(a)
Using the isothermal transformation diagram for an iron-carbon alloy of eutectoid composition, specify the nature of the final microstructure,
Cool rapidly to
(b)
Cool rapidly to
(c)
Cool rapidly to
(d)
Reheat the specimen in part (c) to
(e)
Rapidly cool to 300°C (570°F), hold for 20 s, then quench to room temperature in water. Reheat to 425°C (800°F) for 103 s and slowly cool to room temperature.
(f)
Cool rapidly to 665°C (1230°F), hold for 103 s, then quench to room temperature.
(g)
Rapidly cool to 575°C (1065°F), hold for 20 s, rapidly cool to 350°C (660°F), hold for 100 s, then quench to room temperature.
(h)
Rapidly cool to 350°C (660°F), hold for 150 s, then quench to room temperature:
Trending nowThis is a popular solution!
Chapter 11 Solutions
FUND MAT SCI+ENG ACCESS+EPUB
- Suggest a synthesis of diol (30) (30) HO OHLarrow_forwardNEED HANDWRITTEN SOLUTION DO NOT USE AIarrow_forwardGiven the negative edge-triggered D-FF circuit shown below left: (a). Determine the excitation and output equations. (b). Obtain the state transition and output tables. (c). Complete the timing diagram shown below right. Assume initial state of the D-FF is Q = 0. DQ clock X x G Clock Q 근arrow_forward
- Please show all work, including; Ma? Ay? V at A,B,C. Shear diagram, M/EI diagram, tB/C, tC/A deflection curve and thetaC? Etc... 7-31. Use the moment area method and determine the slope at C and the displacement at B. EI is constant. Structural Analysis 10 editionarrow_forwardLecture Notes with Tutorials Quesi Introduction Introduction Q Is a Chegg subscription w s.polite.edu.sg/d21/e/enhancedSequenceViewer/560826?url=https%3A%2F%2F5ff0cccf-42fe-41ae-a18f-a4e0f77dec33.sequences.api.brightsp ↑↓ 1 of 4 EDA Assignment 1 (15% ) - + Automatic Zoom 8. Please note you may be asked to explain your solution to any of the questions. Question 1 (25 marks) Use constant-voltage-drop model to analyse the circuit in Figure 1. (a) Re-draw the circuit by replacing each diode with its equivalent circuit. (b) Calculate the values of li, 12, b and Is. (c) Determine the voltage across R1, VR- (5 marks) (15 marks) (5 marks) Si R 3.3kQ ΚΩ ww + VR1 12 15 13 14 Ge + Ge R3 20V Ge Si 12.2ΚΩ R4 R₂ 4.7 ΚΩ 5.1 ΚΩ Ge Figure 1 EPIC Priarrow_forwardAir at a temperature of 25° C and standard atmospheric pressure of 101.3 kPa flows through the nozzle into the pipe where the absolute internal pressure is 90 kPa. The nozzle has a throat diameter of d = 25 mm. Gas constant for air is R = 286.9 J/[kg K] and its specific heat ratio is k = 1.40. (Figure 1) Part A Determine the mass flow into the pipe. Express your answer using three significant figures. Figure 1 of 1 VO ΜΕ ΑΣΦ vec m = 0.0482 Submit Previous Answers Request Answer × Incorrect; Try Again; 2 attempts remaining Provide Feedback wwwww ? kg/sarrow_forward
- 146 Romania with step costs in km Straight-line distance to Bucharest * Oradea 71, 75, Zerind 151 rad & 140 197 Neamt 87 lasi 92 Arad 366 Bucharest 0 Craiova 160 Dobreta 242 Eforie 161 Fagaras 178 118 Sibiu 99 Fagaras 80 Rimnicu Vilcea Giurgiu 77 Vaslui Hirsova 151 Tasi 226 Lugoj 244 Timisoara 111 Mebadia 241 229 142 211 Neamt 234 Lugoj Pitesti 97 Oradea 380 70 146 101 Mehadia 75 138 9181 yep 98 Pitesti 98 Hirsova 85 Rimnicu Vilcea 193 Urziceni 86 Sibiu 253 Bucharest Timisoara 329 120 Urziceni 80 Dobreta 90 Vaslui 199 Craiova Eforie ☐ Giurgiu Zerind 374 each of the following search strategies include, (a) Initial (Arad) (b) Goal. (c) Search tree (d) Path Taken (e) Path Returned (f) Path Cost (i) A* 1) Greedy Best First Compare Time, Optimality, Complexity and Completeness Section Carrow_forwardcontrol systemarrow_forward2.50. Let y[n] = x[n]* h[n]. Then show that x[nn] h[n-n₂] = y[n-n, -n₂] Hint: See Prob. 2.3. Show that no+N-1 = k=no x[n]x[n] x[k] x[nk] for an arbitrary starting point no. Hint: See Probs. 2.31 and 2.8.arrow_forward
- "2. In the following circuit R₁ = 2000, RL = 100k, n₁/n2 = 1/100, and vin (t) = 40 cos(wt)V, where w = 1000 rad/s: (a) Find the impedance Z₁. That is, the secondary impedance reflected to the primary. (b) Find the resistance seen by the source. (c) If Ry, is changed to 40k, find the value of n₁/n2 for maximum power transfer to RT. (d) Calculate the voltage in the primary and the secondary, V₂, and V, (where V, = Vout). (e) Calculate the currents I, and I, (primary and secondary)." vs(t) www R₁ 01:02 Z₁l ideal R₁ Voutarrow_forward"3. In the following circuit R₁ = 1500, R₂ = 6000, R₁ = 12k, n₁ n₂ = 1: 10, and Vin (t) = 5√2 cos(wt) V, where w = 2000π rad/s: (a) Find the impedance Z₁. (b) Find the phasor Vout (c) If Ry, is changed to 24k, find the value of n₁: n₂ for maximum power transfer." vs(t) ww R₁ R₂ 01:02 Z₁ ideal R₁> Voutarrow_forwardOutside air at a temperature of 25° C is drawn into the duct and then heated along the duct at 149 kJ/kg. At section 1 the temperature is T = 15° C and the absolute pressure is 98 kPa. Neglect friction. (Figure 1) Part B Figure 50 mm -2 m Correct Correct answer is shown. Your answer 0.6142 was either rounded differently or used a different number of significant figures than required for this part. Determine the temperature at section 2. Express your answer using three significant figures. 跖 ΑΣΦ vec 1 of 1 T₂ = Submit Request Answer ་ Part C ? K Determine the pressure at section 2. Express your answer to three significant figures and include the appropriate units. μÅ ?arrow_forward
- MATLAB: An Introduction with ApplicationsEngineeringISBN:9781119256830Author:Amos GilatPublisher:John Wiley & Sons IncEssentials Of Materials Science And EngineeringEngineeringISBN:9781337385497Author:WRIGHT, Wendelin J.Publisher:Cengage,Industrial Motor ControlEngineeringISBN:9781133691808Author:Stephen HermanPublisher:Cengage Learning
- Basics Of Engineering EconomyEngineeringISBN:9780073376356Author:Leland Blank, Anthony TarquinPublisher:MCGRAW-HILL HIGHER EDUCATIONStructural Steel Design (6th Edition)EngineeringISBN:9780134589657Author:Jack C. McCormac, Stephen F. CsernakPublisher:PEARSONFundamentals of Materials Science and Engineering...EngineeringISBN:9781119175483Author:William D. Callister Jr., David G. RethwischPublisher:WILEY