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djverab [1.8K]
3 years ago
8

How does fungi, snails, earthworms, and pill bugs return nutrients to the ecosystem?

Physics
1 answer:
luda_lava [24]3 years ago
4 0
They decompose and leave their nutrients in the earth. 
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Which definition best explains science? (1 point)
son4ous [18]

Answer:

I think number 3

Explanation:

Or it’s 1 but you just discover stuff in science and don’t argue much so I think it’s number 3, hope this helps, give me A brainliest please. Thanks

8 0
3 years ago
What does it mean when work is positive?
solniwko [45]

Answer:

O The environment did work on an object

Explanation:

8 0
3 years ago
Read 2 more answers
A cannon fires a cannonball at a 35.0° angle at 62.0 m/s on level ground. (a) What is the maximum height of the cannonball? (b)
ycow [4]

Answer:

a) The maximum height of the cannonball is 64.5 m.

b) The cannonball´s speed at maximum height is 50.8 m/s.

Explanation:

The position and velocity vectors of the cannonball can be calculated using the following equations:

r = (x0 + v0 · t · cos α, y0 + v0 · t · sin α + 1/2 · g · t²)

v = (v0 · cos α, v0 · sin α + g · t)

Where:

r = position vector at time t.

x0 = initial horizontal position.

v0 = initial velocity.

t = time.

α = launching angle.

y0 = initial vertical position.

g = acceleration due to gravity (-9.81 m/s² considering the upward direction as positive).

v = velocity vector at time t.

a) At the maximum height, the vertical component of the velocity vector is 0 (please, see the attached figure and notice that at the maximum height the velocity vector is horizontal).

Knowing this, we can calculate the time at which the cannonball is at its maximum height:

vy = v0 · sin α + g · t

0 m/s = 62.0 m/s · sin 35.0° - 9.81 m/s² · t

- 62.0 m/s · sin 35.0° / -9.81 m/s² = t

t = 3.63 s

Now, we can calculate the y-component of the vector r1 in the figure (r1y):

y = y0 + v0 · t · sin α + 1/2 · g · t²

The cannon is at the same level that the origin of the frame of reference (the ground) so that y0 = 0.

y = 0 m + 62.0 m/s · 3.63 s · sin 35.0° - 1/2 · 9.81 m/s² · (3.63 s)²

y = 64.5 m

The maximum height of the cannonball is 64.5 m

b) To calculate the speed at the maximum height, we can use the equation of the velocity vector:

v = (v0 · cos α, v0 · sin α + g · t)

We already know that the y-component is 0. Then, let´s calculate the x-component of the velocity:

vx = v0 · cos α

vx = 62.0 m/s · cos 35.0°

vx = 50.8 m/s

The vector velocity at maximum height will be:

v = (50.8 m/s, 0)

The speed is the magnitude of the velocity vector:

|v| = \sqrt{(50.8 m/s)^{2} + (0 m/s)^{2}} = 50.8 m/s

The cannonball´s speed at maximum height is 50.8 m/s.

3 0
3 years ago
An object that moves in uniform circular motion has a centripetal acceleration of 13 m/s^2 . If the radius of the motion is 0.02
stiks02 [169]

Answer:

f = 3.97 Hz

Explanation:

Given that,

Centripetal acceleration, a=13\ m/s^2

The radius of motion is 0.02 m

The formula for the centripetal acceleration is given by :

a=\dfrac{v^2}{r}\\\\v=\sqrt{ar} \\\\v=\sqrt{13\times 0.02} \\\\v=0.5\ m/s

The speed of an object in a circular path is given by :

v=\dfrac{2\pi r}{t}

t is time period

Also, f=1/t (f is frequency)

f=\dfrac{v}{2\pi r}\\\\f=\dfrac{0.5}{2\pi \times 0.02}\\\\f=3.97\ Hz

Hence, the frequency of motion s 3.97 Hz.

8 0
3 years ago
Please answer this question correctly
Klio2033 [76]

Answer:

0.1m/s²

Explanation:

acceleration =(final velocity - initial velocity)÷time taken

acc=(2-0)÷20

av. acc=0.1m/s²

8 0
3 years ago
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