A 15 kg cart is pushed on a frictionless surface from rest horizontally by a 30 N force. What is the cart's acceleration?
b. How far wil it travel in 10 seconds?
c. What is its velocity at the end of 10 seconds?

Answers

Answer 1

Answer:

a. The cart's acceleration is 2 m/s^2

b. The cart will travel 100 m

c. The speed is 20 m/s

Explanation:

a. The acceleration of the cart can be calculated using Newton's second law:

F = m.a

Solving for a:

[tex]\displaystyle a=\frac{F}{m}[/tex]

The cart has a mass of m=15 Kg and is applied a net force of F=30 N, thus:

[tex]\displaystyle a=\frac{30}{15}[/tex]

[tex]a=2\ m/s^2[/tex]

b.

Now we use kinematics to find the distance and speed:

[tex]\displaystyle x = v_o.t+\frac{at^2}{2}[/tex]

The cart starts from rest (vo=0). The distance traveled in t=10 seconds is:

[tex]\displaystyle x = 0*10+\frac{2*10^2}{2}[/tex]

[tex]x = 100\ m[/tex]

The cart will travel 100 m

c.

The final speed is calculated by:

[tex]v_f=0+2*10=20\ m/s[/tex]

The speed is 20 m/s


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Avi, a gymnast, weighs 40 kg. She is jumping on a trampoline that has a spring constant value of 176,400 StartFraction N over m EndFraction. If she compresses the trampoline 20 cm, how high should she reach? meters

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Answer:

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Explanation:

Answer:

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Explanation:

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What does it mean to say that an object is opaque?
A. It reflects all visible light.
B. It absorbs all visible light.
C. Light will not transmit through it.
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Answers

The answer is C, light cant pass through an opaque object

Answer:another answer is ”a light will not transmit thro it”

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Answer:

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If a wave is traveling at 200 m/s and it’s wavelength is 0.5 meters , what is the frequency of the wave

Answers

Answer:

400 Hz

Explanation:

The frequency of a sound wave is found by the velocity/wavelength.  Therefore, f = v/wavelength = (200 m/s)/(0.5 m) = 400 Hz

I hope this helps! :)

A train traveling at 27.5 accelerates to 42.4 m s over 75.0 s What is the displacement of the train in this time period A train traveling at 27.5 m/s accelerates to 42.4 m/s over 75.0 s. What is the displacement of the train in this time period

Answers

Answer:

The displacement of the train in this time period is 2,616.86 m.

Explanation:

A Uniformly Varied Rectilinear Motion is Rectilinear because the mobile moves in a straight line, Uniformly because of there is a magnitude that remains constant (in this case the acceleration) and Varied because the speed varies, the final speed being different from the initial one.

In other words, a motion is uniformly varied rectilinear when the trajectory of the mobile is a straight line and its speed varies the same amount in each unit of time (the speed is constant and the acceleration is variable).

An independent equation of useful time in this type of movement is:

[tex]vf^{2} =vi^{2} +2*a*d[/tex] Expression A

where:

vf = final velocity vi = initial velocity a = acceleration d = distance

The equation of velocity as a function of time in this type of movement is:

vf=vi + a*t

So the velocity can be calculated as: [tex]a=\frac{vf-vi}{t}[/tex]

In this case:

vf=42.4 m/svi=27.5 m/st=75 s

Replacing in the definition of acceleration:  [tex]a=\frac{42.4 m/s-27.5 m/s}{75 s}[/tex]

a=0.199 m/s²

Now, replacing in expression A:

[tex](42.4 m/s)^{2} =(27.5 m/s)^{2} +2*(0.199 m/s^{2}) *d[/tex]

Solving:

[tex]d= \frac{(42.4 m/s)^{2} - (27.5 m/s)^{2} }{2*(0.199 m/s^{2}) }[/tex]

d= 2,616.86 m

The displacement of the train in this time period is 2,616.86 m.

In the equation for Newton's 2nd Law
of Motion, F = ma, "a" represents
O area
O acceleration
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Answers

Answer:

In the formula, F = m×a, where a represents acceleration.

Answer:

Force=mass times acceleration

Explanation:

Describe any major landmarks (buildings, bridges, historical sites, etc.) that were destroyed during the valdivia earthquake.

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Answer:

Homes, Workplaces, Statues, Meuseums

Explanation:

if you did look into it you would know after the earthquake there was a tsunami which flooded alot of places, this made many homeless, jobless, and many lossing vaklueable things

A box slides to the right along a horizontal surface which is true about the friction force
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Answer:

It is a force in the direction of the motion that allows the box to move

Explanation:

A 10-foot ladder is leaning straight up against a wall when a person begins pulling the base of the ladder away from the wall at the rate of 1 foot per second. Calculate the true distance between the top of the ladder and the ground when the base of the ladder is 9 feet from the wall.

Answers

Answer:

[tex]y = 4.36[/tex]

Explanation:

Let the height of the ladder be L

[tex]L = 10[/tex]

Also:

Let [tex]x = distance\ from\ the\ base\ of\ the\ ladder[/tex]Let [tex]y = height\ of\ the\ base\ of\ the\ ladder[/tex]

When the ladder leans against the wall, it forms a triangle and the length of the ladder forms the hypotenuse.

So, we have:

[tex]L^2 = x^2 + y^2[/tex] --- Pythagoras Theorem

When the base is 9ft from the wall, this means that:

[tex]x = 9[/tex]

Substitute 9 for x and 10 for L in [tex]L^2 = x^2 + y^2[/tex]

[tex]10^2 = 9^2 + y^2[/tex]

[tex]100 = 81 + y^2[/tex]

Make [tex]y^2[/tex] the subject

[tex]y^2 = 100 - 81[/tex]

[tex]y^2 = 19[/tex]

Make y the subject

[tex]y = \sqrt{19[/tex]

[tex]y = 4.36[/tex]

Hence, the true distance at that point is approximately 4.36ft

The true statement about the true distance between the top of the ladder and the ground when the base is 9 feets from the wall is - 9/√19

Let :

x = distance from base of ladder y = Length of ladder

Ladder forms a right angle triangle as it leans against the wall :

Hence, we have :

Opposite² + Adjacent² = hypotenus²

x² + y² = 100

Taking the implicit derivative of both sides:

2xdx/dt + 2ydy/dt = 0

xdx/dt + ydy/dt = 0

ydy/dt = - xdx/dt

dy/dt = (-xdx/dt) / y

When the ladder is 9 ft from the wall;

x = 9

81 + y² = 100

y² = 100 - 81 = 19

y = √19

Substituting into the equation :

dy/dt = -9(1)/√19

Hence, dy/dt = - 9/√19

Learn more : https://brainly.com/question/13511183

How many turns should a solenoid of cross-sectional area 3.0×10−2 m2 and length 0.24 m have if its inductance is to be 36 mH ?

Answers

Answer:

The number of turns of the solenoid is 478.7 turns.

Explanation:

Given;

area of the solenoid, A = 3.0 x 10⁻² m²

length of the solenoid, l = 0.24 m

inductance of the solenoid, L = 36 mH = 0.036 H

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Therefore, the number of turns of the solenoid is 478.7 turns.

What single resistor could replace 20 Ω, 30 Ω and 50 Ω resistors which have been joined in series ?

Answers

Answer:

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Answer:

an increase in the angular speed due to the conservation of angular momentum principle.

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When his arms are stretched, his moment of inertia I is increased.

Now as This student pulls his arms inwards, His moment of inertia I is going to decrease

Therefore, through the use of the conservation of angular momentum,

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Answers

Answer:

Conservation of momentum

Explanation:

Out of the two options given, the more appropriate one is the law of conservation of momentum. This is particularly so because momentum deals with the velocity or speed of the car while considering its mass. So, if a large car is to collide with another car, small one, then the momentum is what is considered. Energy on the other hand is talking about the work that is done, while the momentum considers the mass of the car while it is moving and considering its speed also

Find the force between charges of +10.0 C and -50.0 C located 20.0 cm apart.

Answers

Answer:  SI

Explanation:

Suppose an automobile has a kinetic energy
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When it moves with nine times the speed,
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Answer in units of J.

Answers

Answer:

[tex]KE_{new}=186300 J[/tex]

Explanation:

Given:

[tex]KE=2300J[/tex]   [tex]n=9[/tex]

[tex]v_{new}=n*v_{old}[/tex]

[tex]\frac{KE_{new}}{KE_{old}}=\frac{v^2_{new}}{v^2_{old}}=\frac{(n*v_{old})^2}{v^2_{old}}=n^2[/tex]

[tex]KE_{new}=n^2KE_{old}[/tex]

[tex]KE_{new}=(9)^2(2300)[/tex]

[tex]KE_{new}=186300 J[/tex]

Scientific notation

[tex]KE_{new}= 1.863*10^5 J[/tex]

Hope it helps

50 Joules of work in 25 seconds. How much power did she use?

Answers

P(W) = E(J) / t(s)

50/25=2

What causes us to see different phases of the moon?

Answers

Answer:

The phases of the moon are determined by its position in its orbit around the Earth and the Sun. The phases occur because, as the moon orbits the Earth, we see values on the side of the moon illuminated by the sun.

hope it helps!

The phases of the moon are determined by its position in its orbit around the Earth and the Sun. The phases occur because, as the moon orbits the Earth, we see values on the side of the moon illuminated by the sun.

What is moon illumination?

This is due to the fact that the moon is actually only partially lighted, having already reached its full brilliance.

The moon will be in the "Third quarter" phase if it is highest in the sky at sunrise.

This is due to the fact that the moon will rise at this position at midnight, reaching its maximum peak just before daybreak. This is because the moon is lighted more than its half illumination even though it is moving toward becoming the new moon at this position.

The phases of the moon are determined by its position in its orbit around the Earth and the Sun. The phases occur because, as the moon orbits the Earth, we see values on the side of the moon illuminated by the sun.

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brainly.com/question/20160684

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1) An object of mass (m=2.0 kg) is given an acceleration given by a=3.0 i +4.0j.
The magnitude of the applied force in (N) is:

Answers

By Newton's second law, the net force on the object is

F = m a

F = (2.0 kg) ((3.0 i + 4.0 j ) m/s²)

F = (6.0 i + 8.0 j ) N

which has a magnitude of

F = √((6.0 N)² + (8.0 N)²) = √(100 N²) = 10 N

A ring of charge with uniform charge density is completely enclosed in a hollow doughnut shape. An exact copy of the ring is completely enclosed in a hollow sphere. What is the ratio of the flux out of the doughnut shape to that of the sphere

Answers

Answer:

1:1

Explanation:

the sphere is an exact copy of the ring so the energy flux will be equivalent because they carry the same charge

a.
100 kg
20.While standing on a frictionless surface, a 100-ke student pushes against a 80-kg student. Which of the
following best describes the motion that will result?
The 80-ke student will accelerate away from the 100-kg
student, while the 100-kg student remains stationary.
b. The 100-kg student will accelerate away from the 80-kg
student, while the 80-kg student remains stationary.
c. Both students will accelerate away from each other, but
the 80-kg student will have a greater acceleration
d. Both students will accelerate away from each other, but
the 100-kg student will have a greater acceleration.
fectiones ace

Answers

Answer:

the correct answer is c, they will accelerate away from each other at different speeds. the 80kg will go faster due to less mass

If magnet A can pick up 3 steel paperclips and magnet B can pick up 5 paperclips, which one is stronger

Answers

Answer:4

Explanation:

The clips are not affected by magnet strength

9. Which of these is equal to 7nm?
O 0.7m
O
0.007m
O 0.000007m
O 0.000000007m

Answers

Answer:

o.o7m bb

Explanation:

If a wave is traveling at 200 m/s and its wavelength is 0.5 meters, what is the frequency of the
wave?

Answers

The frequency of the  wave = 400/s

Further explanation

Given

v=200 m/s

λ=0.5 m

Required

The frequency of the  wave

Solution

Frequency (f): number of waves in one second

The frequency is inversely proportional to the wavelength

[tex]\tt f=\dfrac{v}{\lambda}\\\\f=\dfrac{200~m/s}{0.5~m}\\\\f=400/s[/tex]

HELP ASAP 100 POINTS NEED ANSWERED ASAP

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Answer:

yes

Explanation:

Answer:

Hmm looks tricky

Explanation:

In the Compton effect, the wavelength of the scattered photon is __________ the wavelength of the incident photon.

Answers

Answer:

he wavelength is different (greater) than the wavelength of the incident photon

Explanation:

The Compton effect is the scattering of a photon by an electron, this process is analyzed using the conservation of momentum, in which we assume that initially the electron is at rest and after the collision it recedes, therefore the energy of the incident photon decreases and consequently its wavelength changes

To complete the sentence we use the wavelength is different (greater) than the wavelength of the incident photon

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