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elena55 [62]
3 years ago
7

Use the following v-t graph to answer the next questions

Physics
1 answer:
jeyben [28]3 years ago
8 0

Answer:

mag aral ka bubu

Explanation:

ang tanga mu hahahahhaha luko nandyan lang naman yan hahahhahahahahahahhahahahahahahahhahahahahahaahahahahahahahhahahahahahahahahahahahahaahhahahaahahhaahha09561782

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When we look into the band of light in our sky that we call the Milky Way, can we see distant galaxies? Why or why not?
bixtya [17]

Answer:

No      

Explanation:

The Earth lies in one of the outer arms of the Milky Way galaxy. The Milky way that you see is the central portion of the galaxy that is visible. It consists of millions of stars, star clusters, dust and gas. The stars, dust and gas are part of the Milky Way only. It is a dense band. It obscures any outside view beyond the galaxy. Thus, you are not able to see any distant galaxies in the this band.

6 0
3 years ago
What is the cheetahs momentum?
Aleks04 [339]

Answer:

Momentum is mass*velocity. Cheetah: 74*31 = 2294 kg-m/s.

8 0
3 years ago
An object of mass 50 g and density 5 g/cm3 is carefully lowered into a measuring cylinder containing 50 cm3 of water. What will
AlexFokin [52]

Answer: 60cm^3

Explanation:

Here we can use the relationship:

Density = mass/volume.

We know that density = 5g/cm^3 and mass = 50g, then we have:

5g/cm^3 = 50g/V

V = 50g/5g/cm^3 = 10cm^3

Then, when we introduce it in a cylinder with 50cm^3 of water, this is heavier than water (the density of the water is 1g/cm^3) it will sink, and the complete volume will be equal to the volume of the water plus the volume of the object:

Total Volume = 50cm^3 + 10cm^3 = 60cm^3

8 0
3 years ago
Identify the forces acting on motor vehicle in straight line motion on a horizontal surface
tigry1 [53]

Friction, engine thrust, normal reaction and weight, these are the forces acting on motor when it moves in a straight line

7 0
3 years ago
Which of the following is true about this lever?
zysi [14]

As we can see here the lever has two forces at two ends

1. 300 N

2. 200 N

now we need to find the Torque on the lever about the fulcrum

so we will have

1. clockwise torque due to force at right end is

\tau_1 = d_1F_1

\tau_1 = 6(200) = 1200 Nm

2. counterclockwise torque due to force at left end

\tau_2 = d_2F_2

\tau_2 = 1(300) = 300 Nm

so as per above calculations we can see that net torque on the lever is clockwise as it has more torque in clockwise direction

so <u>it will rotate clockwise</u>

6 0
3 years ago
Read 2 more answers
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