DRT 112 · 3(2-3-5) · Year/term 1/1

Applied Physics for Aircraft Technology

ฟิสิกส์ประยุกต์สำหรับเทคโนโลยีอากาศยาน

Progress
Notional hours: 150 h (online/self-study 75 · in class/lab 75)

Course description

Principles of mechanics, force and motion, work and energy, momentum, fluids, pressure, heat, electricity, and magnetism relevant to aircraft technology; lift, drag, propulsion, balance and stability; laboratory experiments and analysis related to unmanned aircraft systems.

Thai description

หลักกลศาสตร์ แรง การเคลื่อนที่ งานและพลังงาน โมเมนตัม ของไหล ความดัน ความร้อน ไฟฟ้าและแม่เหล็กที่เกี่ยวข้องกับเทคโนโลยีอากาศยาน การยก แรงต้าน การขับเคลื่อน สมดุลและเสถียรภาพ ตลอดจนการทดลองและการวิเคราะห์ปรากฏการณ์ที่เกี่ยวข้องกับ UAS

Description source: Curriculum draft — supplementary proposal

Course learning outcomes (CLO)

CLOOutcomePLO
CLO1Explain forces, moments and UAS motion using Newton's lawsPLO1
CLO2Explain aerodynamic principles, lift, drag and propeller thrustPLO1
CLO3Conduct and analyse flight-related physics experimentsPLO1PLO4

Learning modules

1Mechanics and the four forces
Weeks 1–3 · 30 h
Lesson 80 minquiz2 KU

Online (before class) · 15 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

2Atmosphere and basic aerodynamics
Weeks 4–6 · 30 h
Lesson 85 minquiz5 KU

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

3Propellers, thrust and moments
Weeks 7–9 · 30 h
Lesson 90 minquiz2 KU

Online (before class) · 15 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

4Energy, power and endurance
Weeks 10–12 · 30 h
Lesson 85 minquiz2 KU

Online (before class) · 15 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

5Physics in flight simulators
Weeks 13–15 · 30 h
Lesson 80 minquiz5 KU

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

Assessment (draft)

Labs and worksheets35%
Module quizzes10%
Midterm examination20%
Mini-project or practical exam35%

Knowledge domain

Key references

  1. Serway, R. A., & Jewett, J. W. (2018). Physics for scientists and engineers (10th ed.). Cengage.
  2. Anderson, J. D. (2016). Introduction to flight (8th ed.). McGraw-Hill.
  3. Quan, Q. (2017). Introduction to multicopter design and control. Springer.