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1 page 1 faculty of engineering technology dynamics of rigid bodies mechanics3 information course code mec 221 level undergraduate course hours 3 00 hours department department of structural engineering construction ...

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                                                               Faculty of Engineering & Technology
                                                             Dynamics of Rigid Bodies (Mechanics3)
              Information : 
              Course Code : MEC 221                             Level          :    Undergraduate               Course Hours :            3.00- Hours
              Department :         Department of Structural Engineering & Construction Management
              Instructor Information : 
              Title                                              Name                                                                     Office hours 
              Lecturer                                           Amr Mohamed Metwally Ismaiel                                             8
              Assistant Lecturer                                 Noura Khedr Abdul raheem Ahmed
              Area Of Study :
               ‡Recognize the fundamental principles of kinematics of a rigid body.
               ‡Analyze the concepts of planar motion and its types (translation, rotation and general plane motion) of a rigid body 
               or systems of connected bodies using vector and scalar methods.
               ‡Learn how to represent and apply relations of position, velocity and accelera-tion for rolling motion problems.
               ‡Study and analyze the various principles of Kinetics such as force-acceleration, work-energy and the impulse-
               momentum principles for various types of prob-lems that containing the motion of a rigid body
              Description :
               Kinematics of rigid bodies: Types of planar motion of rigid body: translation, rotation about a fixed axis and general 
               motion. Angular velocity and angular acceleration, in-stantaneous center, relative velocity and relative acceleration. 
               Kinetics of rigid bodies, Newton's laws, friction and elastic forces, equations of motion. Principle of work and energy. 
               Conservation forces and principle of conservation of mechanical energy. Prin-ciple of impulse and momentum, 
               impulsive forces, impact. Introduction of free and forced vibrations.
              Course outcomes :
              a.Knowledge and Understanding: :
                     1 -      a1- Define the main terms of kinematics of planar general motion
                     2 -      a2- List the main items of mechanism of connected rigid bodied
                     3 -      a3- Explain the principals of rolling motion
                     4 -      a4- Describe the main concept of kinetics of a rigid body
                     5 -      a5- Define the main terms of impulse & momentum
              b.Intellectual Skills: :
                     1 -      b1- Solve problems regarding kinematics of planar general motion
                     2 -      b2- Calculate the values of rolling motion
                     3 -      b3- Calculate the values of kinetics of a rigid body
                     4 -      b4- Solve problems regarding Force-acceleration method
                     5 -      b5- Assess issues of work ±energy method
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                     6 -      b6- Calculate the values of impulse & momentum
             c.Professional and Practical Skills: :
                     1 -      c1- Prepare technical reports for rolling motion
             d.General and Transferable Skills: :
                     1 -      d1- Search for information and self-learning discipline 
             Course Topic And Contents :
             Topic                                                                                  No. of hours Lecture             Tutorial / Practical
             mechanism of connected rigid bodied                                                    5                 3              2
             rolling motion                                                                         5                 3              2
             kinetics of a rigid body                                                               10                6              4
             Force-acceleration method                                                              15                9              6
             work ±energy method                                                                   15                9              6
             impulse & momentum                                                                     10                6              4
             kinematics of planar general motion                                                    10                6              4
             Revision                                                                               5                 3              2
             Teaching And Learning Methodologies :
              Interactive Lec.
              Discussion
              Problem Solving
             Course Assessment :
             Methods of assessment                         Relative weight % Week No                   Assess What
              1st Midterm                                  15.00
              2nd Midterm                                  15.00
              Assignments, Partic-ipation, &               30.00
              Quizzes 
              Final Exam                                   40.00
             Course Notes :
             Lecture notes on the course moodle page, FUE website.
             Recommended books :
             Hibbeler R.., " Engineering Mechanics:  Dynamics ", 12th Edition.     
             Riley W. and Sturges L.., " Engineering Mechanics:  Dynamics ".  
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...Page faculty of engineering technology dynamics rigid bodies mechanics information course code mec level undergraduate hours department structural construction management instructor title name office lecturer amr mohamed metwally ismaiel assistant noura khedr abdul raheem ahmed area study recognize the fundamental principles kinematics a body analyze concepts planar motion and its types translation rotation general plane or systems connected using vector scalar methods learn how to represent apply relations position velocity accelera tion for rolling problems various kinetics such as force acceleration work energy impulse momentum prob lems that containing description about fixed axis angular in stantaneous center relative newton s laws friction elastic forces equations principle conservation mechanical prin ciple impulsive impact introduction free forced vibrations outcomes knowledge understanding define main terms list items mechanism bodied explain principals describe concept b inte...

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