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Tems11 [23]
3 years ago
7

30 POINTS PLZ HELP!!!

Physics
2 answers:
pishuonlain [190]3 years ago
8 0

Answer: Option (A) is the correct answer.

Explanation:

Since Robert has a history of depression this means that he is mostly worried about his image in his family and friends because everyone wants to look good in everybody's eyes.

Similarly, Robert also wants to be treated fairly well by everyone around him as he wants that everybody consider him normal.

Thus, Robert’s apprehension to get help is an example of a fear of being stigmatized.

jok3333 [9.3K]3 years ago
5 0

Answer:

A

Explanation:

In society, there is a terrible stigma attached to mental illnesses as a general topic. Usually the mentality is "it's all in your head", which is not true.

Many people who think they have depression or anxiety do not want to say anything, because of the fear of judgement. The general population believes that there "is no such thing" as depression because there are no visible signs that can be viewed as a sickness.

In this case Robert would not want to seek help, because he would not want to be viewed as someone who is "looking for attention".

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A) 2.64t

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C) 2.64D

Explanation:

A)

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The time of flight of a projectile can be found from the equations of motion, and it is found to be

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When she is on Mars, the acceleration due to gravity is:

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where g is the acceleration due to gravity on Earth. Therefore, the time of flight on Mars will be:

t'=\frac{2usin \theta}{g'}=\frac{2u sin \theta}{0.379g}=\frac{1}{0.379}t=2.64t

B)

The maximum height reached by a projectile can be also found using the equations of motion, and it is given by

h=\frac{u^2 sin^2\theta}{2g}

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u is the initial speed

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In this problem, when the athlete is on the Earth, the maximum height is h.

When she is on Mars, the acceleration due to gravity is:

g'=0.379 g

where g is the acceleration due to gravity on Earth. So, the maximum height reached on Mars will be:

h'=\frac{u^2 sin^2\theta}{2g'}=\frac{u^2 sin^2\theta}{(0.379)2g}=\frac{1}{0.379}h=2.64h

C)

The horizontal distance covered by a projectile is also found from the equations of motion, and it is given by

D=\frac{u^2 sin(2\theta)}{g}

where:

u is the initial speed

\theta is the angle of projection

g is the acceleration due to gravity

In this problem, when the athlete is on the Earth, the horizontal distance covered is D.

When she is on Mars, the acceleration due to gravity is:

g'=0.379 g

where g is the acceleration due to gravity on Earth. Therefore, the horizontal distance reached on Mars will be:

D'=\frac{u^2 sin(2\theta)}{g'}=\frac{u^2 sin(2\theta)}{(0.379)g}=\frac{1}{0.379}D=2.64D

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Rest and motion are relatives terms justify the statement​
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Answer:

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Explanation:

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A sound-producing object is moving toward an observer. The sound the observer hears will have a frequency ___ that actually bein
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The answer is <span>higher than.
</span><span>A sound-producing object is moving toward an observer. The sound the observer hears will have a frequency higher than that actually being produced by the object.

Why?
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Thus each wave takes slightly less time to reach the observer than the previous wave. So, the time between the arrival of successive wave crests at the observer is reduced, increasing the frequency. </span>
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nirvana33 [79]

Answer:

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