Why do people use sonar under water?

Answers

Answer 1

Due to the fact that sound waves travel further in water than radar and light waves do, sonar, which stands for Sound Navigation and Ranging, is useful for exploring and mapping the ocean.

How does underwater sonar operate?

By sending ultrasonic waves into the water and listening for the returned echoes, a sonar may find these items. The distribution, density, and movement of a school of fish can be seen on the Sonar display at an angle of 360° or 180° in all directions.

Can sonar identify undersea humans?

To "see" in the water, sonar uses sound waves. To find underwater shipwrecks, bodies of people, and other objects, as well as to determine the circumstances of their drowning, sonar is a very valuable tool.

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Related Questions

if the water pressure at a pump station at sea level is 4,000,000 pa, how high can the water be pumped uphill, and how fast will it flow out of a faucet at a washing station at sea level? group of answer choices 408 m; 45 m/s

Answers

At a washing station at sea level, the water is pushed 408 meters uphill and flows out of a faucet at 45 meters per second.

What is the water pump's pressure?

According to the needs of the application, the discharge water is pressured. The water is pressurized to 3000psi to 5000psi for cleaning applications. They are extremely highly pressurized in the pressure ranges of 30000psi to 50000psi for cutting purposes. Water that must be pushed in a specific length of time is called a flow rate.

How are water pumps operated?

Wastewater or sewage is gathered at a pump station and kept there in a chamber. When the level of collected sewage reaches its maximum, a high-pressure integrated pump is used to lift the sewage through a discharge system. 

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Three students observe a toy car rolling across a level floor until it slows to a stop. After the observation, they make these statements: Max: "Energy is conserved, but friction turned it into heat, warming the floor and wheels." Chris: "But it stops. Energy is not conserved. The car's kinetic energy disappeared." Sam: "But energy can't just disappear. It must have become potential energy." Which student was correct?

Answers

Answer:

max

Explanation:

in this case Chris said that the car stops which means that its energy has disappear we know that this is wrong because energy can't just disappear energy can't be destroyed and Sam told that energy can't be the towards so it should have become potential energy in order for a body to be up converted into potential energy we need to change its position in respect to gravity in this case is position is not change in respect to gravity where is Max is correct because due to the production of wastage energy each energy and sound energy is produced due to friction and that's what stop the car

What are the elements of realism?

Answers

Realism is characterised by its emphasis on social issues, common difficulties, life's realities, and largely middle- and lower-class people.

What does the word "realism" really mean?

1. A propensity to be realistic and practical rather than creative or visionary 2. depicting people and things in literature and art in their true, non-idealized state. likewise see naturalism.

In books, what does realism mean?

A literary genre known as realism depicts typical day-to-day events as they actually take place in reality. This frequently concentrates on persons from the middle and lower classes and on well-known locations.

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According to the diagram, the approximate abundance of oxygen atoms in the galaxy is __________.
1/10 that of hydrogen
1/100 that of hydrogen
1/1000 that of hydrogen
1/10,000 that of hydrogen

Answers

According to diagram, the approximate abundance of oxygen atoms in the galaxy is 1/1000 that of hydrogen.

If we look along the vertical axis, we find that the point for oxygen lies about halfway between the points  10−4 and 10−2, near to 10−3, which is 0.001 or 1/1000. Therefore, the abundance of oxygen atoms is about 1/1000 that of hydrogen.

The general trend in elemental abundance in our galaxy: There is a general trend of increasing abundance with increasing atomic number. Exceptional rule is that elements with odd atomic numbers tend to be more abundant compared to elements with even atomic numbers. These abundances decrease smoothly from atomic number of 6 to atomic number of 20. These abundances fluctuate randomly.

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The percent composition by mass of nitrogen in nh4oh (gram-formula mass = 35 grams/mole) is equal to.

Answers

The percent composition by mass of nitrogen in NH[tex]_{4}[/tex]Oh (gram-formula mass = 35 grams/mole) is equal to 40% N.

Meaning of Nitrogen: Nitrogen (N), a nonmetallic element belonging to Periodic Table Group 15. It is a colorless, flavorless, and odorless gas that makes up the majority of the atmosphere on Earth and is a component of all living things.

You must divide the element's atomic mass (AM), which is 14 for nitrogen, by the total compound's molar mass (MM), then multiply the result by 100 to determine the percent composition of an atom by mass. The following is the formula for calculating percent composition.

[tex]=\frac{AMN}{MMNH_{4} OH} *100[/tex]

[tex]=\frac{14}{35} *100[/tex]

[tex]=\frac{1400}{35}[/tex]

[tex]= 40[/tex]

Therefore the percent composition by mass of nitrogen in NH₄OH is

40% N

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Rita is riding a 7.0 kilogram bike at a velocity of 15 meters/second. Rita’s mass is 42 kilograms. What is her momentum?

Answers

Rita's momentum  is 294 kg.m/s.

What is momentum?

The product of a particle's mass and velocity is called momentum. Being a vector quantity, momentum possesses both magnitude and direction. According to Isaac Newton's second equation of motion, the force applied on a particle is equal to the time rate of change of momentum.

Given that Rita is riding a 7.0 kilogram bike at a velocity of 15 meters/second.

Mass of Rita = 42 kg.

Hence, her momentum is = mass × velocity

= 7.0 × 42 kg.m/s

= 294 kg.m/s.

Her momentum  is 294 kg.m/s.

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When an object is moved from rest at a point A to rest atpoint B in a gravitational field, the net work done by thefield depends on the mass of the object and

1. the velocity of the object as it moves between A andB
2. the positions of A and B
3. both the positions of A and B and the pathtaken between them
4. the path taken between A and B only
5. the nature of the external force moving the object fromA to B

Answers

When an object is moved from rest at a point A to rest at point B in a gravitational field, the net work done by the field depends on the mass of the object (4) the path taken between A and B only.

The work done depends on the mass, acceleration due to gravitation and height. Hence, the distance between point A and point B affects the net work done by the objects.

Work done = mass X acceleration due to gravity X height

= W = mgh

where,

Mass of the object = m

Acceleration due to gravity = g

Height between the object = h

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IM BEGGING IVE LITERALLY LOST HOPE AND I REALLY NEED HELP PROPER ANSWE PLEASEEEE

Complete the values in the table, assuming that all projectiles are launched horizontally and fall
downwards with an acceleration of 9.8 ms 2. Give all your answers to 2 significant figures.
Find the time to reach target and distance fallen

Answers

Time to reach target / s---> B4.1, Distance fallen / m,----> B4.2,

What is the connection between time and acceleration?

The magnitude of the velocity change increases with lengthier acceleration. When acceleration is constant, the change in velocity is directly proportional to time. If velocity grows by a particular amount during a specific period of time, it ought to do so by an equal amount over an equal period of time.

What is the distance-time formula for acceleration?

The equation a = v/t denotes acceleration (a), which is the change in velocity (v) over the change in time (t). This enables you to calculate the change in velocity in meters per second squared (m/s2). ​

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Part A Determine the equivalent capacitance between points a and b for the combination of capacitors shown in (Figure 1). Express your answer in terms of the variables C1, C2, C3, and C4. O AO in O 2 ? Cab = Submit Request Answer

Answers

The equivalent capacitance between points a and b for the combination of capacitors shown in Figure 1 is equal to C1 + C2 + C3 + C4.

The equivalent capacitance between points a and b for the combination of capacitors shown in Figure 1 can be determined by evaluating the capacitances of each individual capacitor and then adding them together. The capacitance of C1 is directly connected between points a and b, so it is simply C1. The capacitance of C2 and C3 are in parallel, so the equivalent capacitance of these two is C2 + C3. Similarly, the capacitance of C4 is in parallel with C2 + C3, so the equivalent capacitance of the combination is C1 + C2 + C3 + C4. Therefore, the equivalent capacitance between points a and b for the combination of capacitors shown in Figure 1 is equal to C1 + C2 + C3 + C4.

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What is the relationship between frequency and wavelength direct or inverse What is the relationship between frequency and energy direct or inverse?

Answers

Just as wavelength and frequency are related to light, they are also related to energy. The shorter the wavelengths and higher the frequency corresponds with greater energy.

So the longer the wavelengths and lower the frequency results in lower energy. The energy equation is E = hν. Frequency and wavelength are inversely related to one another, as shown by the equation v = f. For an electromagnetic wave, the connection between frequency and energy is as follows. The electromagnetic wave's energy (E) is equal to its frequency times Plank's constant (h) (f). This relationship is an illustration of a relationship that is directly proportional. The wavelength of the radiation has an inverse relationship with the energy of the photons. A wavelength's frequency and energy (E) drop as it gets longer. You may conclude from these equations that the wavelength gets shorter as the frequency rises. The wavelength lengthens as the frequency drops. The two main categories of waves are electromagnetic and mechanical.

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What is the relationship between wavelength and frequency Mcq?

Answers

The equation =c/f relates wavelength and frequency. There is an inverse relationship between wavelength and frequency.

What connection exists between the frequency and wavelength of EM waves?

One crucial equation connects them all: The speed of light is equal to the frequency times the wavelength of any electromagnetic wave. If we know the other measurement, we can use this connection to calculate the wavelength and frequency of the any electromagnetic wave.

What is a wavelength differs from a frequency in ways?

The distance between the crests of two waves is known as the wavelength, which also applies to troughs. The number of vibrations that pass across a certain area in a second is the frequency, which is expressed in seconds per cycle (Hz) (Hertz). This article discusses how wavelength and frequency relate to one another.

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A wall measures 4,20 m ± 0.01 m by 3.10 m ± 0.02 m. What is the approximate percent uncertainty in the area of the wall?

Answers

The error in the measurement of the area of the wall is 1.54 x 10⁻³ %.

What are percent uncertainty?

Percent uncertainty is the ratio of error in measurement to the actual measurement multiplied by 100%.

The actual measurement of the area of the wall is calculated as follows;

Area = L B

where;

L is the length of the wallB is the breadth of the wall

Area = 3.1 m  x  4.2 m

Area = 13.02 m²

The error in the measurement of the area of the wall is calculated as follows;

error = 0.01 m x 0.02 m

error = 2 x 10⁻⁴ m²

Percent uncertainty = error / actual measurement  x 100%

Percent uncertainty = ( 2 x 10⁻⁴ / 13.02 ) x 100%

Percent uncertainty = 1.54 x 10⁻³ %

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a paramecium is covered with motile hairs called cilia that propel it at a speed of 1 mm/s.

Answers

The speed of paramecium is given. The de-Broglie's wavelength of the particle is 3.313 × 10⁻²¹ m.

Given that, the speed of paramecium v = 1 mm/s = 1 × 10⁻³ m/s

Volume of paramecium = 2× 10⁻¹³ m³

Density of paramecium = 1000 kg/m³

Mass of paramecium is given by the formula, m = ρ v

⇒ 1000 × 2× 10⁻¹³ = 2× 10⁻¹⁰ kg

The de-Broglie's wavelength of the particle is,

λ = h/p = h/mv = (6.626 × 10⁻³⁴)/[2× 10⁻¹⁰ × 10⁻³] = 3.313 × 10⁻²¹ m

where, h is plank's constant

p is momentum

Thus, the required de-Broglie's wavelength of the particle is 3.313 × 10⁻²¹ m.

The question is incomplete. The complete question is 'If the paramecium has a volume of 2E-13m³ and a density equal that of water, what is the de-Brogile wavelength when in motion?

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A planet moves in an elliptical orbit around a star, as shown in the diagram. Which of the following is true as the planet moves from position 1 to position 2?
А.The planet loses kinetic energy due to negative gravitational work; thus, the total energy in the planet-star system decreases.
B.The planet's kinetic energy increases due to positive gravitational work; thus, the total energy in the planet-star system increases.
C.Kinetic energy decreases and gravitational potential energy increases, but the total energy in the planet-star system stays constant.
D.Potential energy decreases and kinetic energy increases, but the total energy in the planet-star system stays constant.

Answers

Kinetic energy decreases and gravitational potential energy increases when the planet moves from position 1 to position 2, but the total energy in the planet-star system stays constant. Hence, option (C) is correct.

What is  planetary system?

A group of non-stellar objects in or out of orbit around a star or star system that are gravitationally bonded together is known as a planetary system.

In general, planetary systems consist of one or more planets, though they can also include other objects such dwarf planets, asteroids, natural satellites, meteoroids, comets, planetesimals, and circumstellar discs.

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What does λ mean in the wave equation?

Answers

In physics, the symbol λ (lambda) is used to represent the wavelength of a wave.
What is wave equation?
Wave equation is an equation that describes the behavior of waves, such as sound and light. It is used to analyze wave patterns and their interactions. Wave equations can be used to describe the propagation of waves in different media, such as air, water, and solids. Wave equations are also used to study wave phenomena, including resonance, diffraction, interference, and scattering.
It is typically used in the wave equation, which describes the relationship between the speed, frequency, and wavelength of a wave. λ is usually represented by the Greek letter lambda and is used to calculate the speed of a wave in a medium or vacuum. λ can also be used to calculate the frequency of a wave when the speed and wavelength are known.
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a race car completes the final lap of a race on a 2-kilometer circular track. at the start of the lap, it crosses the line at 60 meters/second. it completes the lap 28.57 seconds later, crossing the line at 85 meters/second. calculate the displacement and average acceleration of the car along the track over the course of the final lap.

Answers

The average acceleration is (0.88 m/s2) given that (85 m/s - 60 m/s)/28.57 s.

A. The distance travelled is 0 metres, and the speed is 0.88 metres per second.

B. The distance travelled is 2,000 metres, and the speed is 1.14 metres per second.

C. The distance travelled is 0 metres, and the speed is 70.0 metres per second2.

D. The distance travelled is 2,000 metres, and the speed is 80.0 metres per second.

E. The distance travelled is 0 metres, and the speed is 0.70 metres per second2.

Displacement is a change in position over a predetermined period of time. The displacement is 0 since the initial and final positions are equal.

-

Average acceleration is the result of changing time and velocity. As a result, the average acceleration is (0.88 m/s2) given that (85 m/s - 60 m/s)/28.57 s.

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