Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Science
  • Department of Physics
  • Course Structure Diagram with Credits
  • Waves and Optics Laboratory
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

  • At the end of this laboratory lecture, students; 1. can analyse measuring procedure, 1.1 can explane concept of measuring 1.2 can explain properties of physical measuring systems 1.3 can define errors in measuring procedure and error sources, 1.4 can define sensitivity of measuring 1.5 can make simple error calculations 2. can explain simple harmonic motion 2.1 can explain simple harmonic motion 2.2 can explain period , frequency and force constant 2.3 can define angular frequency and location of equilibrium by experimental method, 2.4 can discuss Hooke's Law 2.5 can define damped oscillations, 2.6 can discuss made experiments. 3. can explain standing waves and mechanical waves by experimental method 3.1 can explain double dimensioned standing waves on metal board, 3.2 can explain standing wave and amplitude 3.3 can antinode and knot points by experimental points 3.4 can define Mechanical transverse wave by experimental method. 3.5 can explain transverse and longitidunal waves 3.6. can define Knot and abdominal points 3.7 can discuss conclusions of made experiment 4. can explain refraction and reflection by experimental methods, 4.1 can investigate wave motions in wave tank by experimental method, 4.2. can explain reflection and refraction for wave motion, 4.3. can define how reflected planar wave from linear obstacle, by experimental method, 4.4 can define how reflecected planar wave from concave obstacle by experimental method 4.5 can define refraction of waves from one medium to other medium by experimental method, 4.6 can define variation of difracted waves goes from deep water to shallow water by experimental method, 4.7 can explain variation of wave velocity while goes from deep water to shallow water, 4.8 can explain conclusions of experiments. 5. can explain diffraction and interference by experimental method, 5.1 can explain how varieted difraction pattern while varieted wavelength and slide gap, 5.2 can explain difraction and interference for mechanical waves, 5.3 can explain concept of wavelength 5.4 can explain Does affect wavelength while increased frequence by experimental method, 5.5 can define variation of interference designs 5.6 can explain plane wave, 5.7 can explain while dilation of Quinckle tubes, by interference frequence of sound waves and wavelength by experimental method, 5.8 can explain conclusions of experiments.

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