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NARA [144]
4 years ago
14

Using the correct answer from part b, calculate the volume of a rectangular prism with a length of 5.6 cm, a width of 2.1 cm, an

d a height of 6.6 cm.
Physics
1 answer:
LUCKY_DIMON [66]4 years ago
8 0

Answer:

volume of a rectangular prism = 77.616 cm^{3}

Given:

length = 5.6 cm

width = 2.1 cm

height =6.6 cm

To find:

volume of a rectangular prism = ?

Formula:

volume of a rectangular prism = length × width × height

Solution:

volume of a rectangular prism = length × width × height

volume of a rectangular prism = 5.6 × 2.1 ×6.6

volume of a rectangular prism = 77.616 cm^{3}

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A fisherman notices that his boat is moving up and down periodically without any horizontal motion, owing to waves on the surfac
taurus [48]

Answer:  

a. Speed = 1.6 m/s  

b. Amplitude = 0.3 m  

c. Speed = 1.6 m/s  

Amplitude = 0.15 m  

Explanation:  

a.  

The frequency of the wave must be equal to the reciprocal of the time taken by the boat to move from the highest point to the highest point again. This time will be twice the value of the time taken to travel from the highest point to the lowest point:

frequency = \frac{1}{2(2\ s)} = 0.25 Hz  

The wavelength of the wave is the distance between consecutive crests of the wave. Therefore,  

Wavelength = 6.4 m  

Now, the speed of the wave is given as:  

Speed = (Frequency)(Wavelength)  

Speed = (0.25 Hz)(6.4 m)  

<u>Speed = 1.6 m/s</u>

b.  

Amplitude is the distance between the mean position of the wave and the extreme position. Hence, it will be half the distance between the highest and lowest point:  

Amplitude = (0.5)(0.6 m)  

<u>Amplitude = 0.3 m</u>  

c.  

frequency = \frac{1}{2(2\ s)} = 0.25 Hz  

Speed = (Frequency)(Wavelength)  

Speed = (0.25 Hz)(6.4 m)  

<u>Speed = 1.6 m/s</u>  

Amplitude = (0.5)(0.3 m)

<u>Amplitude = 0.15 m</u>

6 0
3 years ago
A metal block has a density of 5000 kg per cubic meter and a mass of 15,000 kg. What is its volume?
Naily [24]

Taking into account the definition of density, the volume of the metal block is 3 m³.

<h3>What is density</h3>

Density is defined as the property that matter, whether solid, liquid or gas, has to compress into a given space.

In other words, density is a quantity that allows us to measure the amount of mass in a certain volume of a substance.

Then, the expression for the calculation of density is the quotient between the mass of a body and the volume it occupies:

density=\frac{mass}{volume}

From this expression it can be deduced that density is inversely proportional to volume: the smaller the volume occupied by a given mass, the higher the density.

<h3>Volume of the metal block</h3>

In this case, you know that:

  • Density= 5000 \frac{kg}{m^{3} }
  • Mass= 15000 kg
  • Volume= ?

Replacing in the definition of density:

5000 \frac{kg}{m^{3} } =\frac{15000 kg}{volume}

Solving:

volume×5000 \frac{kg}{m^{3} }= 15000 kg

volume= \frac{15000 kg}{5000 \frac{kg}{m^{3} }}

<u><em>volume= 3 m³</em></u>

In summary, the volume of the metal block is 3 m³.

Learn more about density:

brainly.com/question/952755

brainly.com/question/1462554

#SPJ12

4 0
2 years ago
Alfred wegener said that earths continents are moving which evidence supports this theory
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Similarities in human fossils
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3 years ago
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In 1929 Edwin Hubble used a telescope to discover the movement of galaxies. True or false
larisa86 [58]

Explanation :

Edwin Hubble used a telescope to discover the movement of galaxies in 1929. He was an American Astronomer.

The telescope invented by him is called a Hubble telescope. It has a 2.4-meter mirror.

He gives the relation between the distance to a galaxy and its recessional velocity. This is known as the Hubble law. The relation is as follows :

v=H_0\ r

where,

v is recessional velocity.

H_0 is Hubble constant.

r is distance.

<em>So, the given statement is True.</em>

4 0
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Acceleration due to gravity on the moon is 1.6 m/s^2 or about 16% of the value of g on Earth. If an astronaut on the moon threw
Digiron [165]

Answer:

easy the ansewr is 3

Explanation:

because i calculated

7 0
3 years ago
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