Concept explainers
A sphere has a volume, V, of 12.249 cu in. Use the formula
The length of diameter of the given sphere.
Answer to Problem 1A
Diameter length of given sphere is
Explanation of Solution
Given information:
A sphere is given whose volume is
Calculation:
As we know that volume of a sphere is given by -
So, diameter length of the sphere will be given as -
Here, volume of the given sphere is
So, diameter of the sphere will be -
Hence, diameter of given sphere is
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Chapter 16 Solutions
Mathematics For Machine Technology
- 33. Page 49 The problem concerning solving a system of linear equations can be found on page 49. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing] 34. Page 51 Check page 51 for the question involving gradient vectors of a multivariable function. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing]arrow_forward29. Page 41 Refer to page 41 for the Taylor series expansion problem. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxpRyejKEMg 1t2q15dbpVLCS/view?usp=sharing] 30. Page 43 The problem involving solving a differential equation is located on page 43. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing]arrow_forward25. Page 33 Refer to page 33 of the shared file for the problem involving finding critical points of a function. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxpRyejKEMg1t2q15dbpVLCS/view?usp=sharing] 26. Page 35 Go to page 35 for the question on evaluating a definite integral. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxpRyejKEMg1t2q15dbpVLCS/view?usp=sharing] 27. Page 37 The problem related to matrix operations is on page 37 of the file. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxpRyejKEMg1t2ql5dbpVLCS/view?usp=sharing]arrow_forward
- The problem related to matrix operations is on page 37 of the file. Link: [https://drive.google.com/file/d/1RQ2OZk-LSxpRyejKEMg 1t2q15dbpVLCS/view?usp=sharing]arrow_forward31. Page 45 Go to page 45 for the question involving finding the inflection points of a function. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing] 32. Page 47 Refer to page 47 for the problem on tangent lines to curves. Link: [https://drive.google.com/file/d/1RQ2OZK-LSxpRyejKEMg 1t2q15dbpVLCS/view?usp=sharing]arrow_forward15. Evaluate the Determinant of the Matrix The matrix determinant question is provided on page 19 of the file. Use cofactor expansion to calculate the determinant. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing] Present the solution in a clear and detailed manner. 16. Analyze the Convergence of the Series Go to page 21 of the linked file for the series convergence problem. Use appropriate tests (e.g., ratio test or comparison test) to determine whether the series converges. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg1t2ql5dbpVLCS/view?usp=sharing] Provide a clear explanation with proper justification.arrow_forward
- 11. Prove the Trigonometric Identity Refer to page 16 of the file for the trigonometric proof question. Prove the identity using appropriate steps and trigonometric properties. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Provide a detailed step-by-step explanation. 12. Solve the Differential Equation The differential equation problem can be found on page 18 of the shared file. Solve the equation using an appropriate method (e.g., separation of variables). Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Ensure a complete and clear solution is provided.arrow_forward17. Find the Critical Points of the Function The critical points problem is located on page 22 of the shared file. Use calculus methods (derivatives) to determine the critical points of the function. Link [https://drive.google.com/file/d/1RQ2OZk-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing] Include all necessary steps and justifications.arrow_forward13. Perform Matrix Multiplication Go to page 20 of the file for the matrix multiplication problem. Multiply the given matrices and simplify the result. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Show all intermediate steps. 14. Find the Taylor Series Expansion Refer to page 17 of the shared file for the Taylor series question. Find the Taylor series expansion of the given function around a specified point. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg1t2ql5dbpVLCS/view?usp=sharing] Include at least four non-zero terms and justify each step.arrow_forward
- 9. Evaluate the Double Integral Go to page 13 of the file for the double integration problem. Use proper techniques to solve the integral and find the area. Link [https://drive.google.com/file/d/1RQ2OZK-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Show the full process of solving the integral. 10. Determine the Partial Derivatives The question is located on page 8 of the shared file. Compute the partial derivatives of the given multivariable function. Link [https://drive.google.com/file/d/1RQ2OZk-LSxp RyejKEMg 1t2q15dbpVLCS/view?usp=sharing] Make sure all calculations are clearly shown.arrow_forward7. Find the Limit of the Function Refer to page 7 of the linked file for the limit question. Use the proper limit theorems to evaluate the result. Link [https://drive.google.com/file/d/1RQ2OZk-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Clearly show all steps and justify your answer. 8. Solve the System of Linear Equations The system of equations problem is located on page 10 of the shared file. Use Gaussian elimination to solve the system. Link [https://drive.google.com/file/d/1RQ2OZk-LSxp RyejKEMg 1t2ql5dbpVLCS/view?usp=sharing] Provide detailed and step-by-step solutions.arrow_forward1) Find the nth derivative and the Taylor Series for sin(x). 2) Consider E_N(x) = f(x) - S_n(x). Does S_N(x) converge to f(x)=sin(x)? 3) How well does S_5 approximate sin(x) on [-2,2]? Show that E_N(x) converges uniformly by the W. M-test (please explain this).arrow_forward
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