Theory and Design for Mechanical Measurements
Theory and Design for Mechanical Measurements
6th Edition
ISBN: 9781118881279
Author: Richard S. Figliola, Donald E. Beasley
Publisher: WILEY
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Chapter 4, Problem 4.33P

For Problems 4.30 through 4.36. itwould be helpful to use a least-squares software package, such as Polynomial Jit, Matlab, or spreadsheet software.

  1. The following relations exist between material flexural strength and grain size:

Flexural strength 65 63 67 64 68 62 70 66 68 67 69 71 jc (MPa)
Grain size,
68 66 68 65 69 66 68 65 71 67 68 70
y (nm)
Plot the linear relationship and estimate the standard error of the fit.

  • Experimental measurements are taken from a physical system that can be modeled as y = bx!". The experimental data is (1.020, 3.270), (1.990, 12.35), (3.000, 28.03), (4.010. 50.04), (4.990, 77.47). Find the coefficients to fit the model using the method of least squares and calculate the standard error of the fit.
  • Experimental measurements are taken from a physical system that can be modeled as y = tnx + b. The experimental data is (1.00, 2.10), (2.00, 2.91), (3.00, 3.89), (4.00, 5.12), (5.00, 6.09). Find the coefficients to fit the model using the method of least squares, calculating the standard error of the fit and the 95% confidence band about the curve fit (Scheffe band).
  • In an engineering lab exercise, a student makes 10 independent measurements of a voltage drop across a circuit board resistor:
  • 0.86,	0.83,	0.82,	0.84,	0.95,
    0.87,	0.88,	0.89,	0.83,	0.85
    

    Could any value be rejected using Chauvenet’s criterion?

  • Find the first-order line (y = no + <*!•*) that fits the four data pairs (1, 12), (2, 13), (3, 18), (4, 19). Estimate the standard error of the fit. How many degrees of freedom are there in the curve fit? Show the uncertainty bands about the fit.
  • A student lab wants to determine the rate of radioactive decay of an isotope by measuring the rate of decay, R, once per hour over a three-hour period. The rate of decay is modeled as R = Roe'1^ where t is the time constant of decay. The measurements are (0, 13.8), (1, 7.9), (2, 6.1), (3, 2.9). Apply least- squares regression to the data to obtain an estimate for the constant of decay t.
  • A fan performance test yields the following data pairs for (Q, h): (2000, 5.56), (6000, 5.87), (10000, 4.95), (14000, 4.95), (18000, 3.52), (22000, 1.08). Q is flow rate in m3/s and h is static head in cm-H20. Find the lowest-dcgree polynomial that best fits the data as h = f(Q). Note: Physically, a second-order polynomial is a reasonable fit. Explain your choice.
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    Temperature (°C) 1600 0 1500 1400 1300 1200 1100 1000 1085°C 0 (Cu) 1 20 20 Alloy Brass Steel Composition (at% Ni) 40 Liquid Liquidus line Aluminum Titanium B @x+L 60 CE 40 60 Composition (wt% Ni) 80 Yield Strength [MPa (ksi)] 345 (50) 690 (100) 275 (40) 480 (70) Solidus line 1453°C 80 100 2800 2600 Problem 5 A structural member 250 mm (10 in.) long must be able to support a load of 44,400 N (10,000 lb,) without experiencing any plas- tic deformation. Given the following data for brass, steel, aluminum, and titanium, rank them from least to greatest weight in accordance with these criteria. 2400 8.5 7.9 2.7 4.5 2200 2000 100 (Ni) Density (g/cm³) Temperature (°F)
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    Chapter 4 Solutions

    Theory and Design for Mechanical Measurements

    Ch. 4 - Prob. 4.11PCh. 4 - Prob. 4.12PCh. 4 - Prob. 4.13PCh. 4 - Prob. 4.14PCh. 4 - Prob. 4.15PCh. 4 - From 19 measurements of a pressure controller, the...Ch. 4 - From 19 measurements of a pressure controller, the...Ch. 4 - When the parameters of a population are known, the...Ch. 4 - A professor grades students on a normal curve. For...Ch. 4 - Prob. 4.20PCh. 4 - 4.21 An automotive manufacturer removes the...Ch. 4 - Prob. 4.22PCh. 4 - Prob. 4.23PCh. 4 - A sampling of 409 motor shafts from a very large...Ch. 4 - During the course of a motor test, the motor rpm...Ch. 4 - A baich of rivets is tested for shear strength. A...Ch. 4 - Three independent sets of data are collected front...Ch. 4 - Prob. 4.28PCh. 4 - 4.29 An engineer measures the diameter of 20 tubes...Ch. 4 - Prob. 4.30PCh. 4 - For Problems 4.30 through 4.36. itwould be helpful...Ch. 4 - For Problems 4.30 through 4.36. itwould be helpful...Ch. 4 - For Problems 4.30 through 4.36. itwould be helpful...Ch. 4 - Prob. 4.34PCh. 4 - Prob. 4.35PCh. 4 - Prob. 4.36PCh. 4 - A manufacturer of general aircraft dry vacuum...Ch. 4 - Strength tests made on a batch of cold-drawn steel...Ch. 4 - 4.39 Determine the one-sided 95 th-percentile of...Ch. 4 - 4.40 The manufacturer of an electrical fuse claims...Ch. 4 - How many independent random measurements of a...Ch. 4 - Based on 51 measurements of a time-dependent...Ch. 4 - 4.43 Estimate the probability with which an...Ch. 4 - Prob. 4.44PCh. 4 - Prob. 4.45PCh. 4 - Prob. 4.46PCh. 4 - Prob. 4.47PCh. 4 - 4.48 A cantilever is loaded at its tip. Tip...Ch. 4 - Prob. 4.49PCh. 4 - Prob. 4.50PCh. 4 - A transducer is used to indicate the pressure of a...Ch. 4 - An engineer takes water samples from 15 lakes in...Ch. 4 - A random sample of 51 aircraft rivets is taken...Ch. 4 - Prob. 4.54PCh. 4 - Estimate the p-value for N = 16. t = 1.798...
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