Another elephant pushes with 3500 N on a load of trees. It then pushes these trees for 225 m. How much work did he elephant do?

Answers

Answer 1

Answer:

787, 500 N/m

Explanation:

Work = Force • displacement

[tex]Work = (3500 N)(225 m) = 787500\frac{N}{m}[/tex]

[tex]W = (3500 N)(225 m) = 787500\frac{N}{m}[/tex]


Related Questions

Which of the following best describes the magnetic force?
A. The magnetic force is a noncontact force that acts between two
charged particles.
B. The magnetic force is a contact force that acts between two
magnetic materials.
C. The magnetic force is a noncontact force that acts between two
magnetic materials.
D. The magnetic force is a contact force that acts between two
charged particles.

Answers

I think it’s D

It’s been a while lol

Answer:

It's C. The magnetic force is a

Explanation:

took the test

While cooking dinner, Dinah's oven uses a 125.6 V line and draws 7.9 A of current
when heated to its maximum temperature. What is the resistance of the oven when
it's fully heated?

Answers

Current=I=7.9AVoltage=V=125.6V

Resistance=R

Apply ohms law

[tex]\\ \tt\hookrightarrow \dfrac{V}{I}=R[/tex]

[tex]\\ \tt\hookrightarrow R=\dfrac{125.6}{7.9}[/tex]

[tex]\\ \tt\hookrightarrow R=15.8\Omega[/tex]

While cooking dinner, Dinah's oven uses a 125.6 V line and draws 7.9 A of current when heated to its maximum temperature. What is the resistance of the oven when it's fully heated?

✒️ Answer:===================

Current=I=7.9AVoltage=V=125.6V

Resistance=R

Apply ohms law

[tex] \frac{v}{i} = r[/tex]

[tex]r = \frac{125.6}{7.9} [/tex]

[tex]r = 15.8[/tex]

=====================#CarryOnLearning

Why does air blows from one place to another​

Answers

Air blows from one place to another because gases move from high-pressure areas to low-pressure areas

In simple words

it happens because of pressure differences.

Answer:

Gases moving from high-pressure places to low-pressure places. The bigger the difference of pressure the faster the air moves from both. Giving the movement of air we experience.

OR:

The high-pressure air will raise up to the low-pressure air and will come down causing the air will blow from one place to another.

calculate the work done by the person who applies force of 5000N to lift a load up to a height of 2m

Answers

Answer:

W = 10000J

Explanation:

W = F • s

W = Work in J

F = Force in N

s = displacement in m

W = 5000N • 2m

W = 10000J

What two quantities do you need to know to calculate the numerical value of velocity

Answers

Answer: To calculate velocity, divide distance traveled by the time it took to travel that distance and add direction. If one's position does not change, velocity is zero.

You need the distance travelled and how long it took so the time. You can use this in the formula Speed = distance / time to calculate the speed or velocity.

If you wanted to move an electron from the positive to the negative terminal of the battery, how much work WWW would you need to do on the electron

Answers

The work is simply W = V Q where V is the voltage of the battery and Q the charge on the electron

W = V joules/coulomb * E coulombs = joules

2. How do you represent acceleration? How do you decide on the direction of the arrow?

Answers

Answer:

velocity arrow

Explanation:

When velocity decreases, acceleration and velocity are in opposite directions, so the acceleration arrow and velocity arrow point in the opposite directions.

What happens if lightbulb C
burns out?
A. Only lightbulb C turns off.
B. All of the bulbs go out.
C. Lightbulbs B and C turn off, but A stays
on.

Answers

Answer:

i think the answer is (a) since c is not responsible for the electricity

11
A bus travels at 54.0 km h while moving but after accounting for stopping time, to let
passengers on and off the coach, it averages a speed of 45.0 km h. How many minutes does
the bus stop for each hour?

Answers

Answer:

10 minutes

Explanation:

Given:

Given:Speed of bus excluding stoppages =54 km/h

Speed of bus including stoppages = 45 km/h

To calculate: Minutes/per hour the bus stopped = ?

Distance covered by bus without stopping =54 km/h

Distance covered by bus with stopping =45 km/h

Due to stoppages it could

9km (54-45km) less

Time taken to cover 9 km=?

time \: taken \: = \frac{distane}{speed }timetaken=

speed

distane

Distance=9km

Speed = 54km/h.

Substituting given values on the above formula we get,

time \: taken \: = \frac{9}{54} hour = \frac{1}{6} hour \:timetaken=

54

9

hour=

6

1

hour

=10 minutes

Hence,the correct answer is 10 minutes.

A block of mass
m1 = 4.50 kg
initially at rest on top of a frictionless, horizontal table is attached by a lightweight string to a second block of mass
m2 = 2.70 kg
hanging vertically from the edge of the table and a distance
h = 0.410 m
above the floor (as shown in the figure below). If the edge of the table is assumed to be frictionless, what is the speed with which the first block leaves the edge of the table? (Assume the first block leaves the edge of the table after the second block reaches the floor.)

Answers

The speed with which the first block leaves the edge of the table is 2.84 m/s.

Conservation of mechanical energy

Since both blocks are connected, they will travel at the same speed from the given position. The potential energy of the blocks at the given position will be converted to kinetic energy.

P.E = K.E

mgh = ¹/₂mv²

gh = ¹/₂v²

[tex]v = \sqrt{2gh}[/tex]

The speed of the blocks from the given position is calculated as follows;

[tex]v = \sqrt{2 \times 9.8 \times 0.41} \\\\v = 2.84 \ m/s[/tex]

Thus, the speed with which the first block leaves the edge of the table is 2.84 m/s.

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The speed v of a car after a time (t) is given by
V= u+at
Where u is the initial speed and a is the acceleration
a. Re-arrange this equation to make u the subject of the formula

Answers

Answer:

u = v-at

Explanation:

this is my answer, on how I have come up with this formula

Choose the correct option.

A metal bar PQ is suspended freely . It always comes to rest with its end Q pointing towards north. Another bar XY of same material settles in no definite direction when freely suspended. The two bars are brought closed together.

Which of the following is true?
a) end Q attracts X but repels Y
b) end Q attracts Y but repels X
c) end Q attracts both ends X and Y
d) end Q repels both ends X and Y​

Answers

C) end Q attracts both X and Y

Reason: The metal bar PQ is magnetized and has magnetic properties in it, that's I why the point Q is pointing towards the north. The XY bar doesnt point towards any specific direction because it isn't magnetized and doesn't have magnetic properties in it, and that's why it gets attracted by Q and it's both ends.

The cheetah is considered the fastest running animal in the world. Cheetahs can accelerate to a speed of 21.5 m/s in 2.50 s and can continue to accelerate to reach a top speed of 28.5 m/s. Assume the acceleration is constant until the top speed is reached and is zero thereafter.
Express the cheetah's top speed in mi/h.

Answers

Answer: 63.753 mph

Explanation:

[tex]28.5 \frac{m}{s} * \frac{1 mile}{1609.34 m} * \frac{3600s}{1 hour} = 63.753 \frac{miles}{hour}[/tex]

The Shinkansen high-speed trains serve all regions of Japan, with over
300 trains operating per day. They have a zero-fatality safety record, and
a very low carbon footprint. The trains operate at speeds up to 360
km/hr; the maximum speed allowed with the new NZOOS Model released
in July-2020.
Convert the maximum speed of 360 km/hr into miles per hour. Choose
one of the closest answers below.

Answers

In order to convert the maximum speed to miles per hour, we must follow a series of steps, which will lead us to the conclusion that 360 km/h is equal to 223.7 miles per hour.

How do we convert Kph to Mph?

For this, we only really have to make one conversion. Since both metrics will be using hours as the denominator, that can remain unchanged. Therefore, we must only convert the kilometers into miles. To do this, we use the conversion metric which is that one mile is equal to 1.6 kilometers. So we can take 360 and divide that by 1.6 to reach our answer of 223.7 miles.

Therefore, through using the metrics for converting kilometers into miles, we can confirm that 360 km/h is equal to 223.7 miles per hour.

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A 13.0 kg toy train car moving at 3.40 m/s on a straight level train track, collides head-on with a second train car whose mass is 38.0 kg and was at rest on the track. If the collision is perfectly elastic and all motion is frictionless, calculate the velocities of the two cars after the​

Answers

Before the collision, the total momentum of the two train cars is

(13.0 kg) (3.40 m/s) + 0 = 44.2 kg•m/s

After the collision, the two cars have velocity v₁ and v₂ so that their total momentum is

(13.0 kg) v₁ + (38.0 kg) v₂

Momentum is conserved, so

(13.0 kg) v₁ + (38.0 kg) v₂ = 44.2 kg•m/s

Before collision, the total kinetic energy of the two cars is

1/2 (13.0 kg) (3.40 m/s)² + 0 = 75.14 J

and after collision,

1/2 (13.0 kg) v₁² + 1/2 (38.0 kg) v₂²

Energy is also conserved, so

1/2 (13.0 kg) v₁² + 1/2 (38.0 kg) v₂² = 75.14 J

or

(13.0 kg) v₁² + (38.0 kg) v₂² = 150.28 J

Solve the momentum equation for either v₁ or v₂ :

(13.0 kg) v₁ + (38.0 kg) v₂ = 44.2 kg•m/s

⇒   v₂ = (44.2 kg•m/s - (13.0 kg) v₁) / (38.0 kg)

Substitute this into the energy equation and solve for the other variable :

(13.0 kg) v₁² + (38.0 kg) [(44.2 kg•m/s - (13.0 kg) v₁) / (38.0 kg)]² = 150.28 J

⇒   (17.4 kg) v₁² - (30.2 kg•m/s) v₁ + 51.4 J ≈ 150.28 J

⇒   (17.4 kg) v₁² - (30.2 kg•m/s) v₁ - 98.9 J ≈ 0

Using the quadratic formula,

⇒   v₁ = 3.40 m/s   or   v₁ ≈ -1.67 m/s

(We ignore the second solution because that's the initial condition.)

Solve for the remaining velocity:

v₂ = (44.2 kg•m/s - (13.0 kg) (-1.67 m/s)) / (38.0 kg)

⇒   v₂ ≈ 1.73 m/s

A lightbulb is 3m from a wall. What are the focal length and the position (measured from the bulb) of a lens that will form an image on the wall that is twice the size of the lightbulb?

Answers

The focal length of the lens is 2m and the position of the image is 6 m.

Magnification of the image

The size of the image formed depends on the position of the object from the lens.

[tex]M = \frac{v}{u}[/tex]

where;

M is the magnificationv is the image distanceu is the object distance

Image distance

The image distance is calculated as follows;

[tex]2 = \frac{v}{3} \\\\v = 2(3) \\\\v = 6 \ m[/tex]

Focal length of the lens

The focal length of the lens is calculated as follows;

[tex]\frac{1}{f} = \frac{1}{v} + \frac{1}{u}\\\\\frac{1}{f} = \frac{1}{6} + \frac{1}{3} \\\\\frac{1}{f} = \frac{3}{6} \\\\f = 2m[/tex]

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The fact that all the planets orbit the Sun in the same direction is cited as support for the nebular hypothesis. Imagine that there's a different hypothesis in which planets can be created orbiting the Sun in either direction. Part A Under this hypothesis, what is the probability that eight planets would end up traveling in the same direction

Answers

The probability that eight planets would end up traveling in the same direction is 50%.

Number of planets that will orbit the sun

There are about 8 planets that will orbit the sun.

Current hypothesis

Under this hypothesis that the planets will orbit the sun in the different directions, the following methods can be used to determine the probability that eight planets would end up traveling in the same direction.

P (same direction) = 1 - P(8 planets different direction)

[tex]P = 1 - \frac{1}{2} \\\\P = \frac{1}{2}[/tex]

Thus, the probability that eight planets would end up traveling in the same direction is 50%.

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A Concorde airplane could fly at an average speed of 694 m/s. Calculate how long it would have
taken the Concorde to fly around the world, which is approximately 4.00 x 10^7

Answers

Answer:

I actually don't know bc I only need point s so yeah

Explanation:

the explanaition is nothing bc I have nothing

What is the strategy you use to solve word problems in physics?

Answers

Answer:

The strategy we would like you to learn has five major steps: Focus the Problem, Physics Description, Plan a Solution, Execute the Plan, and Evaluate the Solution. Let's take a detailed look at each of these steps and then do an sample problem following the strategy.

Hydroelectric power means using ___________________ water. Nowadays, this turns to a
turbine which runs a ____________________ to make electricity. This can be done with a water
wheel and fast-flowing stream, but a modern ____________________ power station has a
huge _____________________ which creates a deep _________________, which stores lots of
_____________________ potential energy in the water, so it flows fast through the turbines.
Hydroelectric power is _____________________, needs no ________________________, and
produces no_________________________. However, the dams are _____________________
to build and you need to _______________________ a large area to create the lake, with
environmental consequences.

Answers

Answer:

hope it helps

Explanation:

1. flowing water

2.wind

3. hydroelectric power station

4. dam

5. lake

6. gravitational

7. renewable

8. fuel

9. pollution

10. expensive

11. flood

A 2 kg mass of copper is heated for 40 seconds by a heater which produces 100J/s and the SHC of the copper is 400J what is the rise in temperature

Answers

Answer/Explanation:

m= 2kg

t= 40s

P= 100J/s

C= 400J/kg°C

Q= P×t

= 100×40= 4000J

Q= m×C×∆t

4000= 2×400×∆t

∆t= 4000/(2×400)

∆t= 5°C

P stands for power

Q is heat energy, and we know that power multiplied by time gives amount of energy (which in this case is heat energy)

Brainliest?!

Pretty please help me with this!

Mrs. Kelly is taking her dog, Shadow, for a walk. Shadow sees another dog and gets excited and starts to pull forward. If Shadow weights 25 kilograms and accelerates at 3m/s2, what is the force that Shadow exerts on the leash?
a.) 75 N
b.) 28 N
c.) 25 N
d.) 3 N

Answers

Answer:

a.) 75 N

Explanation:

Force = mass × acceleration

Here,

Mass (m) = 25 kg

Acceleration (a) = 3 m/s²

Force (F) = ?

Using the formula,

F = ma

F = 25 × 3

F = 75 N

Hope it helps ⚜

A fan converts 4.2 kJ of electrical energy to kinetic energy every minute. The power of the fan is...

Answers

The power of the fan is 70 Watt.

What is power?

Power can be defined as the rate at which energy is used. The S.I unit of power is Watt (W)

The power of the fan can be calculated using the formula below.

Formula:P = E/t.......................... Eqaution 1

Where:P = Power of the fanE = Energy of the fant = time

From the question,

Given:E = 4.2 kJ = 4200 Jt = 1 minutes = 60 seconds.

Substitute these values into equation 1

P = 4200/60P = 70 Watt.

Hence, The power of the fan is 70 Watt.

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A truck weighing 5 * 10^3 kgf and a cart weighting 500 kgf are moving with the same speed compare their kinetic energies?​

Answers

A truck weighing 5 x 10³ kg force.

A cart weighing 500 kg force.

Moving with the same speed complete their

kinetic energies.

As we know that,

Formula of:

→ Kinetic energy = 1/2 x m x v².

Using this formula in the equation, we get.

(1).

→ For truck = 1/2 x 5 x 10³ x v².-----

→ For cart = 1/2 x 500 x v². -----(2).

Divide equation (1) and (2), we get.

⇒ KE₁/KE₂ = 5 x 10³/5 x 10².

➡ KE₁/KE₂ = 10/1.

⇒ KE₁/KE₂ = 10:1.

5. Suppose a space ship traveling at 1000 miles per hour enters an area free of gravitational forces and
free of air resistance. If the pilot wishes to slow the ship down, he can accomplish that by shutting off
the engine for a while.
a. True
b. False

Answers

Answer:

False

Explanation:

Unless it encounters external factors, the ship will continue to move at a fixed pace even if the engine is turned off.

PROBLEM 1a. A skier of mass 65 kilograms is at the top of a slope with initial velocity 5 meters/sec. The slope has a vertical descent of 150 meters and is near frictionless. Find the skier's velocity at the bottom of the slope.

Answers

Answer:

The skier is in a conservative system, as the only force acting upon him is gravity. Instead of calculating the work done over the curved hills, we can construct an alternate path, because of the principle of path independence:

Explanation:

Two wires made of the same Two wires made of the same material are
stretched by equal forces. The second wire
is twice as long as the first one and also has
twice the diameter of the first wire.
If the first wire is stretched by 7.7 cm, then
by how long is the second wire stretched?

Answers

The second wire is stretched by 15.4 cm long provided the two-wire are made of the same materials and equal forces.

What is the Young's Modulus of Elasticity?

Young's Modulus of Elasticity explains the elastic characteristics of a solid experiencing tension or compression in a unilateral direction

Here,  the material used is a wire which returns to its length after being stretched or compressed.

From the parameters given:

There are two wires with the same materials, stretched by equal forces.

If the second wire is as twice as first, then:

2x = x

where;

x = first wire = 7.7 cm2x = second wire = 7.7 cm × 2 = 15.4 cm

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Describe how acceleration and velocity are related and specify if these are scalar or vector quantities.

Answers

Acceleration is the rate of change of velocity. ... If an object is changing its velocity, i.e. changing its speed or changing its direction, then it is said to be accelerating. Acceleration =change in velocity/time
They are both vector quantities

Frozen food is submerged in a small insulated container of 95c water. which statement best describes the temperature of the food after two hours assuming no heat is lost outside of the insulated container?
A. the temperature of the food will be 95c
B. the temp of food will be 100c
C. the temp will be same as the temp of the water
D. the temp of the food will be grater than temp of the water
explain your answer?

Answers

Answer:

C

Explanation:

the temperature will be the same as the temperature of the water

26) Star A and star B are the same surface temperature. Star A has twice the radius as star B. How does the amount of energy radiated per unit area from the surface of A compare to surface of B?

Answers

Answer:

1/4

Explanation:

Total radiation energy depends on temperature, so [tex]E_A=E_B[/tex]

Radius [tex]R_A=2R_B[/tex]

so the surface area [tex]S_A=4 S_B[/tex]

energy per unit area

[tex]\frac{E_A}{S_A}=\frac{1}{4}\frac{E_B}{S_B}[/tex]

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