(a)
To suggest:
An appropriate material for the following applications, and, if necessary recommend corrosion prevention measures.
Laboratory bottles to contain relatively dilute solutions of nitric acid.
(b)
To suggest:
An appropriate material for the following applications, and, if necessary recommend corrosion prevention measures.
Barrels to contain benzene:
(c)
To suggest:
An appropriate material for the following applications, and, if necessary recommend corrosion prevention measures.
Pipe to transport hot alkaline (basic) solutions:
(d)
To suggest:
An appropriate material for the following applications, and, if necessary recommend corrosion prevention measures.
Underground tanks to store large quantities of high-purity water:
(e)
To suggest:
An appropriate material for the following applications, and, if necessary recommend corrosion prevention measures.
Architectural trim for high-rise buildings:
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MATERIALS SCI.+ENGR.:INTRO.-NEXTGEN
- + C/E, 4 TA b IA + 2V C/E 2 +1 - C + V3 - C/EU - ча - V4 + e + /E3 V2 12V a (a) Find currents L, L2 and is (b) Find Voltages V, V2, V3 and V4 - 2A CIEG For each circuit element and the two sources state whether they are ABSORBING SUPPLYING pores and how much poner 13 absorbed or supplied. +arrow_forwardPlease solve part a, b and c Also, find the impulse response g(t) for the systemarrow_forwardCalculate the collapse load (P) for the two fixed ended beam shown below. Use virtual work method P 2 m 4 m L= 6 marrow_forward
- Consider the lateral dynamics of a vectored thrust aircraft as described in Example 3.12. Show that the dynamics can be described using the following block diagram: Ꮎ r ալ -mg Σ J82 ע 1 X ms² + cs Use this block diagram to compute the transfer functions from u₁ to 0 and x and show that they satisfy Нои r Js² - mgr Js²' Hau₁ Js2 (ms2+cs)arrow_forwardFind the maximum distributed load can be applied to the two fixed ends beam shown below. Use Virtual work method Wu L=6marrow_forwardCalculate the collapse load (P) for the two fixed ended beam shown below. Use virtual work method P 2 m 4 m L=6marrow_forward
- Question 1 (Approximate Method - Superposition). Using Superposition determine the displacement at C of this beam. El is constant. (Note - you must use the PE Handbook Shears, Moments and Deflection Tables. The FE handbook does not have one of these conditions) (On an exam I will make sure it is found in both the FE and the PE handbook). 60 kN 30 kN/m A C 3 m 3 m B Question 2 (Slope and Deflection - virtual work - statically determinate beam) Using virtual work determine the slope at A and the displacement at C of this beam. El is constant. Same beam as question #1arrow_forwarddny dn-1y dn-1u dn-24 +a1 + + Any = bi +b₂- + +bnu. dtn dtn-1 dtn-1 dtn-2 a) Let be a root of the characteristic equation 1 sn+a1sn- + +an = : 0. Show that if u(t) = 0, the differential equation has the solution y(t) = e\t. b) Let к be a zero of the polynomial b(s) = b₁s-1+b2sn−2+ Show that if the input is u(t) equation that is identically zero. = .. +bn. ekt, then there is a solution to the differentialarrow_forwardConsider the system dx ax+u. dt Compute the exponential response of the system and use this to derive the transfer function from u to x. Show that when s = a, a pole of the transfer function, the response to the exponential input u(t) = est is x(t) = eat x(0) + teat. For solving the system with u = eat eat you can't use the transfer function because the denominator is zero. Try using the convolution integral solution with initial conditions set as x(t) = eat x (0) + fo g(t − T)u(T)dT - g(t) is the impulse response of the system.arrow_forward
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