
(a)
Interpretation:
The unknown particle in the given nuclear process has to be completed.
Concept Introduction:
Balancing
- The sum of the mass numbers of the reactants should be equal to the sum of mass numbers of the products in the reaction.
- The sum of
atomic numbers (or the atomic charge) of the reactants should be equal to the sum of atomic numbers (or the atomic charge) of the products in the reaction.
(a)

Explanation of Solution
The bombardment of Deuterium nuclei with Cadmium-114, produce an unknown particle and a proton particle. The unknown particle is predicted by the rule that says the
The elemental representation is,
The complete nuclear reaction is
(b)
Interpretation:
The unknown particle in the given nuclear process has to be completed.
Concept Introduction:
Balancing nuclear reaction equation: The balanced nuclear reaction should conserve both mass number and atomic number.
- The sum of the mass numbers of the reactants should be equal to the sum of mass numbers of the products in the reaction.
- The sum of atomic numbers (or the atomic charge) of the reactants should be equal to the sum of atomic numbers (or the atomic charge) of the products in the reaction.
(b)

Explanation of Solution
The bombardment of Deuterium nuclei with Lithium-6, produce an unknown particle and a neutron particle. The unknown particle is predicted by the rule that says the atomic and mass number must be equal.
The elemental representation is written as
The complete nuclear reaction is
(c)
Interpretation:
The unknown particle in the given nuclear process has to be completed.
Concept Introduction:
Balancing nuclear reaction equation: The balanced nuclear reaction should conserve both mass number and atomic number.
- The sum of the mass numbers of the reactants should be equal to the sum of mass numbers of the products in the reaction.
- The sum of atomic numbers (or the atomic charge) of the reactants should be equal to the sum of atomic numbers (or the atomic charge) of the products in the reaction.
(c)

Explanation of Solution
The bombardment of Deuterium nuclei with Calcium-40, produce Potassium and an unknown particle. The unknown particle is predicted by the rule that says the atomic and mass number must be equal.
The elemental representation is written as
The complete nuclear reaction is
(d)
Interpretation:
The unknown particle in the given nuclear process has to be completed.
Concept Introduction:
Balancing nuclear reaction equation: The balanced nuclear reaction should conserve both mass number and atomic number.
- The sum of the mass numbers of the reactants should be equal to the sum of mass numbers of the products in the reaction.
- The sum of atomic numbers (or the atomic charge) of the reactants should be equal to the sum of atomic numbers (or the atomic charge) of the products in the reaction.
(d)

Explanation of Solution
The bombardment of Deuterium nuclei with unknown particle, produce Zinc-65 and an emission of gamma particle. The unknown particle is predicted by the rule that says the atomic and mass number must be equal.
The elemental representation is written as
The complete nuclear reaction is.
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Chapter 25 Solutions
OWLv2 6-Months Printed Access Card for Kotz/Treichel/Townsend's Chemistry & Chemical Reactivity, 9th, 9th Edition
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- Alcohols can be synthesized using an acid-catalyzed hydration of an alkene. An alkene is combined with aqueous acid (e.. sulfuric acid in water). The reaction mechanism typically involves a carbocation intermediate. > 3rd attempt 3343 10 8 Draw arrows to show the reaction between the alkene and hydronium ion. that 2nd attempt Feedback 1st attempt تعمال Ju See Periodic Table See Hint F D Ju See Periodic Table See Hintarrow_forwardDraw the simplified curved arrow mechanism for the reaction of acetone and CHgLi to give the major product. 4th attempt Π Draw the simplified curved arrow mechanism T 3rd attempt Feedback Ju See Periodic Table See Hint H -H H -I H F See Periodic Table See Hintarrow_forwardSelect the correct reagent to accomplish the first step of this reaction. Then draw a mechanism on the Grignard reagent using curved arrow notation to show how it is converted to the final product. 4th attempt Part 1 (0.5 point) Select the correct reagent to accomplish the first step of this reaction. Choose one: OA Mg in ethanol (EtOH) OB. 2 Li in THF O C. Li in THF D. Mg in THF O E Mg in H2O Part 2 (0.5 point) Br Part 1 Bri Mg CH B CH, 1 Draw intermediate here, but no arrows. © TE See Periodic Table See Hint See Hint ין Harrow_forward
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