a grunting porpoise emits sound at 57 hz. what is the wavelength of this sound in water, where the speed of sound is 1500 m/s? (in m)

Answers

Answer 1

The wavelength of this sound in water, where the speed of sound is 1500 m/s  is 26.31 m.

What is wavelength ?

The wavelength is the spatial period of a periodic wave—the distance over which the wave's shape repeats.

[tex]V=n \lambda[/tex]

where λ is wave length, n frequency and V velocity of sound

[tex]\lambda=\frac{V}{n}=\frac{1500}{57}=26.315 \mathrm{~m}[/tex]

The frequency f = 57 Hz of the sound that the purpoiseemits is the same in water as it was in its original medium. If thevelocity of sound in water is v = 1500 m/s, the relationship between velocity, wavelength λ and frequencyis:

[tex]v=f \lambda[/tex]

[tex]\lambda=\frac{v}{f}[/tex]

[tex]\lambda=\frac{1500}{57}[/tex]= 26.31 m

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Related Questions

if quasars are at the distances most astronomers believe they are, then (for the most luminous ones) their luminosities must be:

Answers

Like the combined luminosity of a hundred trillion (1014) Suns.

What is the luminosity of the most powerful quasars?A new quasar with a 12 billion solar mass central black hole and 430 trillion solar luminosity was found by the Peking University Department of Astronomy at a distance of 12.8 billion light years from the Earth. This quasar, driven by the most massive black hole then known to exist, is the most brilliant one to be found in the early Universe. The finding of this quasar, designated SDSS J0100+2802, represents a significant advancement in our understanding of the evolution of quasars, the most potent cosmic phenomena, from their inception nine hundred million years after the Big Bang. On February 26, 2015, the leading scientific publication Nature reported on this discovery.

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A scuba diver fills her lungs to capacity (6.0 L) when 10.0 m below the surface of the water and begins to ascend to the surface. Assume the density of the water in which she is swimming is 1000 kg/{eq}m^3 {/eq} and use g = 10 m/{eq}s^2 {/eq}
A. Assuming the temperature of the air in her lungs is constant, to what volume must her lungs expand when she reaches the surface of the water?
B. What effect would the warming of the air in her lungs have on the volume needed when she surfaces?
C. Assuming the temperature of the air in her lungs is constant, what effect does her ascent have on the vrms of the air molecules in her lungs?

Answers

The lungs of a scuba diver should expand to a volume of 12 L, the volume of air in her lungs will grow with an increase in surface air temperature, and the rms speed of the air velocity in her lungs won't change.

It is stated that water has a density of 1000 kg/m3. The diver's 6L lung capacity allows her to descend 10m under the sea. We may suppose that the water's temperature is constant.

A. The pressure P₁ at the surface of water is 100000 Pa.

So, the pressure at the depth of 10m in water will be given by,

P₂ = 1000x10x10 + P₁

P₂ = 100000 + P₁

P₂ = 200000 Pa

Now, we can write,

P₁V₁ = P₂V₂

Putting values,

6 x 200000 = V₂ x 100000

V₂ = 12L.

Her lungs should thus enlarge to 12L.

B. Because of the continuous pressure at the surface, the air warming will further increase the amount of air in the lungs.

C. The Vrms are provided by,

Vrms = √(3RT/M)

The Vrms won't change if the temperature stays constant since the air's mass will remain constant.

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a 3.0 m long ladder leans against a frictionless wall so that the base of the ladder makes an angle of 60 degrees with the ground. what is the minimum value of , the coefficient of static friction with the ground, that prevents the ladder from slipping?

Answers

The ladder from slipping [tex]\mu=0.2886[/tex].

Solution:

If the ladder is not slipping then at point A, the net forces acting will be equal to 0

[tex]-\mu N_{1}+N_{2}=0[/tex]    ( Horizontal forces)

[tex]N_{1}-mg=0[/tex]           (vertical forces)

from the above two equations we get,

[tex]N_{1}=mg and N_{2}=\mu mg[/tex]

Now the torque at point A must also be 0

so,

[tex]N_{2}Lcos\theta -\frac{L}{2}mgsin\theta =0[/tex]

Putting the previously obtained values

[tex]\mu mgLcos\theta =\frac{L}{2}mgsin\theta[/tex]

L is the length of the ladder.

[tex]\mu=\frac{1}{2}\frac{sin\theta }{cos\theta}[/tex]

[tex]\mu=\frac{1}{2}tan\theta[/tex]

[tex]\mu=\frac{1}{2}tan30^{0}[/tex]

[tex]\mu=0.2886[/tex]

When the foot presses the ground the foot slides back if there is no friction. Traction pushes the foot in a direction that prevents it from slipping resulting in forward motion. To determine the minimum coefficient of static friction between two materials create an inclined plane from one of the materials and place an object of the other material on top of it. Increase the tilt angle until the body starts to slide.

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Fill in the blanks. Convert c (speed of light) from m/s to ft/min using convvel in MATLAB.
c is speed of light in m/s. cfpm is speed of light in ft/min. No space for this canvas code.
c=physconst(_____);
cfpm=convvel( _____,

Answers

The formula c=physconst(lightspeed); cfpm = convvel(c, "m/s," "ft/min") transforms the lightspeed from m/s to ft/min using the convvel function in MATLAB.

per second in milliseconds. C is a symbol for lightspeed. The definition of cfpm in feet per minute is the speed of light. The speed of light in a vacuum, a fundamental scientific constant that is frequently abbreviated as c, is significant in many fields of physics. The precise speed of light is 299,792,458 metres per second (about 300,000 kph; 186,000 mph).The multi-paradigm programming language and computer environment known as MATLAB were developed by the MathWorks corporation (short for "MATrix LABoratory"). You may work with matrices, plot functions and data, use algorithms, create user interfaces, and communicate with other programming languages with MATLAB.

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50.0-kg skater is traveling due east at a speed of 3.00 m/s. a 70.0-kg skater is moving due south at a speed of 7.00 m/s. they collide and hold on to each other after the collision, managing to move off at an angle θ south of east, with a speed of vf. find (a)the angle θ and (b)the speed vf, assuming that friction can be ignored.

Answers

The angle θ is 72.97 and the speed vf is 4.27 m/s.

Net X momentum:

mv + 0 = (total mass)V.

50.0(3) = (50.0 + 70.0)V

V=1.25 m/s.

Net Y momentum

MV + 0 = (total mass)V.

70.0(-7.0) =  (50.0 + 70)V.

V=4.0833 m/s

(a)According to conservation of momentum we have along x-direction:

 m1 u1 = M Vfcosθ

Along the vertical direction

         m2 u2 = M Vfsinθ

==> m2 u2 / m1 u1  = tanθ

==> tanθ =  7 * 7 / 5 * 3

              = 3.2666

==> θ = 72.97

(b) Therefore

         Vf = m 1 u1/ M cosθ

             = 5 * 3 / 12 * cos72.97

            = 4.27 m/s

What is speed?

Velocity is the distance traveled per unit time. It's how fast an object is moving. Velocity is a scalar quantity that is the magnitude of the velocity vector. No direction. Faster speed means the object is moving faster. Slow speed means slow movement. If you don't move at all, you have no speed.

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a circular coil of radius 5.0 cm and resistance 0.20 ω is placed in a uniform magnetic field perpendicular to the plane of the coil. the magnitude of the field changes with time according to b=0.50e−tt . what is the magnitude of the current induced in the coil at the time t = 2.0 s?

Answers

The magnitude of the current induced in the coil at the time of 2 seconds is calculated to be 0.00263 A

The equation for induced emf can be given as;

ε = - d/dt (BA cos θ)

In this equation B represents the magnetic field, A illustrates the area, and θ represents the angle.

Rearranging the equation;

ε = - A cos θ d/dt B

ε = - (πr²)  d/dt (0.50e^-0.20t)

ε = 0.1 (πr²) e^-0.20t

As t = 2 seconds;

ε = 0.1 × π × 0.05² × e^-0.20(2)

ε = 5.26 × 10^-4 V

Now using the formula for induced current;

I = ε / R = 5.26 × 10^-4 V / 0.20 = 0.00263 A

Hence 0.00263 A is the magnitude of the current induced in the coil.

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a child is on a playground they start to slide down a large slide. at what point is the child in dynamic equilibrium with the slide?(1 point)

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On the slide when the child is in motion as they are sliding down comes to dynamic equilibrium.

When a child reaches the bottom he has both kinetic and thermal energy. Energy is converted into heat by friction on the slide.Gravity pulls items down the slide and friction exist. Friction works against gravity and slows you down the slide.Charge electron transfer between the child clothing and the slide. At one point on a slide it comes to dynamic equilibrium.

Therefore, as a child is in motion as they are sliding down and comes to dynamic equilibrium.

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the area of a typical eardrum is about 5.0 10-5 m2. (a) calculate the sound power (the energy per second) incident on an eardrum at the threshold of hearing

Answers

The sound power at the threshold of hearing is 5* 10⁻¹⁷ W.

The sound power at the threshold of hearing:

Given that,

Area of the eardrum =  5* 10⁻⁵ m²

We know that, I = power/area

Threshold of hearing I = 1* 10⁻¹² W/m²

Form the above formula, we can write

Power = I* area = 1* 10⁻¹² * 5* 10⁻⁵ = 5* 10⁻¹⁷ W

The sound power incident on an eardrum at the threshold of pain is

We know that, I = power/area

Threshold of pain = 1 W

Power = I* area = 1* 5* 10⁻⁵ W

Therefore, the power incident on eardrum will be 5*10⁻⁵ W

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A car accelerate from ret to 18. 14 meter per econd in 5. 70 econd. What i the car’ rate of acceleration in meter per econd quared?

Answers

3.18m/[tex]s^{2}[/tex] is the rate of acceleration when the car accelerates from rest to 18. 14 meter per second in 5. 70 second.

What is the rate of acceleration?

It is the change in acceleration over time where as acceleration is the rate of change of velocity of an object with respect to time.

acceleration, a=[tex]\frac{v}{t}[/tex] .

Solution:

Given

car velocity=18.14 m/s

time taken =5.70 second

To Find the rate of acceleration

a=[tex]\frac{v}{t}[/tex]

a=18.14/5.70

a=3.18m/[tex]s^{2}[/tex]

Hence, 3.18m/[tex]s^{2}[/tex] is the rate of acceleration when the car accelerates from rest to 18. 14 meter per second in 5. 70 second.

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consider the following three statements: for any electromagnetic radiation, the product of the wavelength and the frequency is a constant. if a source of light has a wavelength of 3.0 å , its frequency is 1.0×1018 hz . the speed of ultraviolet light is greater than the speed of microwave radiation. which of these three statements is or are true?

Answers

First assertion:

The relationship between electromagnetic radiation's wave, wavelength λ, and oscillation frequency is established by the speed of light. The formula is provided by:

c=vλ

Thus, the first claim is accurate.

Second assertion:

c=vλ

c= 3.0A×1.0×10¹⁸Hz

c= 3.0×10⁻¹⁰m×1.0×10¹⁸s⁻¹

c= 3×10⁸m/s

In a vacuum, c has a value of 3×10⁸m/s. So, the second assertion is accurate.

Third assertion:

No matter the type of electromagnetic radiation, the speed is always the same.

As a result, the third claim is untrue.

What is electromagnetic radiation?

The speed of light (2.998 x 108 m/s) is the rate at which an electric and magnetic disturbance called electromagnetic radiation travels through space. It moves in radiant energy packets known as photons or quanta and is neither massless nor electrically charged.

What are the 7 types of electromagnetic radiations?

The parts of the electromagnetic spectrum are referred to as gamma rays, X-rays, ultraviolet radiation, visible light, infrared radiation, and radio waves, from highest to lowest energy.

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two wheels, a and b, have the same shape and size, but wheel a has twice the mass of wheel b. how do the moments of inertia (around the axis of symmetry) of the two wheels compare?

Answers

The moment of inertia of wheel a will be twice the moment of inertia of wheel b. This is because the moment of inertia is proportional to the mass of an object.

What is inertia?
The concept of inertia states that an object will maintain its current motion until a force changes its speed or direction. The phrase should be understood as a shortened form of Newton's first law of motion's description of "the principle of inertia." Newton's Latin is directly translated into the word "perseveres" in this sentence. In contemporary textbooks, other, softer words like "to continue" as well as "to remain" are frequently used. The modern application results from some modifications made by Euler, d'Alembert, as well as other Cartesians to Newton's original mechanics (as noted in the Principia).

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x-rays are scattered from a target at an angle of 60.9° with respect to the direction of the incident beam. what is the wavelength shift (in m) of the scattered x-rays?

Answers

The wavelength shift  of the scattered x-rays is  [tex]1.25 * 10^-^1^2 m[/tex]

What is wavelength shift?

A moving object produces light with a different wavelength. This effect is called Doppler shift.

The light is shifted toward shorter wavelengths, or blue shifted, if the object is moving in your direction. When an object is moving away from you, the light is red-shifted, or shifted toward longer wavelengths.

The expression for wavelength shift is:

Δλ = [tex]\frac{h}{mc}[/tex] (1 - cosθ)

where,

m = mass of electron ([tex]9.11 * 10^-^3^1 kg[/tex])

h = planks constant ([tex]6.63 * 10^-^3^4 Js[/tex])

c = speed of light ([tex]3 * 10^8 m/s[/tex])

θ = scattering angle (here, 60.9°)

Subsituting values in equation,

Δλ = [tex]\frac{h}{mc}[/tex] (1 - cosθ)

Δλ   = [tex]\frac{6.63 * 10^-^3^4 Js}{(9.11 * 10^-^3^1)(3 * 10^8)}[/tex] [tex](1 - cos 60.9)[/tex]

Δλ   = [tex]1.25 * 10^-^1^2 m[/tex]

The wavelength shift  of the scattered x-rays is  

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a planet with a radius of 6.00 x 107 m has a gravitational field of magnitude 30.0 m/s? at the surface. what is the escape speed from the planet?

Answers

The escape speed from the planet is 60000 m/s.

Calculation:-

g=GM/R^2

ve=√2GM/R`

ve=√2(GM/R^2)R

ve=√2GR

ve=√2×30×6×10⁷

ve=60×10³m/s

The rate of change in the position of an object in any course. Speed is measured because of the ratio of distance to the time wherein the distance became included. Speed is a scalar amount because it has the handiest route and no significance.

Velocity can be notion as the rate at which an object covers distance. A quick-moving object has a high speed and covers a notably big distance in a given amount of time, whilst a sluggish-shifting item covers a relatively small amount of distance in the same amount of time.

The primary unit or the S.I. unit of velocity is m/s or ms⁻¹

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a 10-m uniform beam weighing 100 n is supported by two vertical ropes at its ends. if a 400-n person sits at a point 2.0 m from the left end of the beam, what is the tension in each rope?

Answers

The equations that result from this 10T1 = 3700 or T1 = 370N and T2 = 130N.

What is equation?
In a mathematical equation, the equals sign is used to express that two expressions are equal. The meanings of the word equation as well as its cognates in those other languages can vary slightly. For instance, in French, an equation is defined as having one or even more variables, whereas in English, an equation is any well-formed formula that consists of two expressions linked by the equals sign.

Finding the values for the variables that result in the equality is the first step in solving an equation with variables. The unknown variables are also known as the variables whereby the equation must be solved, and the unknown variable values that satisfy the equality are known as the equation's solutions.

Assume that T1 represents the tension inside the rope closest to the 400N person, and T2 represents the tension in another rope. T1 + T2 = 500N for translational equilibrium. The clockwise and counterclockwise torques about the beam's centre must be equal for there to be rotational equilibrium: 5T1 = 5T2 + 1200. These two equations can be combined to produce the following result:
T1 + T2 = 500
5T1 = 5T2 + 1200   or
T1 + T2 = 500
5T1 - 5T2 = 1200

multiply both sides of the first equation by 5, add the resulting equations to get 10T1 = 3700 or T1 = 370N and T2 = 130N.

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find the moment of inertia of the system about an axis through the center of the square, perpendicular to its plane (an axis through point o in the figure).

Answers

As a result, the system has a moment of inertia of 0.0636 kg-m around an axis that passes through the center of square and is perpendicular to its plane.

What are the definition and measurement of the moment of inertia?

Moment of inertia is the propensity of an object to continue rotating at a constant speed or in a condition of rest. More torque is needed to shift this state the higher the moment of inertia. Similar to how force affects linear motion, torque affects rotational motion. It has the SI unit kg. metre2.

What does moment of inertia mean in everyday terms?

When a body resists angular acceleration, it has a certain amount of moment of inertia, which is calculated as the product of the mass of each particle times the square of the particle's distance from the rotational axis. A scalar quantity is the moment of inertia.

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The corrrect question is

Four small spheres, each of which you can regard as a point of mass 0.200 kg, are arranged in a square 0.400 m on a side and connected by light rods. Find the moment of inertia of the system about an axis through the center of the square, perpendicular to its plane.

although we know less about dark matter in elliptical galaxies than we do in spiral galaxies, what does current evidence suggest?

Answers

Elliptical galaxies probably contain about the same proportion of their mass in the form of dark matter as do spiral galaxies.

How do we know elliptical galaxies have dark matter?

The standard hypothesis is that elliptical galaxies originate from mergers of disks10 and should therefore be embedded in similar dark-matter haloes. There is evidence for dark matter in giant ellipticals, from X-rays11 and gravitational lensing12.

The stellar mass distribution does not account for the rotation curve of galaxies. If a spiral galaxy didn't contain any dark matter at all, its rotation curve would be decreasing with distance beyond the center of the galaxy.

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A box with a weight of 50 newtons rests at the bottom of a ramp and is pushed to the end of the ramp with a force of 20 newtons. This ramp is an inclined plane that is 10 meters long. What is the maximum height of the ramp?.

Answers

Height of the ramp is equal to the length of the ramp  that is 10 m.

What is ramp ?

A ramp is also called as an inclined plane. It is a flat supporting surface tilted at an angle, with one end higher than other and also used as an aid for raising or lowering a load.

Given, height of the ramp is 10 meters ;

We know, component of the weight acting on the incline is :

w = m g sin(θ)

Potential energy of box = 10× sin(θ) ×50 = 500·sin(θ)

F × 10 = 500·sin(θ)

F = 50·sin(θ)

Work done by the net force = Potential energy gained by box

Work done by the net force = (20 - 50·sin(θ)) × 10 = 500·sin(θ)

sin(θ) = 1/5

θ = arcsine(1/5) = 11.53°,

Height of the ramp =Length of the ramp = 10 m

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light of wavelength 500 nm falls normally on 50 slits that are 2.5 x 10−3 mm wide and spaced 5.0 x 10−3 mm apart. how many interference fringes lie in the central peak of the diffraction pattern?

Answers

The interference fringes lie in the central peak of the diffraction pattern is 3.

How are interference fringes calculated?Two-Slit Diffraction Pattern: In other words, just as when the slits were seen as point sources, the positions of the interference fringes are determined by the equation d sin = m d sin = m, but now the intensities of the fringes are diminished by diffraction effects, as shown by Equation 4.4.Diffraction and interference effects usually result in minima at several angles and operate concurrently. If the maximum of the interference is in the same direction as the minimum of the diffraction, this results in a complicated pattern on the screen where some of the maxima of interference from the two slits are missing. Such a missing peak is referred to as a missing order.

Find the attachment answer

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leaving everything else the same, now decrease the star size to 0.1 x radius of the sun. note the transit depth. all else being equal, is it easier to detect planets orbiting small stars or large stars with the transit method?

Answers

Keeping everything else the same, shrink the star to 0.1 times the sun's radius. This makes it simple to find planets orbiting big stars.

What are stars?

Large celestial bodies known as stars are primarily composed of hydrogen and helium and generate light and heat in their centres from churning nuclear forges. The other stars we can see in the sky are all light-years away from Earth, excluding our sun.

Because larger planets block more light and transit more frequently, making them easier to detect, this method has a bias towards finding huge planets circling near to their stars, similar to the radial velocity method. Additionally, there is a tendency to detect large planets surrounding tiny stars.

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a stone is thrown straight up from the edge of a roof, 925 feet above the ground, at a speed of 14 feet per second. a. remembering that the acceleration due to gravity is -32 feet per second squared, how high is the stone 3 seconds later?

Answers

823 ft high is the stone 3 seconds later.

What is motion?

The change in the position of the object with respect to time is called motion in physics.

We know that

[tex]y=y_{0} + V_{0}-\frac{1}{2} gt^{2}[/tex]

where,

[tex]y[/tex] is the height of the stone at 3s (the value we want to find)

[tex]y_{0}[/tex] is the initial height of the stone

[tex]V_{0}[/tex] is the initial velocity of the stone

[tex]t[/tex] is the time  at which we need to find the height

[tex]g[/tex] is the acceleration due to gravity

Therefore,

[tex]y = 925+(14)(3)-\frac{1}{2} (32)(3)^{2}[/tex]

= 823 ft

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the speed of sound in air is around 345 m/s. a tuning fork vibrates at 553 hz above the open end of the sound resonance tube. what is the wavelength (in cm) of the sound waves in the tube? never include units with a numerical answer.

Answers

Above the sound resonance tube's open end. The wavelength of sound waves inside the tube is 0.63 cm.

Resonance: What does that mean?

Resonance is a phenomena when a vibrating system or external force causes another system nearby to vibrate more intensely at a specific operating frequency. It is a phenomena where a body's intrinsic frequency and the period of a periodic force applied externally match up.

What is resonance's primary function?

Resonance is a term used in the valence bond theory to describe how certain molecules combine a number of contributing structure (or forms, commonly known as benzene rings or classic structures) into the a hybrid resonance.

Briefing:

Speed of sound, v = 345 m/s

frequency = 553hz

Speed = wavelength * frequency

Wavelength = Speed/frequency

Wavelength = 345/0.542

Wavelength = 0. 63cm

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if a solid sphere, solid cylinder, and hollow cylinder, with masses 1kg, 2kg, and 3kg, respectively, are all sitting at the top of a 10m long flat ramp of a given height and then released simultaneously to race downhill, which one wins?

Answers

The solid sphere reaches the ground first followed by the solid cylinder and then hollow sphere.

The depends on the inertia or moment of inertia. Moment of inertia is defined as the quantity expressed by the body resisting angular acceleration which is the sum of the product of the mass of every particle with its square of a distance from the axis of rotation.

Thus, the moment of inertia of solid sphere is less than that of the hollow cylinder. The radius of gyration of solid sphere is less than radius of gyration of hollow sphere.

However, the acceleration of the solid sphere is more than that of the hollow cylinder.

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how many orbiting satellites at any given moment are there keeping a watchful eye on our planet? what altitudes do these satellites operate? group of answer choices 120; few hundred miles up to 25,000 miles 120; 500 miles above earth 25; few hundred miles up to a few thousand miles 600; mostly at 25,000 miles above earth

Answers

The source of the answers may be higher than us. 120 satellites are in orbit over our heads, keeping watch. Most work at altitudes between a few hundred miles and 25,000 miles above the surface of the globe.

Why is altitude important?

The distance below sea level is known as altitude, just like elevation. If an area extends at than 2,400 meters (8,000 feet) into atmosphere, it is frequently referred to as being "high-altitude." Mount Everest, which is located in the Himalayan region on the border between Nepal and Tibet in China, is the highest point on Earth.

Is height the same as altitude?

By drawing a right angle from a triangle's vertex toward its opposite side, one can calculate the triangle's altitude.. The altitude, sometimes referred to as the triangle's height, forms a rectangle with the base.

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A block with mass 0.50 kg is forced against a horizontal spring of negligible mass, compressing the spring a distance of 0.20 m (the figure (Figure 1)). When released, the block moves on a horizontal tabletop for 1.00 m before coming to rest. The spring constant k is 100 N/m. What is the coefficient of kinetic friction mu _k between the block and the tabletop? Express your answer using two significant figures. mu _k = __________

Answers

The coefficient of Kinetic friction (μk) is 0.408.

What is Friction?

It is the resistance to the relative motion of sliding solid surfaces, fluid layers, and material components. Friction can take many different forms: A force called "dry friction" resists the relative lateral motion of two solid surfaces coming into contact.

What are the calculations?

ΔE = ΔU + ΔK =  [tex]- f_{friction} * d[/tex]

= [tex]U_{f}[/tex] - [tex]U_{o}[/tex] + [tex]K_{f} - K_{o} = - f_{friction} * d[/tex] = [tex]- f_{friction} * d[/tex]

= [tex]0[/tex] - [tex]\frac{kx_{0} ^{2} }{2} = f_{friction} * d[/tex]---------(1)

the friction force is, f = μkN = μkmg--------(2)

by inserting equation (2) into (1),

and inserting given values in it, we will get:

μk =  [tex]\frac{( 100 N/m ) (0.2m)^{2} }{2 ( 0.50 Kg ) (9.8 m/s^{2} ( 1m)}[/tex]

or, 0.408.

Hence, coefficient of Kinetic friction (μk) is 0.408.

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the cosmic microwave background tells us a lot about our universe, including what shape it is, geometrically! what shape do we believe the universe is, and based on which property of the cmb?

Answers

Based on the crucial Cosmic Microwave Background density, we think that the form of the universe is geometrically flat.

The CMB is a faint glow of light that permeates the entire cosmos and falls on Earth with roughly uniform intensity from all directions.

Scientists can learn more about the early universe's formation thanks to the CMB. Only slight temperature variations that can be seen with accurate telescopes are present. With accurate telescopes, only minute temperature variations are discernible. Cosmologists can measure the fundamental components of the Big Bang theory and learn more about the history of galaxies and their large-scale structures by investigating these oscillations.

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Is the following equation balanced? If the equation is not balanced, how would you balance it?

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Step1). We would first try to balance C and O because it is present in compound form on RHS.

Step2). After that we will balance H

while dexter is on a camping trip with his boy scout troop,the scout leader hands each boy a compass and map. the directionson dexter's map read as follows: walk 500.0 m north 200.0m east and 300.0 m south, and 400.0 m west. if he follows themap, what is dexters displacement?

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The same spot he started, his displacement is 0 meters.

What is displacement?
A displacement is indeed a vector in geometry as well as mechanics that has a length equal to the shortest distance between a point P's initial and final positions. It measures the length and angle of the net motion, or total motion, in a straight line from the starting point to the destination of the point trajectory. The translation that links the starting point and the ending point can be used to spot a displacement. The final position xf of the a point relative towards its initial position xi, or even a relative position (resulting from of the motion), is another way to describe a displacement. The difference between both the final and initial positions can be used to define the corresponding displacement vector.

Dexter's displacement is 0 meters.
This is because the total distance traveled (500.0 m north + 200.0 m east + 300.0 m south + 400.0 m west) is 1,200.0 meters,
But the total displacement is 0 meters because he is ending up in the same place he started.
Displacement is the total distance traveled in a straight line from the starting point to the ending point.
Since Dexter is ending up in the same spot he started, his displacement is 0 meters.

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does the field [that is caused by a straight wire] have an axial component? does it have a radial component?

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It is demonstrated that the current carrying surface's solid angle subtended by the magnetic field for a straight wire at any location in space is directly proportional to the magnetic field along the axial direction.

What does the field that is caused by a straight wire?

As long as the wire is straight and the current density is uniform, the result is valid wherever, i.e., on the axis or off-axis, for an infinite or finite wire.

In a number of unique circumstances where unexpected outcomes can be easily produced and presented, the geometrical relationship is employed.

As you move further from the wire, the field's strength diminishes, therefore you would expect the field lines' spacing to grow as well.

Therefore, With a second application of the right-hand rule, the direction of this magnetic field can be determined.

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Your lab partner shows you results from an experiment with a simple machine. The output work is 10 joules and the input work is 8 joules. She asks, "Does this data look correct?" What would be your response and why?​

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Answer:

Work in + Work wasted = Work out

The data is probably not correct since the work produced should be less than the work input

how much work must the spacecraft engines perform to move the spacecraft to a circular orbit that is 4500 km above the surface? express your answer with the appropriate units.

Answers

The amount of work that the engine of the spacecraft must do to move above the circular orbit is 1.48 x 10⁻¹⁷ mM (Joules).

What is the work done by the spacecraft?

The amount of work that the engine of the spacecraft must do to move above the circular orbit that is 4500 km above the surface is calculated by applying the following formula.

W = Fd

where;

F is the gravitational force of the spacecraftd is the displacement of the spacecraft.

The gravitational force of the spacecraft is given as;

F = GmM/R²

where;

m is mass of the planet (for the circular orbit)M is the mass of the spacecraftR is the displacement of the spacecraft

The work that must be done by the spacecraft is given as;

W = FR

W = GmM/R² x R

W = GmM/R

W = (6.67 x 10⁻¹¹ x mM) / (4500000)

W = 1.48 x 10⁻¹⁷ mM (Joules)

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