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The Music Producer's Ultimate Guide to FL Studio 21 - Second Edition

You're reading from  The Music Producer's Ultimate Guide to FL Studio 21 - Second Edition

Product type Book
Published in Jun 2023
Publisher Packt
ISBN-13 9781837631650
Pages 462 pages
Edition 2nd Edition
Languages
Author (1):
Joshua Au-Yeung Joshua Au-Yeung
Profile icon Joshua Au-Yeung

Table of Contents (20) Chapters

Preface 1. Section I: Getting Up and Running with FL Studio
2. Getting Started with FL Studio 3. Exploring the Browser, Playlist, and Channel Rack 4. Composing with the Piano Roll 5. Routing to the Mixer and Applying Automation 6. Section II: Music Production Fundamentals
7. Sound Design and Audio Envelopes 8. Compression, Sidechaining, Limiting, and Equalization 9. Stereo Width (Panning, Reverb, Delay, Chorus, and Flangers) and Distortion 10. Recording Live Audio and Vocal Processing 11. Vocoders and Vocal Chops 12. Creating Your Own Instruments and Effects 13. Intermediate Mixing Topics and Sound Design Plugin Effects 14. Section III: Postproduction and Publishing Your Music
15. Mastering Fundamentals 16. Marketing, Content Creation, Getting Fans, and Going Viral 17. Publishing and Selling Music Online 18. Other Books You May Enjoy
19. Index

How do instruments create sound with different pitches?

In order to understand how instruments create pitches, we need to understand how instruments create sound waves. There are two types of sound waves. Traveling waves are observed when a wave is not confined to a given space. If you were to shake an unattached, loose rope, the resulting random ripple in the rope would be a traveling wave. The wave could have any wavelength as there’s nothing restricting the length.

Standing waves, on the other hand, occur when a wave is confined to a fixed space in a medium. The medium restricts the wavelength to hit recurring wavelengths and frequencies. If you were to shake a string that’s attached to a pole, the resulting constrained ripple would be a standing wave.

This medium restriction produces a regular wave pattern that repeats. We call this a standing wave (as though it were standing still). You can see an example of a standing wave in the following figure:

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