(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.
![Check Mark](/static/check-mark.png)
Answer to Problem 19P
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.
![Check Mark](/static/check-mark.png)
Answer to Problem 19P
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.
![Check Mark](/static/check-mark.png)
Answer to Problem 19P
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.
![Check Mark](/static/check-mark.png)
Answer to Problem 19P
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
INTRO.TO GENERAL,ORGAN...-OWLV2 ACCESS
- 5. a. Data were collected for Trial 1 to determine the molar mass of a nonvolatile solid solute when dissolved in cyclo- hexane. Complete the table for the analysis (See Report Sheet). Record calculated values with the correct number of significant figures. B. Freezing Point of Cyclohexane plus Calculation Zone Unknown Solute 2. Mass of cyclohexane (g) 10.14 Part C.4 3. Mass of added solute (g) 0.255 C. Calculations 1. k; for cyclohexane (°C⚫ kg/mol) 20.0 2. Freezing point change, AT, (°C) 3.04 Part C.6 3. Mass of cyclohexane in solution (kg) 4. Moles of solute, total (mol) Show calculation. 5. Mass of solute in solution, total (g) 6. Molar mass of solute (g/mol) Show calculation.arrow_forwardDraw and name the R groups of all 20 amino acids.arrow_forward3. Two solutions are prepared using the same solute: Solution A: 0.14 g of the solute dissolves in 15.4 g of t-butanol Solution B: 0.17 g of the solute dissolves in 12.7 g of cyclohexane Which solution has the greatest freezing point change? Show calculations and explain.arrow_forward
- 2. Give the ground state electron configuration (e.g., 02s² σ*2s² П 2p²) for these molecules and deduce its bond order. Ground State Configuration Bond Order H2+ 02- N2arrow_forward1. This experiment is more about understanding the colligative properties of a solution rather than the determination of the molar mass of a solid. a. Define colligative properties. b. Which of the following solutes has the greatest effect on the colligative properties for a given mass of pure water? Explain. (i) 0.01 mol of CaCl2 (ii) 0.01 mol of KNO3 (iii) 0.01 mol of CO(NH2)2 (an electrolyte) (an electrolyte) (a nonelectrolyte)arrow_forward5. b. For Trials 2 and 3, the molar mass of the solute was 151 g/mol and 143 g/mol respectively. a. What is the average molar mass of the solute ? b. What are the standard deviation and the relative standard deviation (%RSD) for the molar mass of the solute ?arrow_forward
- Show work. Don't give Ai generated solutionarrow_forward2. Explain why ice cubes formed from water of a glacier freeze at a higher temperature than ice cubes formed from water of an under- ground aquifer. Photodynamic/iStockphotoarrow_forwardShow reaction mechanism. don't give Ai generated solutionarrow_forward
- 7. Draw the Lewis structures and molecular orbital diagrams for CO and NO. What are their bond orders? Are the molecular orbital diagrams similar to their Lewis structures? Explain. CO Lewis Structure NO Lewis Structure CO Bond Order NO Bond Order NO Molecular Orbital Diagram CO Molecular Orbital Diagramarrow_forward5. The existence of compounds of the noble gases was once a great surprise and stimulated a great deal of theoretical work. Label the molecular orbital diagram for XeF (include atom chemical symbol, atomic orbitals, and molecular orbitals) and deduce its ground state electron configuration. Is XeF likely to have a shorter bond length than XeF+? Bond Order XeF XeF+arrow_forward6. Draw the molecular orbital diagram shown to determine which of the following is paramagnetic. B22+ B22+, B2, C22, B22 and N22+ Molecular Orbital Diagram B2 C22- B22- N22+ Which molecule is paramagnetic?arrow_forward
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