(a)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(a)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(b)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(b)
Explanation of Solution
Beta particle is emitted.
The parent nuclide is
Since, there is no change in the mass number of the resultant nuclide; this indicates that the particle emitted is a beta particle.
(c)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(c)
Explanation of Solution
Beta particle is emitted.
The parent nuclide is
Since, there is no change in the mass number of the resultant nuclide; this indicates that the particle emitted is a beta particle.
(d)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(d)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(e)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(e)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(f)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(f)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(g)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(g)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(h)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(h)
Explanation of Solution
Beta particle is emitted.
The parent nuclide is
Since, there is no change in the mass number of the resultant nuclide. Thus, the particle emitted is a beta particle.
(i)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(i)
Explanation of Solution
Beta particle is emitted.
The parent nuclide is
Since, there is no change in the mass number of the resultant nuclide. Thus, the particle emitted is a beta particle.
(j)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(j)
Explanation of Solution
Alpha particle is emitted.
The parent nuclide is
Since, there is change of
(k)
Interpretation: Progressive decay series of Thorium-
Concept introduction: Nuclei of radioactive element decompose in various ways. There are two major categories. One involves a change in mass number of the decaying nucleus while others do not. Types of radioactive processes include
Beta particle production decay involves the production of beta particle
A helium nucleus
(k)
Explanation of Solution
No particle is emitted.
The given species, that is
Want to see more full solutions like this?
Chapter 19 Solutions
Chemistry with Access Code, Hybrid Edition
- When natural light falls perpendicularly on a material A, it has a reflectivity of 0.813%. Indicate the value of the refractive index.arrow_forwardIn piezoelectricity and piezoelectric ceramics, one of the following options is false:(A). Piezoelectricity allows an electrical signal to be transformed into a mechanical one.(B). PbZrO3 is a well-known piezoelectric ceramic.(C). Piezoelectricity and ferroelectricity in general have no relationship.(D). One of the applications of piezoelectricity is sonar.arrow_forward(30 MARKS) Give the major product(s ) formed including relevant stereochemistry or the complete reaction conditions for the following reactions. More than one step may be required for each reaction arrow, in which case the steps must be numbered 1), 2) etc. (2 marks each box) h) i) h) OH i) HO H3PO4, heat 2 Brarrow_forward
- Nonearrow_forwardIndicate which option is false(A). Resistivity has a residual component and a thermal component.(B). In some materials resistivity increases with T and in others it decreases.(C). In insulating materials, resistivity is very low.arrow_forwardIn ceramic materials, in relation to polymorphism, the same substance crystallizes differently when external conditions vary. Is this correct?arrow_forward
- Indicate the type of bond that is considered to be a hydrogen bond.(A). Permanent dipole-dipole interaction between polar molecules.(B). Mixed ionic-covalent bond.(C). Principal interatomic bond(D). Van del Waals forces.arrow_forwardRetro aldol: NaOH H₂O H NaOH & d H₂O Harrow_forwardDraw the product of the reaction shown below. Ignore inorganic byproducts. H conc. HBr Drawing Qarrow_forward
- Calculate the atomic packing factor of diamond knowing that the number of Si atoms per cm3 is 2.66·1022 and that the atomic radii of silicon and oxygen are, respectively, 0.038 and 0.117 nm.arrow_forwardA pdf file of your hand drawn, stepwise mechanisms for the reactions. For each reaction in the assignment, you must write each mechanism three times (there are 10 reactions, so 30 mechanisms). (A) do the work on a tablet and save as a pdf., it is expected to write each mechanism out and NOT copy and paste the mechanism after writing it just once. Everything should be drawn out stepwise and every bond that is formed and broken in the process of the reaction, and is expected to see all relevant lone pair electrons and curved arrows. Aldol: NaOH HO H Δ NaOH Δarrow_forwardNonearrow_forward
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistry: An Atoms First ApproachChemistryISBN:9781305079243Author:Steven S. Zumdahl, Susan A. ZumdahlPublisher:Cengage Learning
- General, Organic, and Biological ChemistryChemistryISBN:9781285853918Author:H. Stephen StokerPublisher:Cengage LearningPrinciples of Modern ChemistryChemistryISBN:9781305079113Author:David W. Oxtoby, H. Pat Gillis, Laurie J. ButlerPublisher:Cengage Learning