4. Determine the reactions R1 and R2 (: 12 kN 15 kN/m 8 kN/m 2 m 3 m 3 m R2
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A: Thank you
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A: mass converted to energy = 8.60×109 Joules
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A: Given: A diagram representation is given as,
Q: For the following reaction, what is the energy released, in GJ/mol? (1 GJ = 1E9 J) Use 2.998E8 m/s…
A: Given,
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A: mass of proton (m) = 1.67×10-27 kg speed of proton (v) = 0.92 c
Q: 92 88 84 80 76 (73.2, 73 6) 72 68 64 60 56 52 48 44 40 36 32 28 24 20 16 12 4 o 0.0, 0)- 10 20 30 40…
A:
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A: e-+ρ+→π++K-rest mass of electron m0e=0.51 MeV/c2rest mass of rho, m0ρ=775 MeV/c2rest mass of pion,…
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A: See below
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A: Step 1: Step 2: Step 3: Step 4: solution is given above
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Q: The magnitude and direction of the resultant force experienced by b is... If qa= +20µC, qb = +5µC,…
A: qa = 20μC qb = 5μC qc = -35 μC qd = -15 μC Width of rectangle = 0.75 m Length of rectangle = 2 m…
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- Chapter 37, Problem 047 A 3-grain aspirin tablet has a mass of 192 mg. For how many kilometers would the energy equivalent of this mass power an automobile? Assume 12.07 km/L and a heat of combustion of 3.07 × 10' J/L for the gasoline used in the automobile. Number Units210- 84 X (atomic mass = 209.98285 u) undergoes a decay. Assuming all the released energy is in the form of kinetic energy of the a particle (atomic mass = 4.002603 u) and ignoring the recoil of the daughter nucleus (206X1 atomic mass = 205.97444 u), find the speed of the a particle. 82 Ignore relativistic effects. Number UnitsConsider the reaction 235 U 92 1 0 148 57 87 35 La Br Element Atomic Mass (u) 235 92 U U + 1 U 0 n → U 148 57 La + 235.043923 1.008665 147.932236 86.92071119 87 35 Br + 1 (a) Write the conservation of relativistic energy equation symbolically in terms of the rest energy and the kinetic energy, setting the initial total energy to the final total energy. (Use the following as necessary: m;, mf, KE, KE, and c.) 0 (b) Using values given above, find the total mass of the initial particles (in u). n. (c) Using the values given above, find the total mass of the particles after the reaction takes place (in u). (d) Subtract the final particle mass from the initial particle mass. (Enter your answer in u.) (e) Convert the answer to part (d) to MeV, obtaining the kinetic energy of the daughter particles. Neglect the kinetic energy of the reactants. MeV