The labels of the axes in a line graph consist of _____. A. only the units of measurement B. only the variable name C. the variable name and units D.
the relationship shown

Answers

Answer 1
I believe that the answer would be c, but I am not certain
Answer 2

Answer:only the variable name


Related Questions

The particle moves first along the y axis from the origin to the point (0,6m) and then parallel to the x axis until it reaches (3m,6m). it is subject to a force f⃗ =cxyi^+dj^, where c = 8.0 n/m2 and d = 13 n . calculate the work done by the force. express your answer using two significant figures.

Answers

First we calculate the force.

F = 8 *3 * 6 i + 13 j = 144 i + 13 j

F = sqrt (144^2 + 13^2) = 144.59 N

 

Then calculate the displacement d.

d = sqrt (3^2 + 6^2) = 6.71 m

 

Work is the produce of force and displacement, therefore:

W = F d = 144.59 N * 6.71 m

W = 970 J

The work done by the force on the particle which moves first along the y-axis from the origin and then parallel to the x-axis is 970 J.

How to find work done?

Work done is the force applied on a body to move it over a distance. Work done can be calculated with the following formula.

[tex]W=F\times d[/tex]

Here (F) is the magnitude of force and (d) is the distance traveled.

The particle moves first along the y axis from the origin to the point (0,6m) and then parallel to the x axis until it reaches (3m,6m).

The particle is subject to a force,

[tex]\vec F=cxy\hat i+d\hat j[/tex]

Here,  c = 8.0 N/m2 and d = 13 N. The final point of the displacement of the particle is (3 m, 6 m).

Put the values of (x,y), c and d to find the value of force.

[tex]\vec F=(8)(3)(6)\hat i+(13)\hat j\\\vec F=144\hat i+13\hat j[/tex]

Solving this equation as,

[tex]F=\sqrt{(144)^2+(13)^2}\\F=144.59\rm\; N[/tex]

The initial position of the particle is at the origin (0, 0) and the final position of the particle is (3 m, 6 m). Thus, the displacement is,

[tex]d=\sqrt{(3-0)^2+(6-0)^2}\\d=6.71\rm\; m[/tex]

The work done will be,

[tex]W=144.59\times(6.71)\\W=970\rm\; J[/tex]

Hence, the work done by the force on the particle which moves first along the y-axis from the origin and then parallel to the x-axis is 970 J.

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If the acceleration of an object is negative, the object must be slowing down. true or false

Answers

True, because when you are slowing down you LOSE speed.

If the acceleration of an object is negative, the object must be slowing down, which is true, as acceleration is the rate at which an object changes its velocity, if the acceleration is negative, it means that the velocity is decreasing over time.

What is acceleration?

Acceleration is a vector quantity that describes the rate at which an object's velocity changes and is the derivative of velocity with respect to time, so if the acceleration is negative, it means that the velocity is decreasing with respect to time. and can happen if the object is moving in the opposite direction from its initial velocity. This can be described by taking an example: if a car is moving forward with a velocity of 30 meters per second and its acceleration is -5 meters per second squared, it means that its velocity is decreasing at a rate of 5 meters per second.

Hence, if the acceleration of an object is negative, the object must be slowing down, which is true.

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Ball is thrown upward from the ground with an initial speed of 25 m/s; at the same instant, another ball is dropped from a building 15 m high. after how long will the balls be at the same height?

Answers

0.6 seconds after the balls start moving, they'll be at the same height. The altitude the 1st ball will be at time T is a = 25T - 0.5AT^2 The altitude the 2nd ball will be at time T is a = 15 - 0.5AT^2 Set both expressions equal to each other and solve for T 25T - 0.5AT^2 = 15 - 0.5AT^2 Add 0.5AT^2 to both sides 25T = 15 Divide both sides by 25 T = 15/25 = 3/5 = 0.6 So both balls will be at the same altitude 0.6 seconds after they start moving. Let's verify those results. Assume A = 9.8 m/s^2 0.5 * 9.8 m/s^2 * 0.6s^2 = 4.9 m/s^2 * .36 s^2 = 1.764 m The altitude the 1st ball will be at after 0.6 seconds is 0.6 s * 25 m/s - 1.764m = 15 m - 1.764 m The altitude the 2nd ball will be at after 0.6 seconds is 15 m - 1.764 m Both are the same value so the answer is verified.
Final answer:

The problem involves the principles of projectile motion. The ball thrown upward reaches its peak in 2.5 seconds. The ball dropped from the building cover 15 meters in about 1.75 seconds. Therefore, after the peak, the first ball will take an additional 0.75 second to descend to the point where both balls are at the same height, about 3.25 seconds from the start.

Explanation:

This physics problem involves applying the principles of projectile motion. We start by calculating the time it takes for the ball thrown upward to reach its peak. Since acceleration acting against the motion of the first ball is gravity (9.8 m/s²), using the formula final velocity = initial velocity - (acceleration* time), and since the final upward velocity at the top is 0, we calculate the time it takes the throw up ball to peak as 2.5 seconds (0 = 25m/s - 9.8m/s² * t).

Next, we calculate the time it takes for a ball to fall 15m from rest (assume the drop from the building begins from rest). We use the formula h = 0.5*g*t² which we rearrange to solve for time, yielding t=√(2h/g). Using this formula with h = 15m, we get t ≈ 1.75 seconds.

Therefore, the ball thrown upwards must start to descend after reaching peak so that both balls meet at the same height. Subtracting the two times, we get 2.5 seconds - 1.75 seconds = 0.75 second. Ball 1 will take 0.75 seconds to descend so that both balls reach the same height at the same instance. So, after approximately 3.25 seconds from the start of projectile motion, the two balls will be at the same height.

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Explain the deeply rooted historical factors that moved america toward independence from britain.

Answers

One of the major reasons America moved toward independence was the issue of taxation. People in the colonies believed that the Crown (England) was taking too much from them while they were left to do the hard work of carving out a new land. They did not feel this was right and wanted to keep more and more for themselves, so they moved toward separation from England and independence.

A force of 150 N accelerates a 25 kg wooden chair across a wood floor at 4.3 m/s2 . How big is the frictional force on the block? What is the coefficient of friction between the chair and floor?

Answers

We can first calculate the net force using the given information.

By Newton's second law, F(net) = ma:

F(net) = 25 * 4.3 = 107.5

We can now calculate the frictional force, f, which is working against the applied force, F(app) (this is why the net force is a bit lower):

f = F(net) - F(app) = 150 - 107.5 = 42.5 N

Now we can calculate the coefficient of friction, u, using the normal force, F(N):

f = uF(n) --> u = f/F(N)
u = 42.5/[25(9.8)]
u = 0.17

An insulated lunch bag keeps food warm by

Answers

trapping warm air in and keeping cold air out

An insulated lunch bag uses materials that slow down heat transfer.

Importance of Features in Insulated Containers

An insulated lunch bag keeps food warm by utilizing materials that slow down heat transfer, complying with the principles of thermodynamics. To understand which features are most important in minimizing the rate of a hot beverage cooling, we need to consider the mechanisms of heat transfer: conduction, convection, and radiation. A metal lining might conduct heat, leading to quicker heat loss, unless it's part of a vacuum layer such as in a thermos. Insulating cup material, on the other hand, is crucial as materials like polystyrene or foam are poor conductors of heat and therefore reduce heat loss through conduction. The importance of a lid can't be overstated because it traps hot air and reduces heat loss through convection.

If a tube is placed vertically into a container of water, and the water level inside the tube is the same as the water level on the outside, what can we determine about the pressure inside the tube?

Answers

it's equal to d external atmospheric pressure

What would we need to know to calculate both work and power?

A -energy, force, and time
B -force, distance, and time
C -force, mass, and distance
D -mass, force, and energy

Answers

we would need force, distance and time
B is your answer

A bag of sugar weighs 1.50 lb on earth. what would it weigh in newtons on the moon, where the free-fall acceleration is one-sixth that on earth?

Answers

Final answer:

A bag of sugar that weighs 1.50 lb (or 6.68 N) on Earth would weigh 1.11 N on the moon because the moon's gravity is only one-sixth as strong as Earth's gravity.

Explanation:

To find the weight of the bag of sugar on the moon, we first need to convert its weight on earth from pounds to newtons. As 1.0 lb is equivalent to 4.45 N, a 1.50-lb bag of sugar would weigh 6.68 N on Earth. On the moon, where the free-fall acceleration is one-sixth of what it is on Earth, this weight would be reduced by a factor of 6, giving a weight of approximately 1.11 N.

So, a 1.50-lb bag of sugar which weighs 6.68 N on Earth would weigh 1.11 N on the moon.

To understand why this is the case, it's necessary to understand that weight varies depending on location because it depends on the force of gravity. On the moon, gravity is only one-sixth as strong as it on Earth, which is why objects weigh less there.

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If the resistance of an electric circuit is 12 ohms and the voltage in the circuit is 60 V the current flowing through the circuit is

Answers

Current = (voltage) / (resistance)

= 60v / 12 ohms

= 5 Amperes.

If the resistance of an electric circuit is 12 ohms and the voltage in the circuit is 60 V the current flowing through the circuit is 5A

What is ohm's law?

Ohm's law states that the voltage across a conductor is directly proportional to the current flowing through it, provided all physical conditions and temperatures remain constant

resistance = 12 ohm

voltage = 60 V

using ohm's law

V = IR

I = V/R

 = 60 / 12

 = 5 A

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When two objects are touching and transfer heat, it is called _____?

Answers

friction its like rubbing your hands together 

If a ball is thrown vertically upward from the roof of 64 foot building with a velocity of 96 ft/sec, then what is the maximum height the ball reaches? what is the velocity of the ball when it hits the ground?\

Answers

The height function would be s(t) = -16t^2 + 64t + 32.

Maximum height ---> set s'(t) = 0.

-32t + 64 = 0. ---> t = 2. s(2) = -16(2)^2 + 64(2) + 32 = the maximum height is 96 feet.

To find the velocity when it hits the ground, set s(t) = 0.

-16t^2 + 64t + 32 = 0. Divide by -16.

t^2 - 4t - 2 = 0. The only positive solution is x = 4.45.

s'(4.45) = -32(4.45) + 64 = It's going -78.4 feet/second when it hits the ground.

What affects the direction of the current moving through a wire? Check all that apply.
-the direction the wire moves in
-the thickness of the wire
-the direction of the magnetic field
-the type of magnet
-the direction of the needle on an ammeter

Answers

The direction of the current in a wire is influenced by the direction of the magnetic field and the movement of the wire in relation to this field. The thickness of the wire affects current amount but not direction. The type of magnet and the ammeter's needle do not determine the current's direction.

The direction of the current moving through a wire is affected by various factors, but let's discuss the pertinent ones here:

The direction of the magnetic field: This has a direct effect on the direction of the current, as per the right-hand rule, which relates the direction of the current to the direction of the magnetic force.The movement of the wire in relation to the magnetic field: If the wire is moved within a magnetic field, this motion induces a current whose direction is determined by the orientation of the movement relative to the magnetic field lines.The thickness of the wire doesn't directly affect the direction of the current, but it can influence the resistance and thereby the amount of current that flows through the wire.

Factors such as the type of magnet and the direction of the needle on an ammeter do not affect the direction of the current. An ammeter is a tool used to measure current, not influence it. As for the type of magnet, it's the strength and orientation of the magnetic field it produces that matter, not its inherent type. The relationship between current and magnetic fields is a fundamental concept in electromagnetism, and understanding this relationship is crucial as it forms the basis of electrical motors and generators.

After 4 seconds, the car in Problem # 2 applies the brakes and comes to a full stop after 2 seconds. What is the acceleration of the car and what is the braking distance?


#2 A car accelerates from rest at 4 m/s^2. What is the velocity of the car after 4 second?

Answers

If the car is accelerating uniformly then,
velocity of car at the fourth second is 16m/s
Then if the car with this velocity stopped after 2s then acceleration is,
a=0-16/2=-8m/s^2
braking distance is given by
d=16*2-0.5*8*2*2
=32-16
=16m
this answer is valid only if the motion is one dimensional
all the best.

What is your average speed if you walk 2 kilometers in 20 minutes?

Answers

multiply 2 and .33 to get .66...km per hour.
if you the answer in km/h it is 2km/.33h
which is equal to 6.06km/h or 6km/h
In meters per second it is 2000m/1200s
which is equal to 1.67m/s

In order for psychologists to be able to offer patient care, they must be __________.

A.
good
B.
caring
C.
licensed
D.
smart

Answers

Im pretty sure its C
I'd say the answer is C. Hope this helps.

When the electron in a hydrogen atom moves from n = 5 to n = 2, light with a wavelength of ________ nm is emitted?

Answers

             In order for an electron to move to a higher energy level, the photon is absorbed by
the atom. The energy of the photon must be at least enough to raise the electron
from energy level 2 to level 5. The wavelength w can be found by Rydberg's formula
1/w = R(1/L² - 1/U²), where L and U are the lower and upper energy levels, in this
case 2 and 5. R is the Rydberg constant, experimentally found to be10,967,758
waves per meter for hydrogen. So the wavelength w is: 1/w = R(1/4 - 1/25) = 0.21R
The value we get is w = 4.34 * 10**-7 meter, or 434 nanometers and it is absorbed
by the atom to cause the electron to move to the higher energy level.
Answer choice A above is the best choice. Hope this answers your question.
Final answer:

The wavelength of light emitted when an electron in a hydrogen atom transitions from n = 5 to n = 2 is 434 nm, which falls within the blue spectrum.

Explanation:

When the electron in a hydrogen atom moves from n = 5 to n = 2, light with a specific wavelength is emitted. This transition falls under the Balmer series, which includes the transitions of electrons from higher energy levels to n = 2. The specific wavelengths of the Balmer series for n = 3 to n = 2 is 656 nm (red), for n = 4 to n = 2 is 486 nm (green), for n = 5 to n = 2 is 434 nm (blue), and for n = 6 to n = 2 is 410 nm (violet). Therefore, the wavelength of light emitted when an electron transitions from n = 5 to n = 2 is 434 nm.

An 80 kg hockey player is skating at 5 m/s. He collides with the wall and comes to a stop in .2 s. What was the force of his impact on the wall

Answers

F = mass * acceleration
The 80kg hockey player was travelling at 5 m/s when he hit the wall.He stopped in .2 s, which means that he decelerated by 5m/s in .2 seconds.

This means this deceleration was 5 m / 0.2 s² = 25 m/s²

To calculate Force, multiply mass times acceleration
80kg times 25m/s² = 2,000 N

In this question, a hockey player with mass 80kg is skating with velocity 5m/s and then collide with a wall for 0.2 seconds. Force formula is mass multiplied by acceleration.
In this case, the velocity is changed into 5m/s into 0m/s in 0.2 second. Then the acceleration is: (5m/s - 0m/s) / 0.2 second= 25m/s^2

Then, the force on his impact should be: 

force= mass*acceleration
force= 80kg * 25 m/s^2= 2000N

Explain why streets and highways have speed limits and not velocity limits.

Answers

We know that speed is a scalar unit while velocity is a vector. The signs are mostly concerned with the magnitude that the car should travel in, the direction is not as important. 

Hope I helped :) 
Final answer:

Streets and highways implement speed limits, not velocity limits, as speed is concerned with only how fast an object is moving, while velocity includes both speed and direction. Imposing velocity limits is impractical as the direction of a moving vehicle continuously varies. Speed limits are enforced to regulate the speed of vehicles, thereby ensuring road safety.

Explanation:

Streets and highways have speed limits instead of velocity limits because speed concerns only the magnitude of movement while velocity includes both speed and direction. Speed is a scalar quantity, meaning it involves only magnitude. On the other hand, velocity is a vector quantity, taking into account both the speed of an object and its direction of motion.

For instance, when a vehicle runs through an intersection without regard to the speed limit, a traffic signal can make the vehicle slow down. This highlights the need for enforcing speed limits.

The final velocity of a vehicle depends on both the magnitude of acceleration and the distance it covers. A vehicle going twice its speed doesn't stop exactly at twice the distance but goes much further before stopping, as exemplified by reduced speed zones near schools. This concept reinforces the necessity of speed limits to ensure public safety and reduce road accidents.

In conclusion, while speed refers to the rate at which an object moves, velocity refers to both the rate and direction of an object's movement. It's impractical to impose velocity limits because direction varies continuously for a car in motion, hence, speed limits are established to regulate the rapidness of vehicles, ensuring road safety.

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Provide at least three reasons why friction is needed.

Answers

Uses of Friction. Although you normally hear about trying to reduce or eliminate friction, it actually has some important uses. Since friction is a resistance force that slows down or prevents motion, it is necessary in many applications where you might want to hold items or do things and prevent slipping or sliding.

Friction is a force that exists between two surfaces in contact. Some of the applications of friction in our everyday lives include;

The force of friction between the tyre of a vehicle and the road. The rough surface of the road and the surface of the tyre reduce the possibility of the car skidding off the road.

The friction that exists between the leg and the floor enables us to walk freely without slipping

Friction also enables the smooth belt of a grinder to slide freely over motor

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How many 750.0-ml wine bottles can be purged with the argon in the canister at a pressure of 1.26 atm and a temperature of 283 k ?

Answers

Approximately 0.0305 wine bottles can be purged with the argon in the canister.

Let's go through the calculations step by step:

Given:
- Pressure (\(P\)) = 1.26 atm
- Volume (\(V\)) = 0.75 L (converted from 750.0 ml)
- Temperature (\(T\)) = 283 K
- Ideal Gas Constant (\(R\)) = 0.0821 L·atm/(mol·K)

Now, use the ideal gas law to find the number of moles [tex](\(n\)):\[ n = \frac{PV}{RT} \][/tex]

[tex]\[ n = \frac{(1.26 \, \text{atm}) \times (0.75 \, \text{L})}{(0.0821 \, \text{L·atm/(mol·K)}) \times (283 \, \text{K})} \]\[ n = \frac{0.945}{23.2263} \]\[ n \approx 0.0408 \, \text{mol} \][/tex]

Now, let's assume that the argon canister contains pure argon, and we need to find out how many moles of argon are in a wine bottle. Argon's molar mass is approximately 39.95 g/mol.

[tex]\[ \text{Moles of argon in a wine bottle} = \frac{\text{Molar mass of argon} \times \text{Volume of the bottle}}{\text{Molar volume at STP}} \]\[ \text{Moles of argon in a wine bottle} = \frac{(39.95 \, \text{g/mol}) \times (0.75 \, \text{L})}{22.4 \, \text{L/mol}} \]\[ \text{Moles of argon in a wine bottle} \approx 1.34 \, \text{mol} \][/tex]

Finally, to find the number of wine bottles that can be purged with the argon in the canister:

[tex]\[ \text{Number of bottles} = \frac{\text{Total moles in canister}}{\text{Moles in one bottle}} \]\[ \text{Number of bottles} = \frac{0.0408 \, \text{mol}}{1.34 \, \text{mol/bottle}} \]\[ \text{Number of bottles} \approx 0.0305 \][/tex]

Therefore, approximately 0.0305 wine bottles can be purged with the argon in the canister.

Approximating venus's atmosphere as a layer of gas 50 km thick, with uniform density 21 kg/m3, calculate the total mass of the atmosphere.

Answers

The diameter of Venus (from tables) is 12,100 km.
Therefore its radius is
r = 12100/2 = 6050 km = 6050 x 10³ m = 6.05 x 10⁶ m

The layer of gas is 50 km thick.
The outer radius of the surrounding layer of gas is
R = r + 50 x 10³ m
   = 6.05 x 10⁶ + 50 x 10³ m
   = 6.1 x 10⁶ m

The volume of the layer of gas is
V = [(4π)*3] * [(6.1 x 10⁶)³ - (6.05 x 10⁶)³] m³
    = [(4π)/3] * 5.535875 x 10¹⁸ m³
    = 2.318862 x 10¹⁹ m³

Because the density of the gas layer is 21 kg/m³, therefore the mass of the gas layer is
m = (21 kg/m³) * (2.318862 x 10¹⁹ m³)
    = 4.8696 x 10²⁰ kg

Answer: [tex]4.8696 \times 10^{20} \, kg[/tex]

4.9x10^20 kg Venus has a radius of 6051.8 km, so we'll assume the total volume of the atmosphere is the volume of a sphere with a radius of (6051.8 + 50) km minus the volume of Venus itself. So V = 4/3 pi r^3 6051.8 + 50 = 6101.8 The overall expression is V = 4/3 pi 6101.8^3 - 4/3 pi 6051.8^3 V = 4/3 pi (6101.8^3 - 6051.8^3) V = 4/3 pi 5539155986 V = 23202362337 V = 2.32x10^10 km^3 V = 2.32x10^19 m^3 Now multiply the volume by the density. So V = 2.32x10^19 m^3 * 21 kg/m^3 = 4.87x10^20 kg So the atmosphere of Venus has a mass of about 4.9x10^20 kg

What does buoyancy depend on?

A. the density of the object and the density of the fluid

B. atmospheric pressure and the density of the object

C. The density of the object and the force of gravity

D. the density of the surrounding air and the density of water

Answers

Answer:

D.  the density of the surrounding air and the density of water.

The buoyancy depends on D. the density of the surrounding air and the density of water.

Is buoyancy depending on density?

be aware of how the buoyant pressure most effective depends on the density of the fluid ρ in which the object is submerged, the acceleration due to gravity g, and the quantity of the displaced fluid V f V_f Vf​V, start subscript, f, quit subscript. fairly the buoyant force doesn't rely upon the general depth of the item submerged.

what is buoyancy provide an explanation for?

the tendency of a frame to glide or to upward push whilst submerged in a fluid trying out an item's buoyancy.  chemistry: the electricity of a fluid to exert upward pressure on a frame positioned in it the buoyancy of water also : the upward force exerted.

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Which subatomic particle is electrically neutral and found in the nucleus of an atom? proton neutron electron orbital nucleus?

Answers

Neutron is electrically neutral and is found in the nucleus of the atom

Answer:

Neutron

Explanation:

Neutron is an electrically neutral subatomic particle found in the nucleus of an atom.

Protron is an electrically positive subatomic particle found in the nucleus of an atom.

Electron is an electrically negative subatomic particle found in the orbital of an atom.

A pendulum has 297 J of potential energy at the highest point of its swing. How much kinetic energy will it have at the bottom of its swing?

Answers

If no energy is lost to friction or air resistance, then kinetic energy at the bottom and potential energy at the top are equal.

Discuss the properties of a scalar quantity. give an example of a scalar.

Answers

Answer:

A physical quantity which is described completely by its magnitude only, is called a scalar quantity.

Examples- Velocity ,Temperature, Speed

Properties

Scalar quantity does not have directions.It has magnitude onlyIt does not have directionIt is specified by a number and a unitIt is represented by quantity symbol

48. Protons have ___ charge, neutrons have ___ charge, and electrons have ___ charge.
A. negative; positive; no
B. positive; no; negative
C. positive; negative; no
D. negative; no; positive
E. no; negative; positive

Answers

positive; no; negative

The cooling effect inside a refrigerator is produced by

Answers

Actually, when the refrigeration liquid is vaporized, the cooling effect is produced

You throw a ball upward from a window at a speed of 1.5 m/s. how fast will it be moving when it hits the sidewalk 2.6 m below?

Answers

List out all your variables; 

Initial Velocity (u)= 1.5 ms⁻¹
Final Velocity (v)=? 
Acceleration=9.8 ms⁻¹ (remains constant on free fall problems) 
Displacement (s)=-2.6 m 

v²=u²+2as 
v²=(1.5)²+2(-9.8)(-2.6) 
v²=53.21
v=√53.21
v= 7.2945 ≈ 7.3 ms⁻¹

Hope I helped :) 

You throw a ball upward from a window at a speed of 1.5 m/s. Ball will be moving with velocity when it hits the sidewalk 2.6 m below is  7.3 ms⁻¹.

What is velocity?

When an item is moving, its velocity is the rate at which its direction is changing as seen from a certain point of view and as measured by a specific unit of time. Uniform motion an object is said to have uniform motion when object cover equal distance in equal interval of time within exact fixed direction. For a body in uniform motion, the magnitude of its velocity remains constant over time.

Given in the question,

Initial Velocity (u)= 1.5 ms⁻¹

Final Velocity (v)=?

Acceleration=9.8 ms⁻¹ (remains constant on free fall problems)

Displacement (s)=-2.6 m

v² = u²+2as

v² = (1.5)²+2(-9.8)(-2.6)

v² = 53.21

v  = √53.21

v  = 7.2945 ≈ 7.3 ms⁻¹

Ball will be moving with velocity when it hits the sidewalk 2.6 m below is  7.3 ms⁻¹.

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A ball is dropped from a cliff and falls a distance of 20 m to the ground. Determine the velocity it hits the ground at and the time for the ball to fall.
A.v = -10 m/s, t = 2 s
B.v = 20 m/s, t = 4 s
C.v = -20 m/s, t = 2 s
D.v = 10 m/s, t = 2 s

Answers

Use the kinematic equation: d = vi • t + ½ • a • t^2
20=0(t)+(0.5)(9.8)(t^2)
20=4.9(t^2)
t=2.02seconds
---------------------------------
Final Velocity=Initial Velocity +at^2
Vf=(9.8)(2.02^2)
Vf=19.796
Final answer:

The ball hits the ground with a velocity of 19.6 m/s and it takes approximately 2.02 seconds for the ball to fall.

Explanation:

To determine the velocity the ball hits the ground at, we can use the equation v = gt, where g is the acceleration due to gravity, approximately 9.8 m/s². Since the ball falls for 2 seconds, the velocity is given by v = 9.8 m/s² * 2 s = 19.6 m/s. Therefore, the ball hits the ground with a velocity of 19.6 m/s.

To determine the time it takes for the ball to fall, we can use the equation h = (1/2)gt², where h is the height and t is the time. Rearranging the equation, we have t = √(2h/g). Substituting the given height of 20 m, the time is t = √(2 * 20 m / 9.8 m/s²) = √4.08 s ≈ 2.02 s. Therefore, the time for the ball to fall is approximately 2.02 seconds.

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