530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 2 Solutions
Assignment Date: 2/7/17
Due Date: 2/14/17
1.
Total Points 14 A solid beam of rectangular cross section
is supported as shown and carries the loads shown in figure 1. The
length of the beam i
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 11 Solutions
Assignment Date: 4/18/17
Due Date: 4/25/17
Topics: Material Selection, Welding, Brazing, Soldering
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any nece
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 1 Solutions
Assignment Date: 1/31/17
Due Date: 2/2/17
1 In a standard tensile test a 20 inch aluminum 6061 rod of 65 in. diameter
is subjected to a tension force of 14 kips. Determine (a) the stresses
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 4 Solutions
Assignment Date: 2/21/17
Due Date: 2/28/17
Topics: Pressure vessels, Rotating Disks, Thermal Stresses
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any ne
530.215 MECHANICSBASED DESIGN
Final Examination
Name:_
Open Book: Three Hours
Note: You may use your textbooks, class notes & handouts, homeworks, and homework solutions.
Some of the questions are multiplechoice; some are of the fillintheblanks varie
530.215 MECHANICSBASED DESIGN
Second Midterm Examination
April 6, 2017, 1:302:45 pm.
0 This is an open book, open notes exam. You may use any calculator you like, and you
may use your laptop if you wish.
0 You may not use online codes or online softwa
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 8 Solutions
Assignment Date: 3/28/17
Due Date: 4/4/17
Topics: Fatigue failure
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any necessary assumptions. State reference
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 6 Solutions
Assignment Date: 3/7/17
Due Date: 3/14/17
Topics: Review 3D Hookes law, three dimensional strains and thermoelasticity;
Ductile failure theories
Please state your answers clearly. Draw coord
530.215 MECHANICSBASED DESIGN
Final Examination
May 6, 2016; 9:00 am  12:00 noon.
This is an open book, open notes exam. You may use any calculator you like, and you
may use your laptop if you wish.
Some of the questions are multiplechoice, some requi
Midterm # 1
A few things to consider in addition to the rules of ethical conduct discussed in the Syllabus. For
each problem, show all of your work and list all of your assumptions. Write legibly and neatly to
help the grader (me). I will do the best I ca
530.215 MECHANICSBASED DESIGN
Qualitative Analysis
1.
Name two design considerations that you think are of significance.
fatigue and ultimate strength
2.
analysis, design, manufacture, and
A CODE is a set of specifications for a _.
3.
con struction of s
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 12
Assignment Date: 4/25/17
Due Date: 5/2/17
Topics: Multi axial stress states, Springs
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any necessary assumptions. State
530.215 MECHANICSBASED DESIGN, SPRING 2017
Midterm 1 Solutions
Given: 2/28/17
1 Consider a drilling set up from the hydraulic fracture (fracking) industry.
We will idealize this as the torsion of a tube. The drilling is accomplished
through a 4140 steel
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 5
Assignment Date: 2/28/17
Due Date: 3/7/17
Topics: Stress Concentrations, Review
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any necessary assumptions. State refer
530.215 MECHANICSBASED DESIGN
Final Examination
Name:_
Open Book: Three Hours
Note: You may use your textbooks, class notes & handouts, homeworks, and homework solutions.
Some of the questions are multiplechoice; some are of the fillintheblanks varie
530.215 MECHANICSBASED DESIGN
Second Midterm Examination
April 7, 2016, 1:302:45 pm.
This is an open book, open notes exam. You may use any calculator you like, and you
may use your laptop ifuyou wish.
' Some of the questions are multiplechoice; some
530.215 MECHANICSBASED DESIGN, SPRING 2017
Homework 10 Solutions
Assignment Date: 4/11/17
Due Date: 4/18/17
Topics: Fatigue failure, Shaft design, Threads and fasteners
Please state your answers clearly. Draw coordinate axes wherever applicable. Make
any
530.215 MECHANICSBASED DESIGN
First Midterm Examination
March 3, 2016, 1:302:45 pm.
This is an open book, open notes exam. You may use any calculator you like, and you
may use your laptop if you wish.
Your answers should be written on this exam handou
Sowhomg
530.201 / 560.201 Statics & MoM
Problem Set 2
Due: September 15, 2016
For each of the problems this week, copy the drawing as a given and begin the solution with a free body
diagram.
Remember to complete each problem on a separate sheet of paper
530.201/560.201 Statics & Mech. of Mat.
Name:_
Problem Set 1
Due: September 8, 2016
The images below are of numerical answers generated by a calculator. Please record the calculated
answer with an appropriate number of significant figures for an engineeri
SOLUTI OMS

530.201 / 560.201 Statics & MoM
Problem Set 5
Due: October 6, 2016
It is important to draw clear and complete FBDS for all the problems in this assignment.
1. Determine the force in each truss member and state whether the members are in ten
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530.201 / 560.201 Statics & MoM
Problem Set 3
Due: September 22, 2016
1.
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Determine the nunnengilhour point B caused by each of the three forces acting on t
ownoug
530.201 / 560.201 Statics & MOM
Problem Set 4
Due: September 29, 2016
1 A 50 pound vertical force, 1, is applied to the bracket as shown. The bracket is connected to the
wall Via screws at B and C.
a. Replace P with an equivalent force couple s
530.201 / 560.201 Statics & MoM
Problem Set 2
Due: September 10, 2015
For each of the problems this week, copy the drawing as a given and begin the solution with a free body
diagram.
Remember to complete each problem on a separate sheet of paper, followin
530.201 / 560.201 Statics & MoM
Problem Set 3
Due: September 17, 2015
1. A 40 pound force is applied to the handle of a wrench to tighten the nuts on a tire. Find the moment
due to the force at the center of the tire (the axle) and at the point of contact