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Nataliya [291]
3 years ago
15

Laura thinks that the oak tree has the largest leaves of all the trees at the playground. How could she best test her prediction

?
A.
Measure the height of each of the trees at the playground.

B.
Measure the length of a few leaves from each tree at the playground.

C.
Measure the length of one oak leaf and one leaf from another tree.

D.
Walk around the playground and look at the leaves on each tree.
Physics
1 answer:
IgorLugansk [536]3 years ago
6 0

Answer:

I would say b but not 100 percent sure

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Within a pendulum, as potential energy decreases, _____ energy increases.
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Kinetic Energy because when the pendulum is dropped its gravitational energy is transferred into kinetic energy as it gains speed.

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A 2.4 kg box has an initial velocity of 3.6 m/s upward along a plane inclined at 27◦ to the horizontal. The coefficient of kinet
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Answer:

d= 1.18 m

Explanation:

In abscense of  friction, total mechanical energy must be constant, i.e.,

ΔK + ΔU = 0

As we are told that there exists a kinetic friction between the box and the plane, we need to take into account the work done by the friction force in the equation, as follows:

ΔK + ΔU = Wnc (1)

If we take as our zero gravitational potential energy reference, the height at which the box is sent upward, we can write the following equations for the different terms in (1):

ΔK = Kf- K₀ = 0 - 1/2*m*v₀² = -1/2*2.4kg* (3.6)²(m/s)² = -15.6 J

ΔU = Uf - U₀ = m*g*h = *m*g*d*sin θ = 2.4 kg*9.81 m/s²*d*0.454 = 10.7*d J

Wnc = Ff. d* cos (180º) = μk*N*d*cos(180º) (2)

The friction force always opposes to the displacement, so the angle between force and displacement is 180º.

The normal force, as is always perpendicular to the surface, takes the value needed to equilibrate the component of the weight perpendicular to the incline, as follows:

N = m*g*cosθ =  2.4 kg*9.81 m/s²*cos 27º = 21 N

Replacing in (2):

Wnc = 0.12*21*cos (180º) = -2.52*d J

Replacing in (1):

-15.6 J + 10.7*d J = -2.52*d J

Solving for d:

d = 1.18 m

 

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4 years ago
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Answer:

millisecond

Explanation:

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