(a)
Interpretation:
The balanced
Concept Introduction:
An element containing isotopes which are emitting radiations are known as radioactive isotopes. This can emit radiation because of instability its nuclei. Isotopes which are having balance numbers of protons and neutrons are stable, but the serious imbalance can lead to nuclear reaction. The emissions occurs due to nuclear reactions are alpha emission, beta emission, positron emission and gamma emission.
- Alpha emission is an emission of helium nucleus (2 Protons and 2 neutrons) from the elements to stabilize the nucleus.
- Beta emission is an emission of beta particle as electron from nucleus of molecule.
- Positron emission is an emission in electron with positive charge is emitted by nucleus of molecule.
- Gamma radiation is only access energy from nucleus is emitted to stabilize nucleus of molecule.

Answer to Problem 9.25P
Beta emission- Beryllium-10 to Boron-10.
Explanation of Solution
Beryllium-10-
(b)
Interpretation:
The balanced nuclear equation needs to be written and the emitted radiation should be determined for Europium-
Concept Introduction:
An element containing isotopes which are emitting radiations are known as radioactive isotopes. This can emit radiation because of instability its nuclei. Isotopes which are having balance numbers of protons and neutrons are stable but the serious imbalance can lead to nuclear reaction.The emissions occurs due to nuclear reactions are alpha emission, beta emission, positron emission and gamma emission.
- Alpha emission is an emission of helium nucleus (2 Protons and 2 neutrons) from the elements to stabilize the nucleus.
- Beta emission is an emission of beta particle as electron from nucleus of molecule.
- Positron emission is an emission in electron with positive charge is emitted by nucleus of molecule.
- Gamma radiation is only access energy from nucleus is emitted to stabilize nucleus of molecule.

Answer to Problem 9.25P
Gamma emission- Europium-
Explanation of Solution
Europium-
(c)
Interpretation:
The balanced nuclear equation need to be written and the emitted radiation should be determined for Thalium-195 to Mercury-195.
Concept Introduction:
An element containing isotopes which are emitting radiations are known as radioactive isotopes. This can emit radiation because of instability its nuclei. Isotopes which are having balance numbers of protons and neutrons are stable but the serious imbalance can lead to nuclear reaction. The emissions occurs due to nuclear reactions are alpha emission, beta emission, positron emission and gamma emission.
- Alpha emission is an emission of helium nucleus (2 Protons and 2 neutrons) from the elements to stabilize the nucleus.
- Beta emission is an emission of beta particle as electron from nucleus of molecule.
- Positron emission is an emission in electron with positive charge is emitted by nucleus of molecule.
- Gamma radiation is only access energy from nucleus is emitted to stabilize nucleus of molecule.

Answer to Problem 9.25P
Positron emission- Thalium-195 to Mercury-195.
Explanation of Solution
Thallium-195 contains 81 protons and 123 neutrons and emits one positron that is an electron but positively charged and results into a new molecule with one number less
(d)
Interpretation:
The balanced nuclear equation need to be written and the emitted radiation should be determined for Plutonium-239 to uranium-235.
Concept Introduction:
An element containing isotopes which are emitting radiations are known as radioactive isotopes. This can emit radiation because of instability its nuclei. Isotopes which are having balance numbers of protons and neutrons are stable but the serious imbalance can lead to nuclear reaction. The emissions occurs due to nuclear reactions are alpha emission, beta emission, positron emission and gamma emission.
- Alpha emission is an emission of helium nucleus (2 Protons and 2 neutrons) from the elements to stabilize the nucleus.
- Beta emission is an emission of beta particle as electron from nucleus of molecule.
- Positron emission is an emission in electron with positive charge is emitted by nucleus of molecule.
- Gamma radiation is only access energy from nucleus is emitted to stabilize nucleus of molecule.

Answer to Problem 9.25P
Alpha emission- Plutonium-239 to uranium-235.
Explanation of Solution
Plutonium- 239 contains 94 protons and 145 neutrons. It undergoes alpha emission that emits helium nucleus and converted into uranium-235 with 92 protons and 143 neutrons.
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Chapter 9 Solutions
OWLv2 for Bettelheim/Brown/Campbell/Farrell/Torres' Introduction to General, Organic and Biochemistry, 11th Edition, [Instant Access], 1 term (6 months)
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- b. H3C CH3 H3O+ ✓ H OHarrow_forward2. Provide reagents/conditions to accomplish the following syntheses. More than one step is required in some cases. a. CH3arrow_forwardIdentify and provide an explanation that distinguishes a qualitative and quantitative chemical analysis. Provide examples.arrow_forward
- Identify and provide an explanation of the operational principles behind a Atomic Absorption Spectrometer (AAS). List the steps involved.arrow_forwardInstructions: Complete the questions in the space provided. Show all your work 1. You are trying to determine the rate law expression for a reaction that you are completing at 25°C. You measure the initial reaction rate and the starting concentrations of the reactions for 4 trials. BrO³¯ (aq) + 5Br¯ (aq) + 6H* (aq) → 3Br₂ (l) + 3H2O (l) Initial rate Trial [BrO3] [H*] [Br] (mol/L) (mol/L) | (mol/L) (mol/L.s) 1 0.10 0.10 0.10 8.0 2 0.20 0.10 0.10 16 3 0.10 0.20 0.10 16 4 0.10 0.10 0.20 32 a. Based on the above data what is the rate law expression? b. Solve for the value of k (make sure to include proper units) 2. The proposed reaction mechanism is as follows: i. ii. BrО¸¯ (aq) + H+ (aq) → HBrO3 (aq) HBrO³ (aq) + H* (aq) → H₂BrO3* (aq) iii. H₂BrO³* (aq) + Br¯ (aq) → Br₂O₂ (aq) + H2O (l) [Fast] [Medium] [Slow] iv. Br₂O₂ (aq) + 4H*(aq) + 4Br(aq) → 3Br₂ (l) + H2O (l) [Fast] Evaluate the validity of this proposed reaction. Justify your answer.arrow_forwardе. Д CH3 D*, D20arrow_forward
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