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(a)
Interpretation:
Product formed by the fusion of two
Concept Introduction:
Nuclear fusion is the reaction between two or more nuclei and which comes close enough to form one or more different atomic nuclei and subatomic particle.
(b)
Interpretation:
Energy released during the reaction has to be determined.
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
It can be calculated using the given formula,
Change in mass of a given reaction can be determined as given,
(c)
Interpretation:
Number of positron released during the given reaction has to be determined.
Concept Introduction:
Nuclear reaction: A nuclear reaction in which a lighter nucleus fuses together into new stable nuclei or a heavier nucleus split into stable daughter nuclei with the release of large amount of energy.
Common particles in radioactive decay and nuclear transformations are mentioned below,
(d)
Interpretation:
Changes in mass per kilogram of dilithium and of Helium-4 have to be compared.
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
It can be calculated using the given formula,
Change in mass of a given reaction can be determined as given,
(e)
Interpretation:
Change in mass per kilogram for method used in current fusion reactors has to be compared.
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
It can be calculated using the given formula,
Change in mass of a given reaction can be determined as given,
(f)
Interpretation:
Change in mass of the given reaction has to be determined and compared with the value of dilithium reaction.
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
It can be calculated using the given formula,
Change in mass of a given reaction can be determined as given,
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Chapter 24 Solutions
ALEKS 360 for Silberberg Chemistry: The Molecular Nature of Matter and Change
- Write the calculate the reaction quotient for the following system, if the partial pressure of all reactantsand products is 0.15 atm: NOCl (g) ⇌ NO (g) + Cl2 (g) H = 20.5 kcalarrow_forwardComplete the spectroscopy with structurearrow_forwardcould you answer the questions and draw the complete mechanismarrow_forward
- Complete the spectroscopy with structurearrow_forwardCalculate the reaction quotient for the reaction:NaOH (s) ⇌ Na+ (aq)+ OH- (aq) + 44.4 kJ [Na+] = 4.22 M [OH-] = 6.41 Marrow_forwardGiven the following concentrations for a system, calculate the value for the reaction quotient: Cl2(g)+ CS2(g) ⇌ CCl4(g)+ S2Cl2(g) Cl2 = 31.1 atm CS2 = 91.2 atm CCl4 = 2.12 atm S2Cl2 = 10.4 atmarrow_forward
- Match each chemical or item with the proper disposal or cleanup mwthod, Not all disposal and cleanup methods will be labeled. Metal sheets C, calcium, choroide solutions part A, damp metal pieces Part B, volumetric flask part A. a.Return to correct lables”drying out breaker. Place used items in the drawer.: Rinse with deionized water, dry as best you can, return to instructor. Return used material to the instructor.: Pour down the sink with planty of running water.: f.Pour into aqueous waste container. g.Places used items in garbage.arrow_forwardWrite the equilibrium constant expression for the following reaction: HNO2(aq) + H2O(l) ⇌ H3O+(aq) + NO2-(aq)arrow_forwardWrite the reaction quotient for: Pb2+(aq) + 2 Cl- (aq) ⇌ PbCl2(s)arrow_forward
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