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Midterm-Evaluation Sheet

This document provides information about a Mechanical Engineering course at the University of Jordan for the spring 2018/19 semester. It lists the course name and number as "Applications in Mechanical Design" and 0904538. It then outlines 14 evaluation criteria and their respective weights for assessing a midterm project on selecting and designing a helical compression spring for an industrial application. The criteria focus on correctly identifying design constraints, justifying assumptions, understanding design equations, and properly citing references in a clearly written report.

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Khaled Alhamawi
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0% found this document useful (0 votes)
34 views1 page

Midterm-Evaluation Sheet

This document provides information about a Mechanical Engineering course at the University of Jordan for the spring 2018/19 semester. It lists the course name and number as "Applications in Mechanical Design" and 0904538. It then outlines 14 evaluation criteria and their respective weights for assessing a midterm project on selecting and designing a helical compression spring for an industrial application. The criteria focus on correctly identifying design constraints, justifying assumptions, understanding design equations, and properly citing references in a clearly written report.

Uploaded by

Khaled Alhamawi
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
Available Formats
Download as PDF, TXT or read online on Scribd
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The University of Jordan

School of Engineering

Department Course Name Course Number Semester


Mechanical Engineering Applications in Mechanical Design 0904538 Spring 2018/19

Evaluation criteria for the midterm project

weight
1. Ability to select an “industrial” application that depends primarily on a helical compression 2
spring to function properly (choice of the application and thus difficulty of the design
problem).
2. Understanding the different components of the application and their interaction with the 2
helical compression spring.
3. Accurate representation of the Free Body Diagram. 2
4. Understanding the nature of direct loads applied to the helical compression spring: High/low 2
cycle fatigue, uniform alternating loading, spectrum loading, etc.

5. Identifying all design constraints as per the application of choice. 2

6. Assumptions made and their justification. 3

7. Understanding the physical meaning and thus the limitation of each of the constants used in 3
the design equations.

8. Clarity of calculations and comments on the results. Here calculations should reflect point 4 4
above.

9. Showing the effectiveness of the mind map in the design process 3

10. Using appropriate and sufficient references for the work and citing them properly within the 2
body of the report.

11. Listing of the references as per the University of Jordan Guides and Standards. 1

12. Style of report writing (language, organic flow of information, organization, etc.) 1

13. Neatness of the report 2

14. Adherence to the guideline provided for the midterm project report. 1

March 10th 2019

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