subject
Mathematics, 11.02.2020 00:17 Myrah4204

Material indices for elastic beams with differing constraints (Figure E.4). Start each of the four parts of this problem by listing the function, the objective, and the constraints. You will need the equations for the deflection of a cantilever beam with a square cross-section t times t, given in Appendix A, Section A.3. The two that matter arc that for the deflection delta of a beam of length L under an end load F: delta =FL3/3EI and that for the deflection of a beam under a distributed load f per unit length: delta =1/8 fL4/EI where I =t4/12. Fora self-loaded beam f = rho Ag where rho is the density of the material of the beam, A its cross-sectional area and g the acceleration due to gravity. Show that the best material for a cantilever beam of given length L and given (i. e., fixed) square cross-section (t times t) that will deflect least under a given end load F is that with the largest value of the index M = E, where E is Young's modulus (neglect self-weight) (Figure E.4(a)). Show that the best material choice for a cantilever beam of given length L and with a given section (t times t) that will deflect least under its own self-weight is that with the largest value of M = E/ rho , where p is the density (Figure E.4(b)). Show that the material index for the lightest cantilever beam of length L and square section (not given, that is, the area is a free variable) that will not deflect by more than delta under its own weight is M = E/ rho 2 (Figure E.4(c)). Show that the lightest cantilever beam of length L and square section (area free) that will not deflect by more than 6 under an end load F is that made of the material with the largest value of M = E1/2/ rho (neglect self weight) (Figure E.4(d)).

ansver
Answers: 3

Another question on Mathematics

question
Mathematics, 21.06.2019 16:00
Which term best describes the association between variables a and b? no association a negative linear association a positive linear association a nonlinear association a scatterplot with an x axis labeled, variable a from zero to ten in increments of two and the y axis labeled, variable b from zero to one hundred forty in increments of twenty with fifteen points in a positive trend.
Answers: 2
question
Mathematics, 22.06.2019 00:30
Pls as soon as ! will award brainliest and 20 ! also the answer is not 22.5 degrees! find the value of x in each case:
Answers: 3
question
Mathematics, 22.06.2019 03:00
In this problem, we explore the effect on the standard deviation of multiplying each data value in a data set by the same constant. consider the data set 14, 6, 8, 15, 15. (a) use the defining formula, the computation formula, or a calculator to compute s. (round your answer to one decimal place.) s = 4.28 (b) multiply each data value by 3 to obtain the new data set 42, 18, 24, 45, 45. compute s. (round your answer to one decimal place.) s = 12.83 (c) compare the results of parts (a) and (b). in general, how does the standard deviation change if each data value is multiplied by a constant c? multiplying each data value by the same constant c results in the standard deviation remaining the same. multiplying each data value by the same constant c results in the standard deviation being |c| times as large. multiplying each data value by the same constant c results in the standard deviation increasing by c units. multiplying each data value by the same constant c results in the standard deviation being |c| times smaller. (d) you recorded the weekly distances you bicycled in miles and computed the standard deviation to be s = 3.8 miles. your friend wants to know the standard deviation in kilometers. do you need to redo all the calculations? yes no given 1 mile รขโ€ฐ 1.6 kilometers, what is the standard deviation in kilometers? (enter your answer to two decimal places.)
Answers: 1
question
Mathematics, 22.06.2019 04:00
The label on a can of lemonade gives the volume as 12 fl 0z or 355ml verify that these two measurements are nearly equivalent
Answers: 1
You know the right answer?
Material indices for elastic beams with differing constraints (Figure E.4). Start each of the four p...
Questions
question
English, 29.01.2020 15:52
question
Biology, 29.01.2020 15:52
question
Mathematics, 29.01.2020 15:52
Questions on the website: 13722360