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baherus [9]
3 years ago
7

How do i get the answer for keplers law 3

Physics
1 answer:
puteri [66]3 years ago
6 0
Could you send the picture? So I can help you! Post the picture?
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A car traveling with constant speed travels 150 km in 7200 s. What is the speed of the car?
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75 km/h is the speed of the car

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Water flows along a streamline down a river of constant width. Over a short distance, the water slows from speed v to v/3. Which
kvasek [131]

Answer:

a. It became deeper by a factor of 3.

Explanation:

What we have is water flowing down a river with constant width. The water slows from speed v to v3 over a shirt distance

Using the equation of continuity

A1V1 = A2V2 ----1

A1 is the area of rectangle

V1 is the velocity of water

Area of rectangle = length x width

We rewrite equation 1 as

λ1w1v1 = λ2w2v2

We have w1 = w2

λ1v1 = λ2v2

λ1*v1 = λ2*v/3

λ1 = λ2/3

So it becomes deeper by a factor of 3

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3 years ago
How does heat conduction work
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Heat energy can move through a substance by conduction. Metals are good conductors of heat, but non-metals and gases are usually poor conductors of heat. Poor conductors of heat are called insulators. Heat energy is conducted from the hot end of an object to the cold end.
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4 years ago
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You are given a sample of metal and asked to determine its specific heat. You weigh the sample and find that its weight is 27.2
garri49 [273]

Answer:

c=326.5177 J/kg.K

Specific heat is c=326.5177 J/kg.K

Explanation:

In order ti find the specific heat, we will proceed as follow:

Formula we are going to use is:

Q=m*c*\Delta T

Where:

Q is the heat energy added

m is the mass of sample

c is the specific heat

\Delta T is the temperature Rise.

First we will find the mass:

Weight=m*g  (g is gravitational acceleration=9.8 m/s^2)

m=\frac{weight}{g} \\m=\frac{27.2}{9.8} \\m=2.7755 \ kg

Rearranging above formula:

c=\frac{Q}{m* \Delta T}

c=\frac{1.45*10^4}{2.7755*16}

c=326.5177 J/kg.K

Specific heat is c=326.5177 J/kg.K

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The major evidence for the idea that the expansion of the universe is accelerating comes from observations of:
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The redshirting of the spectra of distant galaxies.  They are moving away from us at a rate proportional to their distance
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