dynamics homewoerk
ENGT 2480 Special Topics in Engineering Technology
Course Syllabus
Engineering Technology Department
Green Bowling State University, Wooster St Bowling Green, OH 43403
Instructor: Dr. Mohammad Mayyas, Associate Professor
Campus Office: Room 219, Engineering Technology Building
E-mail Address: [email protected]
Numbers: 4192728392 (phone)
Term: Fall Term 2016
Class Schedule: Monday (12:50pm- 1:50pm) & Wednesday (12:50pm-1:50pm)
Class room: Park Avenue 122
Course Website: Will be available on course website “Canvas page”
Office Hours: Monday/Wednesday (11:00am-12:00pm), also appointment by e-mails
TA: Himanshu Sethi, email: [email protected], (419)372-2439, office hours: TBA
Objectives:
● Learn the fundamental concepts of engineering technology dynamics
● Learn the mathematical formulations of dynamics problems
● Analyze the dynamics of particles and rigid bodies with applications
Homework/Quizzes: Weekly assignments/Biweekly quizzes.
Exams: 3 Exams
All in-class closed-book.
Grading: Homework (30%), Quizzes (10%) Exams (20%, 20%, 20%), Grades are based on percentages scaled with respect to the highest score. Guidelines for assigning grades:
A (100%-90%), defined as “excellent” at BGSU
B (89.9-80%), defined as “good” at BGSU
C (79.9%-70%), defined as “acceptable” at BGSU
D (69.9-60%), defined as “poor” at BGSU
F(below 60%) , defined as “ failure” everywhere.
Pre-requisites: Equivalent of Vector Calculus and Differential, and Basic Physics
Textbooks and Software
Russell C. Hibbeler, Engineering Mechanics: Dynamics, Prentice Hall, 14th Edition, 2016. ISBN: 9780133915389
Lecture Notes Power point files (available at the course website)
MATLAB, 20-sim (Available in Tech. Lab 247D).
General Policies
· Please silence all cell phones before class starts, and leave them on your bag/coat/purse… so no text messaging at any time either!
· Students at BGSU are all required to read and abide by Student Code of Conduct (available online at http://www.bgsu.edu/downloads/sa/file99132.pdf), and should pay special attention to the items dealing with Academic Honesty and violation thereof, listed below:
1. CHEATING- Using or attempting to use unauthorized assistance, materials, information, or study aids in any academic exercise. Submitting substantial portions of the same academic work more than once without permission, or using another person as a substitute to take an examination or quiz. (This includes sources found on the internet, in newspapers, etc.)
2. FORGERY-Altering a score, grade, schedule change form or academic record; forging an instructor’s or another student’s signature.
3. BRIBERY/THREATS- Offering a bribe or making a threat or coercion related to a grade or an academic exercise.
4. FABRICATION- Falsification or invention of any information, data, research or citation in any academic exercise
5. PLAGIARISM- Representing as one’s own in any academic exercise the words or ideas of another, including but not limited to, quoting or paraphrasing without proper citation..
6. FACILITATING ACADEMIC DISHONESTY- Helping or attempting to help another commit an act of academic dishonesty
Course Learning Objectives:
Students who successfully complete Dynamics will be able to:
· develop strategies to analyze the dynamics of particles and rigid
· apply the laws of dynamics to analyze and interpret the dynamics of particles and rigid bodies
· use the computer to analyze the motions of particles and rigid bodies of open-ended problems
Relationship of Course to Engineering Technology Program and ABET/ETAC Accreditation :
Students will successfully:
· an ability to select and apply the knowledge, techniques, skills, and modern tools of the discipline to broadly-defined engineering technology activities; (Criteria a)
· an ability to select and apply a knowledge of mathematics, science, engineering, and technology to engineering technology problems that require the application of principles and applied procedures or methodologies; (Criteria b)
· an ability to identify, analyze, and solve broadly-defined engineering technology problems (Criteria f) .
Course Outline
· Review Basics of Calculus/Vectors ( Very Important )
Integration
Differentiation
Vector Analysis and Application
· Sections: 12.1 & 12.2, 12.3
RECTILINEAR KINEMATICS
· Sections: 12.4 & 12.5
GENERAL CURVILINEAR MOTION, and CURVILINEAR MOTION
· Section: 12.6
MOTION OF A PROJECTILE
· Section: 12.7
CURVILINEAR MOTION: CYLINDRICAL COMPONENTS
· Section: 12.9
DEPENDENT MOTION
· Sections: 13.1 – 13.3
NEWTON’S LAWS OF MOTION, EQUATION OF MOTION, EQUATION OF MOTION FOR A SYSTEM OF PARTICLES
· Section: 13.4
RECTANGULAR COORDINATES
· Section: 13.5
NORMAL & TANGENTIAL COORDINATES
· Review
Chapters 12 & 13.
Sample problems, Answer questions
· Section 14.1-14.3
THE WORK OF A FORCE, THE PRINCIPLE OF WORK AND ENERGY & SYSTEMS OF PARTICLES
· Midterm Exam 1: In class, closed book/notes, ( one cheat-sheet A4 two sides, No solved problem; only equation allowed), bring calculator.
· Section: 14.4
POWER AND EFFICIENCY
· Section: 12.8
CYLINDRICAL COMPONENTS
· Section 13.6
CYLINDRICAL COORDINATES
· Sections: 14.5 – 14.6
CONSERVATIVE FORCE, CONSERVATION OF ENERGY
· Section: 15.1
PRINCIPLE OF LINEAR IMPULSE AND MOMENTUM
· Sections: 15.2 – 15.3
PRINCIPLE OF LINEAR IMPULSE AND MOMENTUM AND CONSERVATION OF LINEAR MOMENTUM FOR SYSTEMS OF PARTICLES
· Section: 15.4
IMPACT
· Review
Chapters 14 & 15.
Sample problems, Answer questions
· Sections: 15.5-15.7
ANGULAR MOMENTUM, MOMENT OF A FORCE AND PRINCIPLE OF ANGULAR IMPULSE AND MOMENTUM
· Midterm Exam 2: In class, closed book/notes, one cheat-sheet, bring calculator.
· Sections: 16.1 – 16.3
PLANAR RIGID BODY MOTION: TRANSLATION & ROTATION
Section: 16.4
ABSOLUTE MOTION ANALYSIS
· Sections: 16.5
RELATIVE MOTION ANALYSIS: VELOCITY
· Sections: 16.6
INSTANTANEOUS CENTER OF ZERO VELOCITY
· Sections: 16.7
RELATIVE MOTION ANALYSIS: ACCELERATION
· Section:17.1 & 17.2
MOMENT OF INERTIA
PLANAR KINETIC EQUATIONS OF MOTION:
TRANSLATION
· Section: 17.4
EQUATIONS OF MOTION: ROTATION ABOUT A FIXED AXIS
· Section 17.5
EQUATIONS OF MOTION:
GENERAL PLANE MOTION
· Sections: 18.1-18.4
KINETIC ENERGY, WORK, PRINCIPLE OF WORK AND ENERGY
· Section: 18.5
PLANAR KINETICS OF A RIGID BODY: CONSERVATION OF ENERGY
· Sections:19.1-19.3
CONSERVATION OF MOMENTUM
· Review
All Chapters