We can use ultrasonic planes. They can travel with that speed.
How much time would it take for the sound of thunder to travel 2000 meters if sound travels a speed of 330 meters per sec.
The speed of sound is a Mach. 1 Mach for a particular medium is the distance that sound would travel through that medium in 1 second.
It would take approximately 4.55 seconds for the sound of thunder to travel 1500 meters at a speed of 330 meters per second. This is calculated by dividing the distance by the speed of sound.
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It would take approximately 1 year to travel 1 light year at the speed of sound, which is around 767 mph (1,234 km/h). However, it is important to note that the speed of sound is much slower than the speed of light, which travels about 186,282 miles per second (299,792 km/s).
No real limit, up to the speed of light. The Apollo astronauts traveled at ABOUT 32 times the speed of sound on their trip to the moon. That is the fastest yet.
The planet Mercury does not have an atmosphere in the same way that the Earth has an atmosphere; it has only a very thin layer of gases far above its surface. Because sound cannot travel in a vacuum, there would be no speed of sound on Mercury.
The speed of sound varies depending on the medium it is traveling through. In Earth's atmosphere, the speed of sound is about 343 meters per second. On Mars, where the atmosphere is much thinner, the speed of sound would be slower than on Earth. Therefore, the speed of sound from Mars to Earth would be slower than 343 meters per second.
Exceeding the sound barrier refers to speed of travel, not loudness of sound. A speaker cannot "exceed the sound barrier".
I would travel 761 miles at 1 Hour
The speed of sound at 350F is 1395 feet/second (Oven).The speed of sound at 0F is 1051 feet/second (Freezer).Sound travels faster in a hot oven than a cold freezer.
The circumference of the Earth at the equator is approximately 40,075 kilometers. The speed of sound at sea level is about 343 meters per second. To calculate the time it would take to travel around the equator at that speed, you would divide the circumference by the speed of sound, resulting in roughly 117 hours, or about 4.9 days.