 - Prob. 15QRTCh. 20 - Which Period 4 transition-metal ions are...Ch. 20 - Prob. 17QRTCh. 20 - Prob. 18QRTCh. 20 - Prob. 19QRTCh. 20 - Prob. 20QRTCh. 20 - Prob. 21QRTCh. 20 - Prob. 22QRTCh. 20 - Prob. 23QRTCh. 20 - Prob. 24QRTCh. 20 - Prob. 25QRTCh. 20 - Prob. 26QRTCh. 20 - Prob. 27QRTCh. 20 - Prob. 28QRTCh. 20 - Prob. 29QRTCh. 20 - Prob. 30QRTCh. 20 - Prob. 31QRTCh. 20 - Prob. 32QRTCh. 20 - Prob. 33QRTCh. 20 - Prob. 34QRTCh. 20 - Prob. 35QRTCh. 20 - Prob. 36QRTCh. 20 - Prob. 37QRTCh. 20 - Prob. 38QRTCh. 20 - Prob. 39QRTCh. 20 - Prob. 40QRTCh. 20 - Prob. 41QRTCh. 20 - Prob. 42QRTCh. 20 - Prob. 43QRTCh. 20 - Prob. 44QRTCh. 20 - Prob. 45QRTCh. 20 - Prob. 46QRTCh. 20 - Prob. 47QRTCh. 20 - Prob. 48QRTCh. 20 - Prob. 49QRTCh. 20 - Prob. 50QRTCh. 20 - Prob. 51QRTCh. 20 - Prob. 52QRTCh. 20 - Give the charge on the central metal ion in each...Ch. 20 - Prob. 54QRTCh. 20 - Prob. 55QRTCh. 20 - Classify each ligand as monodentate, bidentate,...Ch. 20 - Prob. 57QRTCh. 20 - Prob. 58QRTCh. 20 - Prob. 59QRTCh. 20 - Prob. 60QRTCh. 20 - Prob. 61QRTCh. 20 - Prob. 62QRTCh. 20 - Prob. 63QRTCh. 20 - Prob. 64QRTCh. 20 - Prob. 65QRTCh. 20 - Prob. 66QRTCh. 20 - Prob. 67QRTCh. 20 - Prob. 68QRTCh. 20 - Prob. 69QRTCh. 20 - Prob. 70QRTCh. 20 - Prob. 71QRTCh. 20 - Prob. 72QRTCh. 20 - Prob. 73QRTCh. 20 - Prob. 74QRTCh. 20 - How many unpaired electrons are in the high-spin...Ch. 20 - Prob. 76QRTCh. 20 - Prob. 77QRTCh. 20 - Prob. 78QRTCh. 20 - An aqueous solution of [Rh(C2O4)3]3− is yellow....Ch. 20 - Prob. 80QRTCh. 20 - Prob. 81QRTCh. 20 - Prob. 82QRTCh. 20 - Prob. 83QRTCh. 20 - Prob. 84QRTCh. 20 - Give the electron configuration of (a) Ti3+. (b)...Ch. 20 - Prob. 86QRTCh. 20 - Prob. 87QRTCh. 20 - Prob. 88QRTCh. 20 - Prob. 89QRTCh. 20 - Prob. 90QRTCh. 20 - Prob. 91QRTCh. 20 - Prob. 92QRTCh. 20 - Prob. 93QRTCh. 20 - Prob. 94QRTCh. 20 - Prob. 95QRTCh. 20 - Prob. 96QRTCh. 20 - Prob. 97QRTCh. 20 - Prob. 98QRTCh. 20 - Prob. 99QRTCh. 20 - Prob. 100QRTCh. 20 - Prob. 101QRTCh. 20 - Prob. 103QRTCh. 20 - Prob. 104QRTCh. 20 - Prob. 105QRTCh. 20 - Prob. 106QRTCh. 20 - Repeat the directions for Question 106 using a...Ch. 20 - Prob. 113QRTCh. 20 - Prob. 114QRTCh. 20 - Prob. 115QRTCh. 20 - Prob. 116QRTCh. 20 - Prob. 117QRTCh. 20 - Prob. 118QRTCh. 20 - Prob. 119QRTCh. 20 - Prob. 120QRTCh. 20 - The glycinate ion (gly) is H2NCH2CO2. It can act...Ch. 20 - Five-coordinate coordination complexes are known,...Ch. 20 - Prob. 123QRTCh. 20 - Prob. 124QRTCh. 20 - Two different compounds are known with the formula...Ch. 20 - Prob. 126QRT
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