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Vlad1618 [11]
2 years ago
3

A person throws a 0.5 kg ball up in the air in 1.1 s. During this process the position of the ball changes from 0.5 m to 1.5 m (

before being released) and the speed of the ball changes from 0 m/s to 7 m/s. What is the work (in J) done by the force of gravity on the ball while the ball is being thrown?
Physics
1 answer:
never [62]2 years ago
7 0

Answer:

Explanation:

A ball is thrown up and it works against gravity

Mass = 0.5kg

Time 1.1sec

Change of position ∆h=0.5 to 1.5m

∆h=1.5-0.5

∆h=1m

Work done by gravity is given as=W×d

W=mg, let g, =9.8m/s²

W=0.5×9.8

W=4.9N

Then the upward motion

Initial velocity 7m/s

Final velocity 0m/s

So this final velocity will be the initial velocity of the upward motion

We need to get the height, the ball traveled

S=ut-1/2gt² motion against gravity

u=7m/s

S=7×1.1-0.5×9.8×1.1²

S=1.771m

The height the ball reached is 1.771m

The total height of the ball from start is ∆h +S

H=1.771+1

H=2.771m

Work done done by gravity =W×H

Workdone= 4.9 × 2.771

Work done=13.58Joules

But the work done from when the ball is release up to reach the maximum height is given as

Work done = W×s

Work done =4.9× 1.771

Work done = 8.68J

This is the work done by gravity during the thrown alone, when the ball left the hand

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Alborosie

Answer:

I = 4.75 A

Explanation:

To find the current in the wire you use the following relation:

J=\frac{E}{\rho}      (1)

E: electric field E(t)=0.0004t2−0.0001t+0.0004

ρ: resistivity of the material = 2.75×10−8 ohm-meters

J: current density

The current density is also given by:

J=\frac{I}{A}        (2)

I: current

A: cross area of the wire = π(d/2)^2

d: diameter of the wire = 0.205 cm = 0.00205 m

You replace the equation (2) into the equation (1), and you solve for the current I:

\frac{I}{A}=\frac{E(t)}{\rho}\\\\I(t)=\frac{AE(t)}{\rho}

Next, you replace for all variables:

I(t)=\frac{\pi (d/2)^2E(t)}{\rho}\\\\I(t)=\frac{\pi(0.00205m/2)^2(0.0004t^2-0.0001t+0.0004)}{2.75*10^{-8}\Omega.m}\\\\I(t)=4.75A

hence, the current in the wire is 4.75A

4 0
2 years ago
Some plants disperse their seeds when the fruit splits and contracts, propelling the seeds through the air. The trajectory of th
Anton [14]

Answer:

Option B, 93 cm

Explanation:

An diagram of the seed's motion is attached to this solution.

This is very close to a projectile motion question. And the quantity to be calculated, how far along the grant a seed released would travel is called the Range.

And this would be obtained from the equations of motion,

First of, the height of the plant is related to some quantities of the motion with this relation.

H = u(y) t + 0.5g(t^2)

U(y) = initial vertical component of velocity = 0 m/s, H = height at which motion began, = 20cm = 0.2 m

That means t = √(2H/g)

The horizontal distance covered, R,

R = u(x) t + 0.5g(t^2) = u(x) t (the second part of the equation goes to zero as the vertical component of the acceleration of this motion is 0)

(substituting the t = √(2H/g) derived from above

R = u(x) √(2H/g)

Where u(x) = the initial horizontal component of the bomb's velocity = maximum initial speed, that is, 4.6 m/s, H = vertical height at which the seed was released = 20 cm = 0.2 m, g = acceleration due to gravity = 9.8 m/s2

R = 4.6 √(2×0.2/9.8) = 0.929 m = 0.93 m = 93 cm. Option B.

QED!

6 0
2 years ago
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We know,

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3 0
2 years ago
The atomic number of beryllium (Be) is 4, and the atomic number of barium (Ba) is 56. Which comparison is best supported by this
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The answer is:

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The explanation:

The vertical columns on the periodic table are called groups or families because of their similar chemical behavior. All the members of a family of elements have the same number of valence electrons and similar chemical properties.

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Answer:

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Explanation:

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5 0
2 years ago
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