SOLVE STEP BY STEP WITHOUT ARTIFICIAL INTELLIGENCE, SOLVE BY HAND STEP BY STEP Using the flexibility method, calculate the reactions for each case and draw the shear force and bending moment diagrams. DIMENSIONS IN m 3 Ton/m B A 5.00
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- Part A Calculate the total binding energy, and the binding energy per nucleon, for Li. The masses of the atoms of Li and H are 7.016004 u and 1.007825 u, respectively. The mass of a neutron is 1.008665 u. Express your answers using four significant figures separated by a comma. Etotal, Eper nucleon = MeVH.W Determine the angle (0) and the normal reaction (N) between the cylinder and the smooth horizontal surface in the following figure. 100ON 50ON 学不年學 玲搭冷 玲玲please find the answer
- Please help. This problem involves nuclear reactor period. Thank you.Solve for all of th reactions of the connections shown. Show and Label a Free Body Diagram and Solve for your values of the reactions.This is the lab and It is not the writing assignment. please help me with this. I appreciate it. Thank you! please don't reject it!!
- Your Question :help please answer in text form with proper workings and explanation for each and every part and steps with concept and introduction no AI no copy paste remember answer must be in proper format with all working!The rate of decay of the radioactive isotope Free Neutron 239 is given by: M = -1.1 x 10-³M where M is the mass of the isotope in grams and t is time measured in minutes. A sample initially contains 3 grams of the isotope. What is the mass of the isotope present in the sample after 320 minutes? The mass is grams. Round your answer to 3 significant figures, if needed. b) How long does it take for the mass of the isotope in the sample to fall to 1.5 gram? It takes t = minutes. Round your answer to the nearest integer if needed.A biologist has a 6894-gram sample of a radioactive substance. Find the mass of the sample after two hours if it decreases according to a continuous exponential decay model, at a relative rate of 9% per hour. Do not round any intermediate computations, and round your answer to the nearest tenth. grams