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myrzilka [38]
2 years ago
5

Write an expression for the average velocity of an object in the x direction. (Use the following as necessary: x for the displac

ement of the object during a time interval, and At for the time interval)

Physics
1 answer:
Umnica [9.8K]2 years ago
8 0

Answer:x=20

Explanation:

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Should we
Artemon [7]
35 because i needa put an answere so here i is
7 0
3 years ago
What are four examples of properties?
Shkiper50 [21]

Explanation:

physical and chemical properties. Examples of physical properties are: color, smell, freezing point, boiling point, melting point, infra-red spectrum, attraction (paramagnetic) or repulsion (diamagnetic) to magnets, opacity, viscosity and density. There are many more examples.

5 0
3 years ago
Consider two identical objects released from rest high above the surface of the earth (neglect air resistance for this question)
topjm [15]

Answer:

the relationship between the two scientific energies is   K2 / K1 = 8/9

Explanation:

They ask us to compare the kinetic energies, so we must use the energy conservation theorem, let's start calculating the gravitational potential energy, to use the universal gravitation equation

      F = G m1 m2 / R²

With the mass m1 the Earth mass  and m2 the mass of the object, R the distance from the center of the Terra to the object

Let's calculate the potential energy from the equation

      F = - dU / dr

     dU = - F dr

      ∫ dU = - ∫ F dr

     Uf - Uo = - (Gme m2) I dr / r²

     Uf - Uo = - (Gme m2) (1 /rf - 1 /ro)

Let's see the distances in each case

Case 1. tell us that it is launched from 1 terrestrial radio

      R = Re + Re = 2 Re

Case 2. It is released from 2 terrestrial radios

      R = Re + 2 Re = 3 Re

Let's calculate the potential energy for each case

Case 1

     ΔU = (Gme m2) [1 / (Re + Re) - 1 / Re)] = (Gme m2) 1 / Re [1/2 +1)

     ΔU = (G m2 / Re) 3/2 m2

Case 2

    ΔU (Gme m2) [1 / (Re + 2Re) + 1 / Re] = (Gme m2) 1 / Re [1/3 + 1]

    Δu = (Gme) 1 / Re 4/3 m2

Having the potential energies We can use the energy conservation theorem applied to the initial and final points of the movement.

 

     Em1 = ​​Uo

     Em2 = Uf + K

how do they tell us that there is no friction force

    Em1 = ​​Em2

    Uo = Uf + K

    K = Uf -Uo = ΔU

    K = ΔU

Let's calculate the kinetic energy for each case

Case 1  r = Re

     K1 = (G m2 / Re) 3/2 m2

Case 2 r = 2Re

     K2 = (Gme) 1 / Re 4/3 m2

To compare the two energies let's divide one another

 

      K2 / K1 = [(Gme) 1 / Re 4/3 m2] / [= (G m2 / Re) 3/2 m2]

      K2 / K1 = (4/3) / (3/2)

      K2 / K1 = 8/9

6 0
4 years ago
Which of the following provides astronomical evidence for the age of the earth? these are the choices
Anastaziya [24]

Answer:

Radioactive Dating of Fossils or Movement of Fossils

Explanation:

Its definitely one of those.

4 0
3 years ago
A thin, 74.0-cm wire has a mass of 16.6 g . One end is tied to a nail, and the other end is attached to a screw that can be adju
Oksi-84 [34.3K]

Answer: 97.33 N

Explanation: In order to solve this problem we have to use the expression for the velocity of the transversal wave in wire. This is given by:

v=\sqrt{T/\mu } whete T and μ are the Tension and linear density.

then

T=v^2*μ  ;   μ  can be calculated as 0.166Kg/0.74m=0.22 Kg/m

v is obtained by λ*ν = 0.0336 m*626 /s=21.03 m/s

thus

T=442.4 *0.22=97.33 N

6 0
3 years ago
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