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OpenStudy (royl_focus):

Sonics?

OpenStudy (mathwizzard3):

Huh?

OpenStudy (royl_focus):

nobody helps :(

OpenStudy (mathwizzard3):

Oh it is just that I don't know what that means

OpenStudy (mathwizzard3):

I can try to help :/

candycove (candycove):

Sonics?

OpenStudy (mathwizzard3):

what does that mean?

jabez177 (jabez177):

https://en.wikipedia.org/wiki/Seattle_SuperSonics ?

OpenStudy (royl_focus):

https://www.sonicdrivein.com/

OpenStudy (royl_focus):

alones (alones):

dis oh haha xP

OpenStudy (royl_focus):

meh

alones (alones):

meh ?? Hm.

OpenStudy (royl_focus):

Any discussion of what happens when an object breaks the sound barrier must begin with the physical description of sound as a wave with a finite propagation speed. Anyone who has heard an echo (sound waves reflecting off a distant surface) or been far enough away from an event to see it first and then hear it is familiar with the relatively slow propagation of sound waves. At sea level and standard atmospheric conditions of 22 degrees Celsius, sound waves travel at 345 meters per second (770 miles per hour). As the local temperature decreases, the sound speed also decreases, so for ''Sonic running at 35,000 feetwhere the ambient temperature is 54 Cthe local speed of sound is 295 meters per second'' (660 miles per hour). Sanic Da Hooghog

OpenStudy (royl_focus):

you guys are good people you know that? :)

candycove (candycove):

Yes. We are aware.

OpenStudy (mathwizzard3):

I love sonic! Both the game and the place you eat. :D

jigglypuff314 (jigglypuff314):

Hello @RoyL_Focus and thank you for sharing your question on Twitter ^_^ Do you still need any help with your question? :)

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