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Sonar measures the distance of an object by sending out a ping and listening to the echo. Sonar on a submarine will have many hydrophone locations to tell the listener the direction of the object, and by measuring how many hydrophones the echo hits, where, and when, you can use math to discover the approximate length of what you are listening to. Modern day sonar will often do the math for you and show you a radar like screen of dots where the sonar has heard an echoing ping within a certain distance. Also, once any specific ship has been heard once by a hydrophone and identified as a certain class vessel, the sonar crew can use passive sonar (no pinging. Listening only) to hear the screws turning in the water and can usually tell the experienced sailor (or the modern computer database) what types of ship it is likely to be. In the movie "The Hunt for Red October" the sonarman on the american submarine heard what the computer called "seismic activity" and identified this as, in fact, the Red October. This first identification, which took some time, enabled him to identify the sub faster in the future. There are however disadvantages to sonar. In modern times almost all military naval vessels have at least some basic form of sonar. As soon as somebody on a submarine sends a ping,, veryone else in the area knows you're there. Some ASW tactics involve planes dropping hundreds of passive and active sonobouys all over the area. The submarine will usually attempt to hide from the active sonobouys which will often lead it right towards a passive sonobouy.

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The system of using sound to measure distance is called what?

Sonar.


What is Sonar Mapping?

Sonar mapping uses sound waves to map out the contours or the shape of the ocean bottom. Sonar is an acronym for Sound Navigation Ranging. Typically, a pulse of sound is generated using a kind of underwater loudspeaker towed behind a boat. The pulse of sound, or "ping," spreads out through the water and is reflected back again by objects in the water, such as the ocean bottom, a fish, or a submarine. Underwater microphones measure the reflected sound. The time that it takes the echo to return is roughly proportional to the distance to the reflecting object. Like an echo in the air. Measuring the distance to a single object is relatively easy because it returns a simple echo. Making a map of the ocean floor is much more difficult because sound reflects back from many directions, from hills and valleys in the ocean floor. Complicated mathematics is needed to calculate a map of the ocean bottom.


What does sonar equipment measure?

Sonar is the science of sending out sound waves to an object and waiting for them to be bounced back to a receptor. Scientists can use this by shooting out the sound waves, then counting the amount of time it takes for the wave to shoot back to the receptor, and calculating the speed of the wave in proportion to the amount of distance traveled to get an idea of how large an object is. They would need to do so on all sides of it, of course, and it probably helps that they have lots of equipment to help measure.


A sonar measures distance by determining the?

True!Pretty much but it's not always off the ocean bottom. Sonar sends out a spherical "ping" it then receives pieces of the sphere back at different times based on when it hit something. It knows it's not the source as the pitch of the ping changes upon contact with a solid object. To gauge depth like what you're asking about something called "Directional Sonar" is used. Which focuses the ping in a given direction rather than a broad spectrum.


How do you use sonar in a sentence?

Scuba Divers use a Sonar to find treasure or a hidden ship.

Related Questions

What apparatus is used to locate a submerged object?

Sonar is an apparatus commonly used to locate submerged objects. It works by emitting sound waves that bounce off the object and return to the instrument, allowing the operator to determine the object's distance, size, and shape.


A sonar system measrues distance by determining the?

time it takes for a sound wave to reflect back from an object. By calculating the round-trip time and knowing the speed of sound in a particular medium, the sonar system can accurately determine the distance to the object.


How is sonar waves created?

Sonar waves are created by emitting sound pulses into the water from a transducer. These sound pulses travel through the water until they hit an object, which reflects the sound back towards the source. By measuring the time it takes for the sound to return, sonar systems can calculate the distance and shape of the object.


The process of using sound waves underwater to measure distance is called?

The process of using sound waves underwater to measure distance is called sonar, which stands for Sound Navigation and Ranging. Sonar systems emit sound waves that bounce off objects in the water and are then detected to determine the distance to the object.


Why is it not possible to use sonar to determine the speed of an object travelling faster than the speed of sound?

Sonar uses sound waves to measure distances by calculating the time it takes for the sound waves to bounce back. However, when an object is traveling faster than the speed of sound, the sound waves emitted by the sonar system cannot catch up with the object to bounce back, making it impossible to accurately determine the speed of the object using sonar.


How does a camera use Sonar?

A camera uses sonar to detect the distance to the object you are taking a picture of so it can focus the lens properly.


How do bats use sonar?

Bats use echolocation, a form of sonar, to navigate and locate prey in the dark. They emit high-frequency sounds that bounce back when they hit an object, allowing the bat to determine the object's location, size, shape, and texture. This helps bats to fly and hunt effectively in the night.


How does sonar system measure distance?

A sonar system measures distance by sending out sound waves that bounce off an object and return to the sensor. The system calculates the distance based on the time it takes for the sound waves to return. By knowing the speed of sound in water or air, the system can accurately determine the distance to the object.


How does it find the waves?

Sonar technology uses sound waves to detect objects underwater. When the sound waves hit an object, they bounce back to the device, allowing it to calculate distance, shape, and size of the object. By measuring the time it takes for the sound waves to return, sonar can create a detailed image of the underwater environment.


How do we use sonar?

Sonar is used to measure distances by transmitting sound waves and detecting their echoes as they bounce off objects. To use sonar, you typically send out sound waves from a source, wait for them to bounce back from objects in their path, and then measure the time it takes for the sound waves to return to determine the distance to the object.


What type of waves are emitted detected by sonar waves?

Sonar waves are a type of sound wave that are emitted and detected underwater to determine the location and features of objects. They are high-frequency waves that travel through water and bounce off objects, allowing for the measurement of distance and shape.


What is using echoes to find and object?

Using echoes to find an object involves emitting sound waves and then listening for the reflected waves when they bounce off the object. By measuring the time it takes for the echoes to return, we can determine the distance to the object. This technique is utilized in various applications such as sonar and ultrasound imaging.