
Theory and Design for Mechanical Measurements
6th Edition
ISBN: 9781118881279
Author: Richard S. Figliola, Donald E. Beasley
Publisher: WILEY
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Question
Chapter 8, Problem 8.13P
To determine
(a)
Definition of thermocouple junction.
To determine
(b)
Definition of thermocouple laws.
To determine
(c)
Definition of the reference junction.
To determine
(d)
Definition of peltier effect:
To determine
(e)
Define of seebeck coefficient.
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HW12
A multiple-disc clutch has five plates having four pairs of active friction surfaces. If
the intensity of pressure is not to exceed 0.127 N/mm², find the power transmitted at
500 r.p.m. The outer and inner radii of friction surfaces are 125 mm and 75 mm
respectively. Assume uniform wear and take the coefficient of friction = 0.3.
The sketch below gives some details of the human heart at rest. What is the total power
requirement (work/time) for an artificial heart pump if we use a safety factor of 5 to allow for
inefficiencies, the need to operate the heart under stress, etc.? Assume blood has the
properties of water.
p pressure above
atmosphere
blood going to the
lungs for a fresh
charge of oxygen
p = 2.9 kPa
25v pulmonary artery
d = 25mm
fresh oxygenated blood
from the lungs
p = 1.0 kPa
vena cava
d=30mm
right
auricle
pulmonary vein,
d = 28mm
aorta, d=20mm
spent blood
returning from
left
auricle
the body
p = 0.66 kPa
right
left
ventricle
ventricle
blood to feed the
body, p 13 kPa
normal blood flow
= 90 ml/s
Chapter 8 Solutions
Theory and Design for Mechanical Measurements
Ch. 8 - Prob. 8.1PCh. 8 - Fixed temperature points in the International...Ch. 8 - Answers to the following questions may be found in...Ch. 8 - Calculate the resistance of a platinum wire that...Ch. 8 - Plot the resistance of a platinum wire that is 5 m...Ch. 8 - An RTD forms one arm of a Wheatstone bridge, as...Ch. 8 - An RTD forms one arm (/?4) of a Wheatstone bridge,...Ch. 8 - Research and describe current state-of-the-art...Ch. 8 - Prob. 8.9PCh. 8 - 8.10 Estimate the required level of uncertainty in...
Ch. 8 - 8.11 A thermistor is placed in a 100 °C...Ch. 8 - Prob. 8.12PCh. 8 - Prob. 8.13PCh. 8 - The thermocouple circuit in Figure 8.45 represents...Ch. 8 - The thermocouple circuit in Figure 8.45 represents...Ch. 8 - The thermocouple circuit in Figure 8.45 is...Ch. 8 - 8.17 a. The thermocouple shown in Figure 8.46a...Ch. 8 - Prob. 8.18PCh. 8 - Prob. 8.19PCh. 8 - A temperature measurement requires an uncertainty...Ch. 8 - A temperature difference of 3.0 °C is measured...Ch. 8 - Complete the following table for a J-type...Ch. 8 - Complete the following table for a T-type...Ch. 8 - Prob. 8.24PCh. 8 - 8.25 You are employed as a heating, ventilating,...Ch. 8 - A J-type thermocouple for use at temperatures...Ch. 8 - A J-type thermocouple is calibrated against an RTD...Ch. 8 - A beaded thermocouple is placed in a duct in a...Ch. 8 - Consider a welded thermocouple bead that...Ch. 8 - Prob. 8.30PCh. 8 - Prob. 8.31PCh. 8 - Consider the typical construction of a sheathed...Ch. 8 - An iron-constantan thermocouple is placed in a...Ch. 8 - Figure 8.48 Schematic diagram for Problems 8.33,...Ch. 8 - Figure 8.48 Schematic diagram for Problems 8.33,...Ch. 8 - 8.36 In Example 8.5, an uncertainty value for Rf...Ch. 8 - The thermocouple circuit shown in Figure 8.49...Ch. 8 - Prob. 8.38PCh. 8 - 8.39 A thin-film heat flux sensor employs a K-type...Ch. 8 - A thin-film heat flux sensor has a sensitivity uV...Ch. 8 - 8.41 A T-type thermopile is used to measure...Ch. 8 - 8.42 A T-type thermocouple referenced to 0 °C is...Ch. 8 - A T-type thermocouple referenced to 0 °C develops...Ch. 8 - 8.44 A temperature measurement system consists of...
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