(a)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Write the expression for the total tolerance.
Here, the upper limit is
Write the expression for the mean dimension.
Here, the basic dimension is
Write the expression for the bilateral tolerance.
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(b)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(c)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(d)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(e)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(f)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(g)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(h)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(i)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(j)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(k)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(l)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(m)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(n)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
(o)
The dimension in the bilateral tolerance.

Answer to Problem 11A
The dimension in the bilateral tolerance is
Explanation of Solution
Given information:
The unilateral tolerance is
Calculation:
Substitute
Substitute
Substitute
Conclusion:
The dimension in the bilateral tolerance is
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Chapter 27 Solutions
EBK MATHEMATICS FOR MACHINE TECHNOLOGY
- 5. Find the solution to each of the following by using an appropriate formula developed in the lecture slides: (a) + 3y = 2, y(0) = 4; (b) dy - 7y = 7, y(0) = 7; (c) 3d+6y= 5, y(0) = 0arrow_forward1. Evaluate the following improper integrals: (a) fe-rt dt; (b) fert dt; (c) fi da dxarrow_forward8. Given the rate of net investment I(t) = 9t¹/2, find the level of capital formation in (i) 16 years and (ii) between the 4th and the 8th years.arrow_forward
- 9. If the marginal revenue function of a firm in the production of output is MR = 40 - 10q² where q is the level of output, and total revenue is 120 at 3 units of output, find the total revenue function. [Hints: TR = √ MRdq]arrow_forward6. Solve the following first-order linear differential equations; if an initial condition is given, definitize the arbitrary constant: (a) 2 + 12y + 2et = 0, y(0) = /; (b) dy+y=tarrow_forward4. Let A = {a, b, c, d, e, f}, B = {e, f, g, h} and C = {a, e, h,i}. Let U = {a, b, c, d, e, f, g, h, i, j, k}. • Draw a Venn Diagram to describe the relationships between these sets Find (AB) NC • Find (AC) UB Find AUBUC • Find (BC) N (A - C)arrow_forward
- 7. A consumer lives on an island where she produces two goods x and y according to the production possibility frontier x² + y² < 200 and she consumes all the goods. Her utility function is U(x, y) = x y³. She faces an environmental constraint on her total output of both goods. The environmental constraint is given by x + y ≤20. • (a) Write down the consumer's optimization problem. (b) Write out the Kuhn-Tucker first order conditions. (c) Find the consumer's optimal consumption bundle (x*, y*).arrow_forward3. Answer the following questions: (a) Given the marginal propensity to import M'(Y) = 0.1 and the information that M = 20 when Y = 0, find the import function M(Y). (b) Given a continuous income stream at the constant rate of $1,000 per year, what will be the present value II if the income stream terminates after exactly 3 years and the discount rate is 0.04? (c) What is the present value of a perpetual cash flow of $2,460 per year, discounted at r = 8%?arrow_forward5. Let A and B be arbitrary sets. Prove AnB = AUB.arrow_forward
- 2. Answer the following questions: (a) Given the marginal-revenue function R'(Q) = 28Q - €0.3Q, find the total-revenue function R(Q). What initial condition can you introduce to definitize the constant of integration? = (b) Given the marginal propensity to consume C'(Y) 0.80.1Y-1/2 and the information that C = Y when Y = 100, find the consumption function C(Y).arrow_forward7. Let X, A, and B be arbitrary sets such that ACX and BC X. Prove AUB CX.arrow_forward1. Write out the following sets as a list of elements. If necessary you may use ... in your description. {x EZ: |x|< 10 A x < 0} {x ЄN: x ≤ 20 A x = 2y for some y = N} {n EN: 3 | n^ 1 < n < 20} {y Є Z: y² <0}arrow_forward
- Mathematics For Machine TechnologyAdvanced MathISBN:9781337798310Author:Peterson, John.Publisher:Cengage Learning,
