Essentials of Materials Science and Engineering, SI Edition
Essentials of Materials Science and Engineering, SI Edition
4th Edition
ISBN: 9781337672078
Author: ASKELAND, Donald R., WRIGHT, Wendelin J.
Publisher: Cengage Learning
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Chapter 6, Problem 6.45P
Interpretation Introduction

Interpretation:

The minimum possible thickness of a square specimen of MgO should be calculated without fracture.

Concept introduction:

The ability of any specimen to undergo deformation under the influence of load is known as a Flexural strength.

We can determine the flexural strength with the help of below-mentioned formula:

σBend=3FL2wh2

In the above-mentioned formula,

  • F = the fracture
  • L= the distance between the two points
  • w = width of the specimen
  • h = height of the specimen

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- = 400KHZ. Q1. In a Boost converter, L = 25 μH, Vin = 12 V, D = 0.4, P = 25 W, and fs (i) if the output load is changing. Calculate the critical value of the output load P,below which the converter will enter the discontinuous conduction mode of operation. Assume the total turn-on loss is equal to 2 W. (ii) Assuming the input voltage fluctuates from 10 V to 14 V and the output voltage is regulated to 20 V. Calculate the critical value of the inductance L below which this Boost converter will enter the discontinuous conduction mode of operation at P = 5 W. (iii) Draw the waveforms for inductor voltage, inductor current, and the capacitor current for this Boost converter at the output load that causes it to operate at the border of continuous and discontinuous modes. vd tow 77 N₂ AT 22 1-1

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