DYNAMICS
BDA20103– RPP 04
MAZNAN BIN HJ ISMON
Department of Mechanical Engineering,
Faculty of Mechanical and Manufacturing Engineering,
University Tun Hussein Onn Malaysia (UTHM),
RPP and Lecture Notes
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  UTHM Author
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Course Objectives
   To understand the kinematics and
    kinetics concepts.
   To predict the effects of force and motion
    while carrying out the creative design
    functions of engineering.
   To apply problem-solving procedures
    that will use in succeeding courses and
    throughout career.
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Learning Outcomes
 At the end of this course, the students will be able to:
  Determine the position, velocity and acceleration of
    particles and rigid bodies using kinematics.
  Use law of motion to relate forces and acceleration of
    particles and rigid bodies.
  Apply the principle of work and energy to solve
    kinetics problem on particles or rigid bodies.
  Solve the kinetics problems using the principles of
    impulse and momentum.
  Apply all methods that have studied in real situation.
  Communicate and work effectively in a group through
    given assignments and presentations.
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References
    Hibbeler R.C., 2008. Engineering Mechanics –Dynamics, 11th S.I.
     Edition, Prentice Hall.
    Meriam J.L. and Kraige L. G., 2007. Engineering mechanics –
     Dynamics, 6th Edition, John Wiley & Sons, Inc.
    Bear F.P. and Johnson E. R., 2007. Vector Mechanics for Engineers
     – Dynamics, 8th S.I. Edition, Mc Graw Hill
    David H. Myszka, 2005. Machines and Mechanisms, 3rd Edition,
     Prentice Hall.
    Bedford A. & Wallace T. Fowler, 2008. Engineering Mechanics-
     Dynamics, 5th S.I. Edition, Prentice Hall.
    Siswanto W A, 2008. Principle of Engineering Dynamics : Concise
     Theory and Application, 1st Edition. Penerbit UTHM
    Mohd Imran Ghazali, Izzuddin Zaman, et.al., 2007, Koleksi Soalan
     Dinamik, Penerbit UTHM.
    Saifulnizan Jamian; Izzuddin Zaman, et.al., 2007, Dynamics,
     Penerbit UTHM.
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Assessment Scheme
  Students attendance *
  Individual assignment (2) (10%)
  Group Assignment/Project (10%)
  Test 1                    (15%)
  Test 2                    (15%)
  Final Examination         (50%)
 * Attendance must not less than 80%
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Subject Delivery
   Lecturing
    Explaining theories, methods and
    understanding related to the topics
   Tutoring
    Discussing sample problems related to
    the topics
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T&L SCHEDULE
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Topics (first half semester)
       KINEMATICS OF PARTICLES
              Rectilinear motion
              Curvilinear motion
              Rectangular components of velocity and
               acceleration
              Tangential and normal components
              Radial and transverse components
              Relative motion
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Topics (first half semester)
       KINETICS OF PARTICLES
              Force, mass and acceleration
              Work and energy
              Impulse and momentum
              Direct impact
              Oblique impact
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Topics (second half semester)
       KINEMATICS OF RIGID BODIES
              Translation, rotation and general plane
               motion
              Absolute motion
              Relative velocity and acceleration
              Zero velocity instantaneous center
              Relative motion of rotating frame
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Topics (second half semester)
       KINETICS OF RIGID BODIES
              Moment inertia
              Force, mass and acceleration
              Translation
              Rotation
              General plane motion
              Work and energy
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              See you again …….
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