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Nadusha1986 [10]
3 years ago
11

A shot-putter throws the shot with an initial speed of 15.5m/s at a 34 degree angle to the horizontal. calculate the horizontal

distance traveled by the shot if it leaves the athlete's hand at a height of 2.20m above the ground.
Physics
2 answers:
levacccp [35]3 years ago
6 0
This can be solve by using the formula
x = (v^2) (sin 2a) / gwhere v is the intial velocitya is the angle of trajectoryg is the acceleration due to gravity (9.8 m/s2)
x = (15.5^2) (sin 2(34) / 9.8x = 22.73 m
White raven [17]3 years ago
3 0

Answer:

22.7 m

Explanation:

Given,

Initial speed of shot, u =15.5 m/s

Angle at which the shot was thrown is 34°

Horizontal distance covered by projectile is given by the formula:

R = \frac {u^2 sin 2\theta}{g}\\ R = \frac{15.5^2 sin 68°}{9.8} =22.7 m

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If a positive test charge is placed in an electric field, what is the direction of the force on the test charge?
svetlana [45]

Explanation:

If a positive test charge is placed in an electric field, it will exert the force in the test charge in the direction of electric field vector. We know that the direction of electric field is given by electric field lines. The field lines for a positive charge is outwards. The electric force acting on the charge is given by :

F = q E

Hence, this is the required solution.

6 0
3 years ago
Which two facts about plastic affect the environment in a negative way? There are many kinds of plastics to choose from. Some pl
allsm [11]

Some plastics release toxic

They don’t break down over time

Explanation:

The two main facts that shows plastic affects the environment in a negative way is that some of them are toxic and they take a long time to completely break down.

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  • These compounds in plastic polymers takes a very long time to break down
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8 0
4 years ago
A 10 kg frictionless cart is pushed at a constant force of 5.0 N for a distance of 10 m. The work done on the cart is 50J.
kykrilka [37]

1) Final kinetic energy of the cart: B) 50 J

2) Final speed of the cart: C) 3.2 m/s

3) Height reached along the ramp: A) 0.5 m

Explanation:

1)

We can solve this part of the problem by using the work-energy theorem, which states that the work done on an object is equal to the kinetic energy gained by the object itself. Mathematically:

W=K_f - K_i

where

W is the work done

K_f is the final kinetic energy

K_i is the initial kinetic energy

In this problem, the work done on the cart is

W = 50 J

And assuming it starts from rest, its initial kinetic energy is zero:

K_i = 0

Therefore, the final kinetic energy is:

K_f = K_i + W=0+50=50 J

2)

The kinetic energy of an object is the energy possessed by an object due to its motion; it is calculated as

K=\frac{1}{2}mv^2

where

m is the mass of the object

v is its speed

For the cart in this problem, we have:

K = 50 J is its final kinetic energy

m = 10 kg is the cart

Therefore, solving the formula for v, we find its speed:

v=\sqrt{\frac{2K}{m}}=\sqrt{\frac{2(50)}{10}}=3.2 m/s

3)

We can think this problem in terms of conservation of energy. In fact, as the cart rolls up the ramp, its kinetic energy is converted into gravitational potential energy, which is given by

PE=mgh

where

m is the mass

g=9.8 m/s^2 is the acceleration of gravity

h is the heigth of the cart

When the cart reaches the maximum height, all the kinetic energy has been converted into potential energy, so we can write:

K=PE\\\frac{1}{2}mv^2=mgh

Re-arranging,

h=\frac{v^2}{2g}

And since we know the initial speed of the cart along the ramp,

v = 3.2 m/s

we can find the maximum height reached along the ramp:

h=\frac{3.2^2}{2(9.8)}=0.5 m

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mafiozo [28]

Answer:

Explanation:

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Explanation:

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