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Concept explainers
Interpretation:
Balanced
Concept Introduction:
If the reaction occurs in the nucleus of an atom then it is known as nuclear reaction. These reactions are not considered as ordinary
This nuclear reaction can be represented by nuclear equation. This is not a normal chemical equation. Nuclear equation considers the mass number and atomic number of the reactants and products. Unstable nucleus tends to emit radiation spontaneously. During this process the nuclide is transformed into nuclide of another element. Parent nuclide is the one which undergoes the radioactive decay. Daughter nuclide is the one that is formed from parent nuclide after radioactive decay.
The radioactive decay can take place by emission of alpha particle, beta particle or gamma ray emission. Alpha particle decay is a process in which an alpha particle is emitted. This results in the formation of nuclide of different element that has atomic number that is 2 less and mass number that is 4 less than the original nucleus. Beta particle decay is a process in which a beta particle is emitted. This produces a nuclide of different element similar to that of alpha particle decay. The mass number is same as that of parent nuclide while the atomic number increases by 1 unit. Gamma ray emission is a process in which the unstable nucleus emits gamma ray. This occurs along with alpha or beta particle emission. The gamma rays are not shown in the nuclear equation because they do not affect balancing the nuclear equation.
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Explanation of Solution
When uranium-238 undergoes reaction with a neutron, the mass number increases by 1 and there is no change in atomic number. The formed product is uranium-239. This can be represented as shown below,
When a beta emission takes place, the mass number does not change while the atomic number is increased by 1. Therefore, the formed product after beta emission of uranium-239 is neptunium-239. This can be represented as shown below,
When a beta emission takes place, the mass number does not change while the atomic number is increased by 1. Therefore, the formed product after beta emission of neptunium-239 is plutonium-239. This can be represented as shown below,
Balanced nuclear equations for the given conversions are written.
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Chapter 18 Solutions
Chemistry: The Molecular Science
- Question 6 of 7 (1 point) | Question Attempt: 1 of 1 = 1 ✓2 ✓ 3 ✓ 4 ✓ 5 6 ✓ 7 This organic molecule is dissolved in a basic aqueous solution: Jen ✓ ? A short time later sensitive infrared spectroscopy reveals the presence of a new C-OH stretch absorption. That is, must now be a new molecule present with at least one C- OH bond. there 18 In the drawing area below, show the detailed mechanism that could convert the molecule above into the new molecule Ar © + Click and drag to start drawing a structure. Add/Remove step Click and drawing Save For Later Submit Assignmentarrow_forwardCan you please explain this problem to me? I'm very confused about it. Please provide a detailed, step-by-step explanation for me! (ME EX1) Prblm 22arrow_forwardCan you please explain this problems to me? I'm very confused about it. Please provide a detailed, step-by-step explanation for me! (ME EX1) Prblm 30arrow_forward
- This organic molecule is dissolved in a basic aqueous solution: O ? olo RET A short time later sensitive infrared spectroscopy reveals the presence of a new C-OH stretch absorption. That is, there Ar must now be a new molecule present with at least one C - OH bond. In the drawing area below, show the detailed mechanism that could convert the molecule above into the new molecule. $ Add/Remove steparrow_forwardSo the thing is im trying to memorize VESPR Shapes in order to be able to solve problems like so, and I need help with making circles like the second image that's in blue or using an x and y axis plane in order to memorize these and be able to solve those type of problems. Especially like the ones given in the top / first image. (180 , 120 , 109.5) Can you help me with this.arrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forward
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