This course introduces acoustics by using the concept of impedance. The course starts with vibrations and waves, demonstrating how vibration can be envisaged as a kind of wave, mathematically and physically. They are realized by one-dimensional examples, which provide mathematically simplest but clear enough physical insights. Then the part 1 ends with explaining waves on a flat surface of discontinuity, demonstrating how propagation characteristics of waves change in space where there is a distributed impedance mismatch.
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What's included
1 video
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1 video•Total 10 minutes
Introduction•10 minutes
Vibration and Waves
Module 2•3 hours to complete
Module details
You will going to learn basic concepts of vibration and waves for this week. From the vibration of string, you will be able to derive one dimensional wave equation. Then it will be explained with the concept of 'Impedance.'
What's included
8 videos1 assignment
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8 videos•Total 128 minutes
Week 1: Introduction•2 minutes
Lecture 1-1 Part 1. String Vibration •19 minutes
Lecture 1-1 Part 2. One Dimensional Wave Equation •26 minutes
Lecture 1-2 Part 1. Specific Impedance •21 minutes
Lecture 1-2 Part 2. The Governing Equation of a String •17 minutes
Lecture 1-2 Part 3. Driving Point Impedance •21 minutes
Lecture 1-3 Use of Complex Function •18 minutes
Week 1 Summary Video•3 minutes
1 assignment•Total 30 minutes
Quiz for Week 1 (Vibration & Waves)•30 minutes
Acoustic Wave Equation
Module 3•3 hours to complete
Module details
Earlier part of this week, you will learn three fundamental physical measures that explain one dimensional wave equation. After that, you will briefly learn about basic concepts of acoustic intensity and energy.
What's included
8 videos2 assignments
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8 videos•Total 132 minutes
Week 2: Introduction •2 minutes
Lecture 2-1 Part 1. 1-Dimensional Wave Equation 1 •20 minutes
Lecture 2-1 Part 2. 1-Dimensional Wave Equation 2 •16 minutes
Lecture 2-1 Part 3. 1-Dimensional Wave Equation 3 •27 minutes
Week 2 Summary Video•4 minutes
Lecture 2-2 Part 1. Acoustic Intensity & Energy 1•16 minutes
Lecture 2-2 Part 2. Acoustic Intensity & Energy 2•14 minutes
Lecture 2-2 Part 3. Units of Sound (dB Scale) •34 minutes
2 assignments•Total 60 minutes
Quiz for Week 2-1 (Wave Equation)•30 minutes
Quiz for Week 2-2 (Basic Measurement)•30 minutes
Acoustic Wave Equation and its Basic Physical Measures
Module 4•2 hours to complete
Module details
On this week, you will learn deeply into acoustic intensity and energy. Then you will get the concept of units of sound, or dB scale with listening to various sound. At the end, you will be able to derive the solutions of the wave equation.
What's included
8 videos1 assignment
Show info about module content
8 videos•Total 129 minutes
Week 3: Introduction •1 minute
Lecture 3-1 Part 1. Acoustic Intensity & Energy 1•36 minutes
Lecture 3-1 Part 2. Acoustic Intensity & Energy 2•14 minutes
Lecture 3-1 Part 3. The Units of Sound •16 minutes
Lecture 3-2 Part 1. Review: Intensity & Units •12 minutes
Lecture 3-2 Part 2. Listening Demonstration •28 minutes
Lecture 3-2 Part 3. Solutions of the Wave Equation •20 minutes
Week 3 Summary Video•2 minutes
1 assignment•Total 14 minutes
Quiz for Week 3 (Wave Equation & Basic Measures)•14 minutes
Waves on a Flat Surface of Discontinuity 1
Module 5•3 hours to complete
Module details
You will now learn when the waves meet on a flat surface of discontinuity. It will be explained with the mass law of wave phenomena.
What's included
8 videos1 assignment
Show info about module content
8 videos•Total 126 minutes
Week 4: Introduction •3 minutes
Lecture 4-1 Part 1. Normal Incidence on a Flat Surface of Discontinuity 1 •22 minutes
Lecture 4-1 Part 2. Normal Incidence on a Flat Surface of Discontinuity 2 •22 minutes
Lecture 4-1 Part 3. The Mass Law 1 •15 minutes
Lecture 4-2 Part 1. Review: Normal Incidence on a Flat Surface of Discontinuity •16 minutes
Lecture 4-2 Part 2. The Mass Law 2 •29 minutes
Lecture 4-2 Part 3. The Mass Law 3 (demonstration) •16 minutes
Week 4 Summary Video•3 minutes
1 assignment•Total 30 minutes
Quiz for Week 4 (Waves on a Flat Surface of Discontinuity)•30 minutes
Waves on a Flat Surface of Discontinuity 2
Module 6•3 hours to complete
Module details
You will going to learn more about the waves on a discontinuity. With the Snell's Law, you will be able to find out the wave propagation after transmission and reflection on discontinuity.
What's included
8 videos1 assignment
Show info about module content
8 videos•Total 131 minutes
Week 5: Introduction •2 minutes
Lecture 5-1 Part 1. Review: The Mass Law •30 minutes
Lecture 5-1 Part 2. Transmission Loss at a Partition •17 minutes
Lecture 5-1 Part 3. Snell's Law 1 •15 minutes
Lecture 5-2 Part 1. Snell's Law 2 •22 minutes
Lecture 5-2 Part 2. Transmission and Reflection of an Infinite Plate •29 minutes
Lecture 5-2 Part 3. Transmission and Reflection of a Finite Structure •14 minutes
Week 5 Summary Video•3 minutes
1 assignment•Total 30 minutes
Final Exam•30 minutes
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The Korea Advanced Institute of Science and Technology (KAIST) was established in 1971 by the Korean government as the nation’s first research-intensive graduate school for science, engineering and technology. It has now grown into one of the world’s best universities, delivering top notch education and research programs for undergraduate and graduate students. KAIST encourages interdisciplinary and convergent research across a wide spectrum of disciplines, as well as strong collaborations with industry and global institutions.
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