Concept explainers
(a)
Interpretation: The formula for the given coordination complex needs to be determined.
- Hexakis(pyridine)cobalt(III) chloride
Concept Introduction: A coordination complex is composed of two main parts; metal atom/ ion and ligand. Ligands are the atom/ group of atom/ ion that can donate its extra pair of electrons to the electron deficient metal cation. It leads to the formation of coordinate bond between metal ion and ligand.
(a)

Answer to Problem 73AE
Explanation of Solution
In the formula of writing and naming of coordination complex; IUPAC rule must be followed.
- Atomic symbol of the metal center must be written first in the square bracket.
- Ligands must be written after metal symbol in sequence of anion then neutral ligand.
- The ligands must be written in alphabetical order.
- The number of ligands or metal must be indicated as sub-script.
- Counter ion must be written outside the square bracket.
In Hexakis(pyridine)cobalt(III) chloride; chloride ion is counter ion with
(b)
Interpretation: The formula for the given coordination complex needs to be determined.
- Pentaammineiodochromium(III) iodide
Concept Introduction: A coordination complex is composed of two main parts; metal atom/ ion and ligand. Ligands are the atom/ group of atom/ ion that can donate its extra pair of electrons to the electron deficient metal cation. It leads to the formation of coordinate bond between metal ion and ligand.
(b)

Answer to Problem 73AE
Explanation of Solution
In the formula of writing and naming of coordination complex; IUPAC rule must be followed.
- Atomic symbol of the metal center must be written first in the square bracket.
- Ligands must be written after metal symbol in sequence of anion then neutral ligand.
- The ligands must be written in alphabetical order.
- The number of ligands or metal must be indicated as sub-script.
- Counter ion must be written outside the square bracket.
In Pentaammineiodochromium(III) iodide; iodide ion is counter ion with
(c)
Interpretation: The formula for the given coordination complex needs to be determined.
- Tris(ethylenediamine)nickel(II) bromide
Concept Introduction: A coordination complex is composed of two main parts; metal atom/ ion and ligand. Ligands are the atom/ group of atom/ ion that can donate its extra pair of electrons to the electron deficient metal cation. It leads to the formation of coordinate bond between metal ion and ligand.
(c)

Answer to Problem 73AE
Explanation of Solution
In the formula of writing and naming of coordination complex; IUPAC rule must be followed.
- Atomic symbol of the metal center must be written first in the square bracket.
- Ligands must be written after metal symbol in sequence of anion then neutral ligand.
- The ligands must be written in alphabetical order.
- The number of ligands or metal must be indicated as sub-script.
- Counter ion must be written outside the square bracket.
In Tris(ethylenediamine)nickel(II) bromide; bromide ion is counter ion with
(d)
Interpretation: The formula for the given coordination complex needs to be determined.
- Potassium tetracyanonickelate(II)
Concept Introduction: A coordination complex is composed of two main parts; metal atom/ ion and ligand. Ligands are the atom/ group of atom/ ion that can donate its extra pair of electrons to the electron deficient metal cation. It leads to the formation of coordinate bond between metal ion and ligand.
(d)

Answer to Problem 73AE
Explanation of Solution
In the formula of writing and naming of coordination complex; IUPAC rule must be followed.
- Atomic symbol of the metal center must be written first in the square bracket.
- Ligands must be written after metal symbol in sequence of anion then neutral ligand.
- The ligands must be written in alphabetical order.
- The number of ligands or metal must be indicated as sub-script.
- Counter ion must be written outside the square bracket.
In Potassium tetracyanonickelate(II); potassium ion is counter ion with
(e)
Interpretation: The formula for the given coordination complex needs to be determined.
- Tetraamminedichloroplatinum(IV) tetrachloroplatinate(II)
Concept Introduction: A coordination complex is composed of two main parts; metal atom/ ion and ligand. Ligands are the atom/ group of atom/ ion that can donate its extra pair of electrons to the electron deficient metal cation. It leads to the formation of coordinate bond between metal ion and ligand.
(e)

Answer to Problem 73AE
Explanation of Solution
In the formula of writing and naming of coordination complex; IUPAC rule must be followed.
- Atomic symbol of the metal center must be written first in the square bracket.
- Ligands must be written after metal symbol in sequence of anion then neutral ligand.
- The ligands must be written in alphabetical order.
- The number of ligands or metal must be indicated as sub-script.
- Counter ion must be written outside the square bracket.
In Tetraamminedichloroplatinum(IV) tetrachloroplatinate(II); both cation and anion are complex ions. Cation Tetraamminedichloroplatinum(IV), has 4 ammine ligands, two chloro ligands with
Hence the formula must be
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Chapter 19 Solutions
Chemical Principles
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- What would be the best choices for the missing reagents 1 and 3 in this synthesis? 1. PPh3 2 2. n-BuLi 3 Draw the missing reagents in the drawing area below. You can draw them in any arrangement you like. • Do not draw the missing reagent 2. If you draw 1 correctly, we'll know what it is. • Note: if one of your reagents needs to contain a halogen, use bromine. Explanation Check Click and drag to start drawing a structure.arrow_forwardPredict the products of this organic reaction: NaBH3CN + NH2 ? H+ Click and drag to start drawing a structure. ×arrow_forwardPredict the organic products that form in the reaction below: + OH +H H+ ➤ ☑ X - Y Note: You may assume you have an excess of either reactant if the reaction requires more than one of those molecules to form the products. In the drawing area below, draw the skeletal ("line") structures of the missing organic products X and Y. You may draw the structures in any arrangement that you like, so long as they aren't touching. Click and drag to start drawing a structure. Garrow_forward
- Predict the organic products that form in the reaction below: OH H+ H+ + ☑ Y Note: You may assume you have an excess of either reactant if the reaction requires more than one of those molecules to form the products. In the drawing area below, draw the skeletal ("line") structures of the missing organic products X and Y. You may draw the structures in any arrangement that you like, so long as they aren't touching. Click and drag to start drawing a structure. ✓ marrow_forwardDetermine the structures of the missing organic molecules in the following reaction: + H₂O +H H+ Y Z ☑ ☑ Note: Molecules that share the same letter have the exact same structure. In the drawing area below, draw the skeletal ("line") structures of the missing organic molecules X, Y, and Z. You may draw the structures in any arrangement that you like, so long as they aren't touching. Molecule X shows up in multiple steps, but you only have to draw its structure once. Click and drag to start drawing a structure. AP +arrow_forwardPlease help, this is all the calculations i got!!! I will rate!!!Approx mass of KMnO in vial: 3.464 4 Moss of beaker 3×~0. z Nax200: = 29.9219 Massof weacerv after remosimgain N2C2O4. Need to fill in all the missing blanks. ง ง Approx mass of KMnO4 in vials 3.464 Mass of beaker + 3x ~0-304: 29.9219 2~0.20 Miss of beaker + 2x- 29.7239 Mass of beaker + 1x~0.2g Naz (204 29-5249 Mass of beaver after removing as qa Na₂ C₂O T1 T2 T3 Final Buiet reading Initial butet reading (int)) Hass of NaOr used for Titration -reading (mL) calculation Results: 8.5ml 17mL 27.4mL Oml Om Oml T1 T2 T3 Moles of No CO Moles of KMO used LOF KM. O used Molenty of KMNO Averagem Of KMOWLarrow_forward
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