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Concept explainers
(a)
Interpretation: To determine the two reactants in the first step of the sulfate assimilation process.
Concept introduction: Sulfate assimilation is the process used for the production of hydrogen sulfide. The starting material for sulfate assimilation is sulfate ion. It is an oxidation-reduction process as the sulfur in sulfate ion is in oxidized form and in hydrogen sulfide it is present in the reduced form.
(b)
Interpretation: To determine the nonsulfur-containing reactant in the second step of the sulfate assimilation process.
Concept introduction: Sulfate assimilation is the process used for the production of hydrogen sulfide. The starting material for sulfate assimilation is sulfate ion. It is an oxidation-reduction process as the sulfur in sulfate ion is in oxidized form and in hydrogen sulfide it is present in the reduced form.
(c)
Interpretation: To determine the sulfur-containing product in the third step of the sulfate assimilation process.
Concept introduction: Sulfate assimilation is the process used for the production of hydrogen sulfide. The starting material for sulfate assimilation is sulfate ion. It is an oxidation-reduction process as the sulfur in sulfate ion is in oxidized form and in hydrogen sulfide it is present in the reduced form.
(d)
Interpretation: To determine the reactants in the fourth step of the sulfate assimilation process.
Concept introduction: Sulfate assimilation is the process used for the production of hydrogen sulfide. The starting material for sulfate assimilation is sulfate ion. It is an oxidation-reduction process as the sulfur in sulfate ion is in oxidized form and in hydrogen sulfide it is present in the reduced form.
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Chapter 26 Solutions
EBK GENERAL, ORGANIC, AND BIOLOGICAL CH
- Nonearrow_forward3. A molecular form of "dicarbon", C2, can be generated in gas phase. Its bond dissociation energy has been determined at 599 kJ/mol. Use molecular orbital theory to explain why energy of dissociation for C₂+ is 513 kJ/mol, and that for C2² is 818 kJ/mol. (10 points)arrow_forward9.73 g of lead(IV) chloride contains enough Cl- ions to make ____ g of magnesium chloride.arrow_forward
- 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
- 4. Assign the following molecules to proper point groups: Pyridine N 1,3,5-triazine N Narrow_forward7. a) Under normal conditions (room temperature & atmospheric pressure) potassium assumes bcc lattice. Atomic radius for 12-coordinate K atom is listed as 235 pm. What is the radius of potassium atom under normal conditions? (3 points) b) Titanium metal crystallyzes in hcp lattice. Under proper conditions nitrogen can be absorbed into the lattice of titanium resulting in an alloy of stoichiometry TiNo.2. Is this compound likely to be a substitutional or an interstitial alloy? (Radius of Ti (12-coordinate) is 147 pm; radius of N atom is 75 pm. (3 points)arrow_forwardcan someone answer the questions and draw out the complete mechanismarrow_forward
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