It is ironic that you saw a demonstration of sound reflection and made it about gain. A little distortion in this track does not detract a bit from the information that is conveyed.
@@carmenborgia It absolutely does detract from the presentation, listening to this presentation on the principles behind achieving good acoustic sound quality was downright unpleasant, due to the terrible sound quality in the video.
Parts 1-4 of this video series have excellent illustrations of the physics involved. They're a must-watch for anyone looking to resolve sound absorption, reflection, or diffusion issues.
FINALLY I found an explanation of what a "mysterious" absorption is, and also found out about transmission... And it's all in 45 seconds!!! Huge thanks! This is just what I needed and couldn't find, again, thanks!
Architects don’t think sound travels in straight lines do they? Get a rubber or low sound reflective tube and make a sound on one end and look it then stick it in your ear. You’ll hear the sound just fine because sound is nothing really it’s the medium being compressed into waves. So Ray tracing isn’t the end all as it doesn’t address sound curving. Sound moves more like water. It’ll create waves when it hits a surface but also it’ll trickle through holes and sons corners as well.
They mentioned frequency at the very top ot the video, I'd say resonant frequency is not a necessary concept for this illustration. This is great for beginners, lighten up.
It’s ironic that a video that purports acoustic knowledge fails to deliver proper Unity Gain.
It is ironic that you saw a demonstration of sound reflection and made it about gain. A little distortion in this track does not detract a bit from the information that is conveyed.
q: "how to master for youtube?"
a: "just slam a limiter on there and don't bother checking quality after uploading"
@@carmenborgia It absolutely does detract from the presentation, listening to this presentation on the principles behind achieving good acoustic sound quality was downright unpleasant, due to the terrible sound quality in the video.
Its Someone who read a book on it but hasn’t actually done it.
Book smart not street smart
Parts 1-4 of this video series have excellent illustrations of the physics involved. They're a must-watch for anyone looking to resolve sound absorption, reflection, or diffusion issues.
How am I supposed to take this seriously when literally every track in this video is peaking? S A D
Because this demonstration is not about distortion? Great illustration for beginners.
FINALLY I found an explanation of what a "mysterious" absorption is, and also found out about transmission... And it's all in 45 seconds!!! Huge thanks! This is just what I needed and couldn't find, again, thanks!
I think they do need a lesson for Mastering
Architects don’t think sound travels in straight lines do they? Get a rubber or low sound reflective tube and make a sound on one end and look it then stick it in your ear.
You’ll hear the sound just fine because sound is nothing really it’s the medium being compressed into waves.
So Ray tracing isn’t the end all as it doesn’t address sound curving.
Sound moves more like water. It’ll create waves when it hits a surface but also it’ll trickle through holes and sons corners as well.
Thank you for making this!
Beautiful work for beginners. Thank you very much.
thank you for uploading this
super!
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What is a good inert material to stop sound
My ears are bleeding...
This is good for my work.
great
You're forgetting about frequency. Also forgetting about resonant frequencies. Some materials handle low frequencies better than high frequencies
They mentioned frequency at the very top ot the video, I'd say resonant frequency is not a necessary concept for this illustration. This is great for beginners, lighten up.
Baaaaaaaaaah