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Graphic
Georgia State University

Georgia State University: Hyper Physics: Auditorium Acoustics

For Students 9th - 10th
Home page for a hypertext physics course on auditorium acoustics and acoustical design.
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Website
Georgia State University

Georgia State University: Hyper Physics: Architecture for Acoustics

For Students 9th - 10th
A physics tutorial on designing an auditorium and solving the problem of sound reflection. Illustrated.
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Handout
Georgia State University

Georgia State University: Hyper Physics: Non Focusing Surfaces

For Students 9th - 10th
This hypertext physics course tutorial on nonfocusing surfaces relates various design principles to good auditorium design. Illustrated.
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Graphic
Georgia State University

Georgia State University: Hyper Physics: The Place Theory

For Students 9th - 10th
An indexing page for an elaborate and in-depth hyper-textbook on various physics topics. This page indexes several others which pertain to human ability to perceive sound and recognize pitch. Introduces and explains Place Theory.
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Graphic
Georgia State University

Georgia State University: Hyper Physics: Sound Propagation

For Students 9th - 10th
This page and the many pages which are indexed to focus on the behaviors of sound which characterize it as a wave. Reflection, refraction, interference, diffraction and more are clearly illustrated and explained.
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Handout
Georgia State University

Georgia State University: Hyper Physics: Reverberation

For Students 9th - 10th
A tutorial from a hypertext physics course book that discusses reverberation. Illustrated.
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Handout
Georgia State University

Georgia State University: Hyper Physics: Diffraction of Sound

For Students 9th - 10th
This site's entry is a discussion of diffraction and its application to acoustics and acoustical design. Exceptional illustrations and great discussion throughout.
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Handout
Georgia State University

Georgia State University: Hyper Physics: Refraction of Sound

For Students 9th - 10th
A discussion of refraction and its application to sound waves. Using analogies, graphics and real-life applications, this page and those that accompany it explain why and when sound waves bend.