Explain the principles of electrostatic painting process in car industry using the electric forces on uncharged objects.
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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?
- If I have 2.4 kg of Silver that I need to melt at the melting point , how much heat needs to be added? (Lf for Silver :88,300) Answer in Joules answer in standard formLy Moving to another question will save this response. Question 36 There is L three-dimensional crystal structures? Moving to another question will save this response. OL LO 0 WQuestion 15 x (m) 10- 12 Which of the following equations will enable you to find the work done shown in the graph above? A W=[ Fdr B. W=EFrcosé C.W = mgsin0 D.W = Ar(F +F + F3) OB
- PROBLEM: VIE-23 BOOK: ENGINEERING THERMOFLUIDS, M. MASSOUD (You can answer my question even if it's rough or with assumptions, I just need an overview on how to solve this kind of problem please, Thanks)se Finals prep & more: Get help from live tutorsTry bartleby tutorarrow_forward Question Asked Jun 17, 2020 1 views As a researcher in the field of heat transfer, how will you distinguish between radiation by black body and a real body? Explain briefly Point out and briefly explain the various factors affect the thermal conductivity of a material. What is the analogical reason between heat transfer by conduction and flow of electricity through ohmic resistance? Use a composite wall of a building to illustrate the concept.A composite slab with three layers of thermal conductivities k1, k2, k3 and thickness t1, t2, t3 respectively, are placed in a close contact. Derive an expression from the first principle for the heat flow through the composite slab per unit surface area in terms of the overall temperature difference across the slab. Based upon the reradiating properties of absorptivity, reflectivity and transmissivity, how would you distinguish between the…Topic: WAVE SUPERPOSITION Sound waves transfers energy to the surrounding molecules causing them to vibrate. It can penetrate as long as there is a medium. But when you try to record a video or presentation, we would not want to have unnecessary background noise. One example is a recording studio where singers usually utilize to make a clear recording of their song. How does a recording studio work?
- zain 1Q 2G 3G zain IQ Z Questions of Lectu... -> Questions of Lecture Four: Q1)) Answer the following briefly: What is means of Crystal structure? What the different between crystalline and amorphous structures? List the common lattice structures and give two examples for each? What the means of imperfections (defects) in the material crystals and why it happen? What are the differences between crystals imperfections types? How metallic crystals can deform elastically and plastically? Q2)) Fill the following blanks: A) Crystal structure can be found as -------- and ----------. B) Metals lattice structures are divide to -----, C) The three kinds of crystals imperfections can arise are --------, ---------, ----- Q3) Draw the following Point defects of crystals: (a) Vacancy, (b) ion-pair vacancy (Schottky), (c) interstitially, (d) displaced ion (Frenkel).What is the difference between normalizing process, annealing process, hardening process and tempering process? With net sketchAnswer the folowing with True or False. Density of a foam material depends on the wall thickness and size of its foam cells. ( ) BCC structure is more densely packed than the FCC structure. ( ) The anion – cation size ratio has an important influence in determining the crystal structure of ionic solids. ( ) CFRP and GFRP are examples of hybrid materials. ( ) The density of a material is determined exclusively by its atomic weight. ( ) Body diagonal in BCC structure has Miller indices of [111]. ( ) The relationship s = Ee is known the Ohms law. ( ) A closed packed triangular plane in FCC crystal has Miller indices of (111). ( )