compute the velocity of an object orbiting at height 2Re above the surface of earth

Answers

Answer 1

Answer:

The orbital speed can be found using v = SQRT(G*M/R). The R value (radius of orbit) is the earth's radius plus the height above the earth - in this case, 6.59 x 106 m.

Answer 2

The velocity of an object orbiting at height 2Re above the surface of earth be 14380 m/s.

What is velocity?

The rate at which a body's displacement changes in relation to time is known as its velocity. Velocity is a vector quantity with both magnitude and direction. SI unit of velocity is meter/second.

The orbital velocity of an object orbiting around the Earth can be expressed as:

v = √(GM/R).

Where:

G = universal gravitational constant = 6.67408 × 10⁻¹¹N m² kg⁻².

M = mass of Earth = 5.97219 × 10²⁴ kilograms.

R = distance between the object and the center of Earth.

According to the question,  the object orbiting at height 2[tex]R_e[/tex] above the surface of earth. So,  distance between the object and the center of Earth is: R = radius of Earth + 2[tex]R_e[/tex]

= 3[tex]R_e[/tex]

= 3 × 6,371 km

= 1.9113 × 10⁶ m.

So, the velocity of the object : v =  √(GM/R).

= √( 6.67408 × 10⁻¹¹× 5.97219 × 10²⁴/1.9113 × 10⁶ ) m/s

= 14380 m/s.

Hence,  the velocity of the object be 14380 m/s.

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Related Questions

What distance is moved if we have a 8N force and the work done is 90J

Answers

I need a picture man

A glass window (n = 1.52) has a
uniform layer of ice on it (n = 1.31).
What is the critical angle for a ray
trying to pass from glass to ice?
(Water n = 1.33, Air n = 1.00)
(Unit = deg)
HELP PLSS!!

Answers

Answer: 59.5 deg

Explanation: In this problem, we are giving 1.31 as n2 and 1.52 as n1. Using the formula of critical angle= arcsine(n2/n1) we get the equation critical angle=arcsine(1.31/1.52) from there, you divide 1.31 by 1.52, and get 0.862.

On your calculator you then should press 2nd and then the sine button to get sine^-1 (arcsine) and in the parenthesis after arcsine put in 0.862, the answer you get will be 59.5.

Newton's first law states that objects do not change their velocity unless acted upon
by an outside force. When throwing a ball the ball initially accelerates from the force
provided by your arm and then begins to slow down.
What force(s) are responsible for the deceleration of the ball?

Answers

Answer:

Air resistance/Drag (this is the proper term for air resistance) or gravity or friction

It depends on the direction and if you throw it across a surface or if you throw it straight upwards.

I hope this helps!!

Answer:

Newton's first law: An object at rest remains at rest, or if in motion, remains in motion at a constant velocity unless acted on by a net external force.

Explanation:

a = F/m is an explanation of
in  Physics

Answers

Answer:

The equation a=F/m or the acceleration is equal to the net force of an object divided by that object's mass, is an equation derived and explained by Sir Issac Newton's second law of motion. Newton's second law of motion states that the force of an object is equal to the mass times the acceleration of that object.

A neighborhood in a small Texas town had to be evacuated because the
houses were sinking due to a problem in the aquifer. What is the most
likely cause of this problem?
‼️‼️‼️ PLS HELP ‼️‼️‼️

Answers

Explanation:

Groundwater pumping and land subsidence because when compressing,squeezing or accompanying of soils in some aquifer systems can chaperon or accompanying an drastic groundwater pumping and it's far by the solitary largest caise of subsidence . Execissve pumping of such aquifer systems has ensue in permanent subsidence and regarding to ground obertion . hope that I helped you and good luck

Momentum is mass times velocity, so another way to think of momentum is ____ in motion.

inertia

weight

acceleration

velocity

Answers

Answer:

Acceleration

Explanation:

Momentum is acceleration because acceleration is movement and momentum is movement.

Momentun = Movement

Acceleration = Movement

Momentum = Acceleration


A bat with a mass of 0.35 kg travels at a rate of 15 m/s. What is the animal's momentum?

Answers

Answer:

momentum= mass x velocity = 0.35x15= 5.25kgm/s

A student pulls out his or her chair in order to sit down. The student pulls the chair 0.75 m with a force of 20 N. How much work does he or she do on the chair?

Answers

Work = Force x displacement
Force= 20N
Displacement= 0.75m

W= 20(0.75)
W= 15 Nm

It is common for creatures to be able to live in both the spray zone and low-tide zone.
True or False

Answers

TRUEE!!! I HAD THE SAME QUESTION LOL

Hii!!! The correct answer is true. (:

Determine the momentum of a 13,000kg semi driving at 30 m/s

Answers

Answer:

390000

Explanation:

The momentum is huge. You wouldn't want this thing to hit you.

Momentum = m*v

m = 13000 kg

v = 30 m/s

Momentum = 13000 * 30

Momentum = 390000 kg m/s

Un tren emite un sonido a 480hz determina la frecuencia que percibe el observador cuando el observador se aleja a 12m/s del tren que ha quedado en reposo velocidad del sonido en el aire 340m/s

Answers

Answer:

La frecuencia que percibe el observador es 463 Hz.

Explanation:

El efecto Doppler se define como el cambio de frecuencia aparente de una onda producida por el movimiento relativo de la fuente respecto a su observador. En otras palabras, este efecto es el cambio en la frecuencia percibida de cualquier movimiento ondulatorio cuando el emisor y el receptor, u observador, se desplazan uno respecto a otro.

La siguiente expresión se considera el caso general del efecto Doppler:

[tex]f'=f*\frac{v+-vR}{v-+vE}[/tex]

Donde:

f’, f: Frecuencia percibida por el receptor y frecuencia emitida por el emisor respectivamente. Su unidad de medida en el Sistema Internacional (S.I.) es el Hertz (Hz), que es la unidad inversa del segundo (1 Hz = 1 s-1) v: Velocidad de propagación de la onda en el medio. Es constante y depende de las características del medio.  En este caso se considera que la velocidad del sonido en el aire es de 340 m/s vR, vE: Velocidad del receptor y del emisor respectivamente. Su unidad de medida en el S.I. es el m/s ±, ∓:  

Utilizaremos el signo +:

En el numerador si el receptor se acerca al emisor

En el denominador si el emisor se aleja del receptor

Utilizaremos el signo -:

En el numerador si el receptor se aleja del emisor

En el denominador si el emisor se acerca al receptor

En este caso:

f= 480 Hzv= 340 m/svR= 12 m/s (el receptor es el observador)vE=0 (el emisor es el tren, que se encuentra en reposo)

Y como el receptor se aleja del emisor, la expresión del efecto Doppler queda determinada como:

[tex]f'=480 Hz*\frac{340 m/s-12 m/s}{340 m/s-+0 m/s}[/tex]

Resolviendo se obtiene:

[tex]f'=480 Hz*\frac{340 m/s-12 m/s}{340 m/s}[/tex]

[tex]f'=480 Hz*\frac{328 m/s}{340 m/s}[/tex]

f'= 463 Hz

La frecuencia que percibe el observador es 463 Hz.

two uses of electricity​

Answers

Two uses of electricity are in our everyday lives! We use electricity for lights! We use electricity for electronics such as , tv. There electricity powering our whole house! Isn’t that amazing?

HELP YALL!!

Which nucleus completes the following equation?

Answers

Answer:

B

Explanation:

Chlorine institute

16+1=17

CI has 17 in the bottom.

Answer:C

Explanation:

You throw a basketball from a cliff to the ground. The ball has an initial velocity of 12 m/s in the horizontal direction. After 3.0 seconds, the ball has a velocity of -30.0 m/s in the y-direction.

What is the direction of motion of the ball at time t= 3.0 s? (Hint: direction is related to the angle).

Answers

Answer:

The direction of motion of the ball is approximately 68.199º below the +x semiaxis.

Explanation:

The ball has a two-dimension motion, to be exact, a parabolical motion, that is, a motion at constant velocity in the x-direction and free fall motion in the y-motion. Hence, the horizontal velocity of the basketball is 12 meters per second and its direction ([tex]\theta[/tex]), in sexagesimal degrees, is calculated by this trigonometrical expression:

[tex]\theta = \tan^{-1} \frac{v_{y}}{v_{x}}[/tex] (1)

Where:

[tex]v_{x}[/tex] - Horizontal velocity, in meters per second.

[tex]v_{y}[/tex] - Vertical velocity, in meters per second.

If we know that [tex]v_{x} = 12\,\frac{m}{s}[/tex] and [tex]v_{y} = -30\,\frac{m}{s}[/tex], then the direction of motion of the ball is:

[tex]\theta \approx 68.199^{\circ}[/tex] (below the +x semiaxis)

The direction of motion of the ball is approximately 68.199º below the +x semiaxis.

Assignment: Can you identify various forces and instances in which electrostatic and magnetic forces occur​

Answers

Answer:

Magnetic force, attraction or repulsion that arises between electrically charged particles because of their motion. It is the basic force responsible for such effects as the action of electric motors and the attraction of magnets for iron. Electric forces exist among stationary electric charges; both electric and magnetic forces exist among moving electric charges. The magnetic force between two moving charges may be described as the effect exerted upon either charge by a magnetic field created by the other.

Una varilla efectúa 120 vibraciones durante un minuto. Hallar el período y la frecuencia del movimiento

Answers

yeah that’s why you didn’t want me to do that it would like be a little more than what you would do for you guys i and orange green brown brown orange brown brown green orange green brown green green brown brown orange brown brown green brown orange brown brown white brown green brown orange

n the railroad accident, a boxcar weighting 200 kN and traveling at 3 m/s on horizontal track slams into a stationary caboose weighting 400 kN. The collision connects the caboose to the car, and then both move together and you have found the final velocity. Apparently, initial kinetic energy of the system changes (in part, because of friction present). How much energy (in kJ) is transferred from kinetic energy to other forms of energy (e..g., thermal) in the collision

Answers

Answer:

ΔK = -6 10⁴ J

Explanation:

This is a crash problem, let's start by defining a system formed by the two trucks, so that the forces during the crash have been internal and the moment is preserved

initial instant. Before the crash

        p₀ = m v₁ + M 0

final instant. Right after the crash

        p_f = (m + M) v

        p₀ = p_f

        mv₁ = (m + M) v

        v = [tex]\frac{m}{m+M} \ v_1[/tex]

     

we substitute

        v = [tex]\frac{20}{20+40}[/tex]   3

        v = 1.0 m / s

having the initial and final velocities, let's find the kinetic energy

        K₀ = ½ m v₁² + 0

        K₀ = ½ 20 10³ 3²

        K₀ = 9 10⁴ J

        K_f = ½ (m + M) v²

        K_f = ½ (20 +40) 10³  1²

        K_f = 3 10⁴ J

the change in energy is

       ΔK = K_f - K₀

       ΔK = (3 - 9) 10⁴

       ΔK = -6 10⁴ J

The negative sign indicates that the energy is ranked in another type of energy

True or False : 0°K=-273.15° C and 0°C (Celsius) = 273.150K

Answers

Answer:

TRUE

Explanation:

Brainliest for correct answer :)

Answers

All 3 objects have the same mass
Is the first . All 3 objects have the same mass

The 500 series bullet train travels between Tokyo and Hakata, Japan. If it is heading north with a momentum of 13,194,098.64 kg • m/s and at a velocity of 261.8 km/h, what is its mass?

Answers

Answer:

The mass of the 500 series bullet train is 181.4 tonnes.

Explanation:

The momentum is given by:

[tex] p = mv [/tex]

Where:

m: is the mass =?

v: is the velocity = 261.8 km/h

p: is the momentum = 13194098.64 kg*m/s

By solving the above equation for "m" we have:

[tex]m = \frac{p}{v} = \frac{13,194,098.64 kg*m/s}{261.8 km/h*\frac{1000 m}{1 km}*\frac{1 h}{3600 s}} = 181.4 tonnes[/tex]

Therefore, the mass of the 500 series bullet train is 181.4 tonnes.

I hope it helps you!                

Calculate the amount of heat needed to convert 0.8 kg of ice at -19 °C into water at 29 °C.

Answers

i’m not sure maybe attach a image or something

What is the relationship between retar ding potential and the kinetic energy of the emitted photoelectrons?

Answers

Answer:

The kinetic energy of photoelectrons at the surface grows linearly with the increasing frequency of incident radiation. Measurements for all metal surfaces give linear plots with one slope.

PLZZZZZZZZZ HELPPPPP. BRAINLEST GIVEN What is a force of attraction between an object and the earth due to gravity?

Answers

Answer:

acceleration due to gravity: -9.8 m/s^2

Fg=mass of object*(-9.8)

Explanation:

This is a pretty vague question, but I'll answer as best I can.

All matter has gravity. YOU have gravity, although your gravitational pull is small. So, the force of attraction between the Earth and an object on Earth is modeled as

Force of gravity=(Gravitational constant*mass of object 1*mass of object  2)/distance between objects squared

Note that distance between an object on Earth and Earth is the radius of Earth (distance to Earth's core/center of mass)

What is a fact about incline planes?

Answers

they are incline hope this helps!

rulers graduated in centimeters and inches are available in commerce. Determine the measurement in m of a 60 cm ruler can you help me

Answers

Answer:

0.6m

I hope this help a little bit.

How many planets are there in our System? List them all.​

Answers

Answer:

Eight planets.

1. Mercury

2. Venus

3. Earth

4. Mars

5. Jupiter

6. Saturn

7. Uranus

8. Neptune

earth, jupiter, mars, neptune, saturn, uranus, venus, mercury.

which term describes the wave phenomenon in the image

Answers

Answer:  (Next time put the Image but I know what u talkin bout)

wave changes its path from its initial direction so this phenomenon is known as Refraction of wave

Explanation:

When wave travels from one medium to other medium the due to change in the speed of the wave propagation it deviates from its initial path.

The deviation of the wave from its initial path is known as refraction of wave

Here we can see that wave incident on medium 1 with some angle with the boundary

Then it enters into other medium and then travels in other direction

So here wave changes its path from its initial direction so this phenomenon is known as Refraction of wave

Some people today claim the Earth is flat. Produce an argument to prove that the
Earth is not flat.

Answers

It’s not flat because how can we be 3D when our planet is flat

Answer:

i mean i think it is. we have no real pics of the earth they are all fake. And the moon landing was fake. the usa flag was blowing but there is no wind in space . its all fake

Explanation:

Please answer this so you get the brainlist

Answers

Answer: Potential Energy

Explanation:

This picture is potential energy as the boulder is not quite moving yet, although due to the hill the boulder has the Potential to move when it is pushed down the hill.

The reason that worlds like the Earth are differentiated is that Group of answer choices the heat of the Sun vaporized much of their solid material early on the heaviest chunks that hit early on were able to bore through solid rock to the center the continuing impacts on a growing protoplanet eventually melted the entire body large amounts of hydrogen and helium collect around such planets a little later in their history planetesimals with different types of composition hit at different times, with the heaviest ones hitting first

Answers

Answer:

A differentiated body is a body that has been heated to the point where it is are further from the sun larger have no solid surface and have many more moons  Smaller chunks of material vaporize completely as they pass through its atmosphere

Explanation:

Hope it helps..

A body is said to be differentiated when it has been heated to the extent where it is bigger, farther from the sun, has no hard surface, and has a lot more moons. Smaller pieces of the materials entirely evaporate as they pass through their environment.

What is Planet?

An enormous, spherical celestial object known as a planet is neither a star nor a remain. The nebular theory, which states that an interstellar cloud collapses out of a nebula to form a young protostar that orbits the sun by a protoplanetary disk, is now the best argument for planet formation. By slowly accumulating material under the influence of gravity, or accretion, planets form in this disk.

The terrestrial planets Mercury, Venus, Earth, and Mars, as well as the planetary nebulae Jupiter, Saturn, Uranus, and Neptune, total at least eight planets in the Solar System. These planets all rotate around axes that seem to be inclined relative to their corresponding polar axes.

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