https://www.sciencedirect.com/science/article/abs/pii/S036013230700025X I want to know what you came up with in this project? pls urgent
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- Mail-Castro Alvarez, Flavio-Cu x W Project Paper.docx X arn-us-east-1-prod-fleet02-xythos.content.blackboardcdn.com/5u1270dbb5a74/28581879?X-Blackboard-Expiration-1665014400000&X-Blackboard-Signature-NIkW%28dvWFpbWGe3%28tdPHIz8DWa0asAf2MVdll iOSt0%3D&X Blackboard-Cl... Q @ Bb 28581878 Type here to search F2 The assembly shown starts from rest when a constant 15-N force T is applied at time t = 0. Find the speed of the 3-kg balls when t = 10 s. You can assume that friction is negligible and that the mass of the rods and disk that T attaches to are very small compared to the balls. F3 O F4 2 n F6 F6 9 F7 2/3 W M A x (1) Glomb, Zach | Microsoft Team x + F8 250% + 1 BO Fo F10 F11 F12 Prick Screen Sys Riq Scroll Lock m 00 400 mm Pause Break 3 kg T 100 mm 70°F Sunny 400 10/4Nanotechnology, the field of building ultrasmall structures one atom at a time, has progressed in recent years. One potential application of nanotechnology is the construction of artificial cells. The simplest cells would probably mimic red blood cells, the body’s oxygen transporters. Nanocontainers, perhaps constructed of carbon, could be pumped full of oxygen and injected into a person’s bloodstream. If the person needed additional oxygen—due to a heart attack or for the purpose of space travel, for example—these containers could slowly release oxygen into the blood, allowing tissues that would otherwise die to remain alive. Suppose that the nanocontainers were cubic and had an edge length of 25 nanometers. What is the volume of one nanocontainer? (Ignore the thickness of the nanocontainer’s wall.)Nanotechnology, the field of building ultrasmall structures one atom at a time, has progressed in recent years. One potential application of nanotechnology is the construction of artificial cells. The simplest cells would probably mimic red blood cells, the body’s oxygen transporters. Nanocontainers, perhaps constructed of carbon, could be pumped full of oxygen and injected into a person’s bloodstream. If the person needed additional oxygen—due to a heart attack or for the purpose of space travel, for example—these containers could slowly release oxygen into the blood, allowing tissues that would otherwise die to remain alive. Suppose that the nanocontainers were cubic and had an edge length of 25 nanometers. Suppose that each nanocontainer could contain pure oxygen pressurized to a density of 85 g/L. How many grams of oxygen could be contained by each nanocontainer?
- Page 4 WS T1 (rev. 2.0) Problems (Part 1) margins below; you'd like to be able to make sense of vour work later when you review for the eaame. (1. A box of length 1 meter and cross-sectional area A has a moveable partition inside it. There is some gas on either side of the partition. The number of particles on the left is Ni = 3x1023. The number particles on the right is N2 = 2x1023. The gas on both sides is in thermal equilibrium at the same temperature T. When the partition settles down to its final position, find the lengths Li and Le of the left and right sides of the box. * 1 m L, L2 inside house is 25°mechanical engineering dynamics please solve question 8Complete the following table for refrigerant-134a. Show your work and explain how you got your values. T (oF) P psia) h (Btu/Ibm) X Phase description 80 78 15 0.6 10 70 180 129.46 110 1.0
- I confused following this picture why (3.85-1.033)*10^-6A session.masteringphysics.com an Canvas Login - Santa Monica College e https://session.masteringphysics.com/m. e MasteringPhysics: Homework 11 A 3180 - kg spacecraft is in a circular or. Chat I Review I Constants The Dyson sphere is an hypothetical spherical structure centered around a star. Inspired by a science fiction story, physicist Freeman Dyson described such a structure for the first time in a scientific paper in 1959. His basic idea consisted of an artificial spherical structure of matter built around a star at a distance comparable to a planetary orbit, with the purpose of capturing the energy radiated by the star and reusing it for industrial purposes Assume the mass of the sun to be 2.00x1030 kg Part A Consider a solid, rigid spherical shell with a thickness of 100 m and a density of 3900 kg/m. The sphere is centered around the sun so that its inner surface is at a distance of 1.50x1011 m from the center of the sun. What is the net force that the sun would exert on such a…The p-v diagram all make sense, but the equations are unreadable. i dont understand where some units have come from etc, could you please further explain the equations. thnks, feel free to take the relevant amount of credits
- x ring 2020-2021) section (1)) dale di microsoft.com/.?culture en-us&country WW&lm deeplink&lmsrc NeutralHomePageWeb&cmpid WebSignin#/school/tab:3717002657/19 First Quiz (strength of materials) (Strength of Materials (Spring 202 The bar has a 60 mm by 15 mm rectangular cross section. If P = 50 kN, determine the normal stress magnitude acting on surface a-a. + 60 mm 54° P = 50 kN 490 0 Ahello, are you able to do the other question bsed on the sample solution? i am unable to get the answer, and i kinda still dont understand. please do a step by step explaination . need to find the values in the yellow boxesare An experiment was done with some particles. These particles were Cx subjected to a field B. It was discovered that the particles only reacted in one of two ways. The reaction is either in the same direction of the field or the opposite direction of the field. The magnitude of the reaction is always [P's C| in either case, and there are always equal amounts of particles in alignment with B or in opposite direction of it. What observations allow you to claim that there is an operator Sz associated with the observations? (Use less than 10 words!) The particle can react linearly in botniclirectionns Witn. the same monient um a. What are the eigenvalues to Ŝ;? Create your own eigenvectors to Ŝz and complete this equation: U. $. IY) = \P SC| 14> c. Before the experiment, these particles are all in the superposition state of all possible states. Considering only the states relevant in this experiment, write down this superposition state with the correct coefficients for each individual…