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Korvikt [17]
3 years ago
14

A skater goes down a hill with a constant acceleration of 2.25 m/s2 for 50 meters. If the skater's final velocity was 20 m/s, ca

lculate her initial velocity.
Physics
2 answers:
NNADVOKAT [17]3 years ago
6 0

Answer:

The initial velocity of the skater is 13.22 m/s.

Explanation:

Given that,

Acceleration of the skater, a=2.25\ m/s^2

Distance covered, d = 50 m

The skater's final velocity was, v = 20 m/s

We need to find the initial velocity of the skater. It can be calculated using third equation of motion as :

v^2-u^2=2ad\\\\u=\sqrt{v^2-2ad} \\\\u=\sqrt{(20)^2-2\times 2.25\times 50} \\\\u=13.22\ m/s

So, the initial velocity of the skater is 13.22 m/s. Hence, this is the required solution.

Learn more,

Kinematics

https://brainly.in/question/10299229

Murrr4er [49]3 years ago
5 0

Answer:

Vi = Vf - (a * t) just plug this in.

Vi stands for “initial velocity”

Vf stands for “final velocity”

a stands for “acceleration”

t stands for “time”

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Answer:

The temperature of cold reservoir should be 246.818 K for efficiency of 35%

Explanation:

In first case we have given efficiency of Carnot engine = 26 % = 0.26

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We know that efficiency of Carnot engine is given by

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0.26 =1-\frac{281}{T_H}

T_H=379.72K

For second Carnot engine efficiency is given as 35% = 0.35

And temperature of hot reservoir is same so T_H=379.72K

So 0.35=1-\frac{T_L}{379.72}

T_L=246.818K

So the temperature of cold reservoir should be 246.818 K for efficiency of 35%

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The answer is 45 degrees
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pav-90 [236]

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The net speed due west is = distance traveled in west / time taken = 120/0.5 = 240 km/h.  

so airspeed due west is  = net speed - speed of plane = 240-220= 20 km/h.  

airspeed due south is = distance traveled in west / time taken= 20/0.5= 40 km/h.  

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