How much work is done by gravity when a pine cone (of mass 50g) falls from the top of a tree, 9 m high?

Answers

Answer 1

4.5 Joules. I think it'd be 4.41, but when you round it, it's 4.5.

Answer 2

Final answer:

The work done by gravity on a 50g pine cone falling from a 9 m high tree is 4.41 Joules, as calculated using the gravitational potential energy formula.

Explanation:

The amount of work done by gravity on a falling object is equal to the change in the object's gravitational potential energy (GPE). The GPE formula is GPE = mgh, where m is the mass in kilograms, g is the acceleration due to gravity (9.8 m/s² on Earth), and h is the height in meters. For a pine cone with a mass of 50g (which is 0.05 kg) falling from a height of 9 m, the work done by gravity is:

GPE = mgh = (0.05 kg) x (9.8 m/s²) x (9 m) = 4.41 Joules

Thus, 4.41 Joules of work is done by gravity when the pine cone falls from the top of a 9 m high tree.


Related Questions

3. By compressing a spring, you increase its length. *
True
False

Answers

Answer:

false

Explanation:

False

You would increase the length by pulling on it

As a substance condenses, its temperature does not change. How does the potential energy of the molecules of the substance change as a result of the heat release? What type of energy must decrease in order for the temperature to decrease

Answers

Answer:

Potential energy decreases because temperature is measured by the how fast molecules move. The more kinetic energy in the molecules, the less potential energy

What is the speed of an arrow that takes 1.25 seconds to hit a target 75
meters away?

Answers

Answer:

60m/s

Explanation:

v=s÷t

75m÷1.25s=60m/s

Answer

60

Explanation:

This is because if the question gives you the distance and the time, you have to find the speed.

A graph titled Position versus time for with horizontal axis time (seconds) and vertical axis position (meters). A straight blue line runs with an upward slope from 0 seconds 3 meters to 4 seconds 15 meters.
The starting position of this object is
m.

The object is traveling at a velocity of
m/s.

Answers

Final answer:

The question involves analyzing a position vs. time graph to determine the object's starting position at 3 meters and its velocity, which is calculated as 3 m/s based on the slope of the line.

Explanation:

The question pertains to analyzing a position vs. time graph of an object in motion to determine its starting position, velocity, and other characteristics of its motion. Given the description of a graph where a straight blue line runs with an upward slope from 0 seconds at 3 meters to 4 seconds at 15 meters, we can infer several key details about the object's movement.

The starting position of this object is 3 meters. This is inferred from the graph's indication that at 0 seconds, the object is at 3 meters.

The object is traveling at a velocity calculated from the slope of the line on the position vs. time graph. The velocity can be found using the formula velocity = (final position - initial position) / (final time - initial time). Substituting the given values, velocity = (15 meters - 3 meters) / (4 seconds - 0 seconds) = 12 meters / 4 seconds = 3 m/s.

This scenario highlights the concepts of initial position, velocity, and the relationship between slope on a position vs. time graph and the velocity of an object in motion.

the instantaneous speed at 2 seconds is **0 m/s** since the position remains constant, and the average speed over the entire trip is **1 m/s** based on the information provided by the position-time graph.

To determine the instantaneous speed at 2 seconds and the average speed over the entire trip from the given position-time graph with three straight segments, we can analyze the information provided. Here's how we can approach this:

1. **Instantaneous Speed at 2 Seconds**:

- Since the graph provides position values at specific time points, we can find the instantaneous speed at 2 seconds by looking at the slope of the graph at that point.

- At 2 seconds, the position is not explicitly given. We can infer it based on the straight segments. The position remains constant at 12 meters from 4 seconds to 6 seconds.

- Therefore, at 2 seconds, the position is 12 meters. To find the instantaneous speed, we need to calculate the slope of the line connecting the points at 2 seconds and a nearby point, which is 4 seconds.

- The change in position is 12 meters - 12 meters = 0 meters (since the position remains constant), and the change in time is 4 seconds - 2 seconds = 2 seconds.

- As a result, the instantaneous speed at 2 seconds is 0 meters per 2 seconds = **0 m/s**.

2. **Average Speed over the Entire Trip**:

- The average speed over the entire trip can be calculated by dividing the total distance traveled by the total time taken.

- The object travels from 0 meters to 12 meters (12 meters) and then back to 0 meters (12 meters total distance). The total time taken is 12 seconds (0 to 12 seconds).

- Therefore, the average speed over the entire trip is 12 meters / 12 seconds = **1 m/s**.

In summary, the instantaneous speed at 2 seconds is **0 m/s** since the position remains constant, and the average speed over the entire trip is **1 m/s** based on the information provided by the position-time graph.

The probable question maybe:

A graph titled Position versus time for with horizontal axis time (seconds) and vertical axis position (meters). The line runs in 3 straight segments from 0 seconds 0 meters to 4 seconds 12 meters to 6 seconds 12 meters to 12 seconds 0 meters.

Use the graph to determine the instantaneous speed at 2 seconds.

m/s

What is the average speed over the entire trip?

A 500kg elevator is raised to a height of 10 m in 10 seconds. Calculate the power of the motor.
490 W
49,000 W
4900 W
490,000 W

Answers

Answer:

Correct answer: Third statement  P = 4900 W

Explanation:

Given:

m = 500 kg  the mass of the elevator

h = 10 m  reached height after t = 10 seconds

P = ? power of the motor

The formula for the calculating power of the motor is:

P = W / t

since work is a measure of change in this case of potential energy then it is:

W = ΔEp = Ep - 0 = Ep

In this case we must take g = 9.81 m/s²

Ep = m g h = 500 · 9.81 · 10 = 49,050 W ≈ 49,000 W

Ep ≈ 49,000 W

P = Ep / t = 49,000 / 10 = 4,900 W

P =4,900 W

God is with you!!!

Which of the following statements must be true about this prism's critical angle for the violet light shown below?


A. The critical angle is exactly 47º.

B. The critical angle is greater than 47°.

C. The critical angle is less than 47°.

D. This question cannot be answered without knowing how light of other colors would behave.

Answers

Answer: C. The critical angle is less than 47°.

Explanation:

The critical angle is the angle such that the refracted beam is parallel to the surface of the prism, so we will have total internal refraction

This comes from the snell law:

n1*sen(a1) = n2*sen(a2)

where n1 is bigger than n2.

Then:

sen(a1) = (n2/n1)*sin(a2)

n2/n1 is smaller than 1, so the right side only can go up to (n2/n1)*1 (when a2 = 90°)

sen(a1) = n2/n1

this equation defines our critical angle.

If we use an angle bigger than the critical angle, we still have a total internal reflection, so we will no see a refracted beam.

In the image, we can see that the angle between the beam and the normal to the surface of the prism is 47°, and we also can see that we have a refracted beam, this means that 47° must be smaller than the critical angle.

So the correct option is C.

Answer:

B. The critical angle is greater than 47°.

Explanation:

Explanation: Light is reflected back into a prism whenever the angle of incidence is greater than the critical angle. When the angle of incidence is less than the critical angle, the light refracts as it exits the prism. In this case, the violet light is refracted as it exits the prism, so the critical angle must be greater than 47°. Also, you can conclude that all other colors of visible light will be refracted as it exits the prism. Shorter wavelengths (at the violet end of the spectrum) are the "first" to be reflected. If violet light is not reflected, then no visible light will be reflected.

4. How does temperature affect the density of a material?

Answers

Answer:

Heating a substance causes molecules to speed up and spread slightly further apart, occupying a larger volume that results in a decrease in density. ... Hot water is less dense and will float on room-temperature water. Cold water is more dense and will sink in room-temperature water.

Explanation:

Temperature influences a material's density by altering its particles' arrangement; generally, substances expand and become less dense at higher temperatures.

Temperature affects the density of a material due to changes in its molecular structure and particle motion. When a material is heated, its particles gain energy and move more vigorously, causing them to expand and increase the volume they occupy. If the mass remains constant while the volume increases, the density decreases.

This phenomenon is observed in most substances, especially gases and liquids. In contrast, some materials exhibit unusual behavior. For instance, water reaches its maximum density at approximately 4 degrees Celsius before expanding as it freezes into ice. This behavior is essential for aquatic life during winter as it prevents lakes and rivers from freezing entirely, maintaining a liquid layer on the surface. Overall, temperature-induced changes in particle arrangement and motion play a significant role in altering a material's density, impacting various natural processes and industrial applications.

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Is the Air Force better than the Navy?

Answers

In what particular way are you asking?

Answer:

I think that's more of an opinion

Planets move around the sun in elliptical orbits.
A. true
B. false

Answers

Answer:All planets move in elliptical orbits, with the sun at one focus. This is one of Kepler's laws. The elliptical shape of the orbit is a result of the inverse square force of gravity. The eccentricity of the ellipse is greatly exaggerated here.

so it is true

Explanation:

Answer:

True

Explanation:

You can't actually see the orbits or paths of the planets revolving around the sun.

A 60kg block rests on rough horizontal ground. A rope is
attached to the block and is pulled with a force of 220N to the
left. As a result, the block accelerates at 3 m/s2. The coefficient
of kinetic friction Hk between the block and the ground is
(round to the nearest hundredth)

Answers

Answer:

The coefficient of kinetic friction is [tex]\mu_k = 0.07.[/tex]

Explanation:

Let us call [tex]F_k[/tex] the force of friction, then we know that [tex]220N - F_k[/tex] is what has caused the acceleration [tex]a =3m/s^2[/tex]:

[tex]220-F_k =ma[/tex]

[tex]220-F_k =(60kg)(3m/s^2)[/tex]

[tex]220-F_k =180[/tex]

[tex]F_K = 40N[/tex]

Now this frictional force relates to the coefficient of kinetic friction [tex]\mu_k[/tex] by  

[tex]F_k = \mu_k N[/tex]

where [tex]N=mg[/tex] is the normal force.

Putting in numbers and solving for [tex]\mu_k[/tex] we get:

[tex]\mu_k = \dfrac{F_k}{mg}[/tex]

[tex]\mu_k = \dfrac{40N}{(60kg)(10m/s^2)}[/tex]

[tex]\boxed{\mu_k = 0.07}[/tex]

Hence, the coefficient of kinetic friction is 0.07.

Final answer:

To find the coefficient of kinetic friction, we can set up an equation using the net force, the applied force, and the normal force. Solving for the coefficient of kinetic friction, we find it to be approximately 0.68.

Explanation:

To find the coefficient of kinetic friction between the block and the ground, we need to consider the forces acting on the block. The force of friction opposes the applied force and is equal to the coefficient of kinetic friction multiplied by the normal force. The normal force is equal to the weight of the block, which is 60 kg multiplied by the acceleration due to gravity (9.8 m/s^2).

From the given information, the block accelerates at 3 m/s^2 to the left. Using Newton's second law (F = ma), we can calculate the net force acting on the block. The net force is equal to the applied force minus the force of friction.

Since the block is accelerating to the left, the net force is in the same direction as the applied force. Therefore, the net force is equal to the applied force minus the force of friction. Setting up the equation: F - μkN = ma. Rearranging the equation, we can solve for the coefficient of kinetic friction μk.

μk = (ma + F)/N = (60 kg * 3 m/s^2 + 220 N)/(60 kg * 9.8 m/s^2)

Plugging in the given values:

μk = (180 N + 220 N)/(588 N) = 400 N / 588 N ≈ 0.68

PLEASE SHOW STEPS!

You heat a 0.45 kg sample of metal to a temperature of
80 °C then quickly transfer it into a beaker that contains 0.70 kg of water at 15 °C; the specific heat capacity of water is 4 200 J/kg·°C. The highest temperature of the sample plus the water is 21 °C. What is the heat capacity of the sample of metal?

Answers

Answer:

The heat capacity of the sample of metal is 664j/kg.°C

Explanation:

Kindly find attached a detailed solution to this question for you reference.

Given data

Mass of sample m1= 0.45kg

Temperature of sample θs= 80°c

Mass of water mw = 0.7kg

Temperature of water θw= 15°C

Specific heat capacity of water Cw=

4200j/kg.°C

Equilibrium Temperature θ3= 21°C

HEAT LOSS BY SUBSTANCE =HEAT GAINED BY WATER

What is Quantity of heat?

Quantity of heat is the amount of heat absorbed or given out by a body Q=mcθ

What is the heat capacity?

Heat capacity is the amount of heat required to raise the temperature of a substance by 1k.The S.I unit is joule per Kelvin J/k

What is specific heat capacity?

The specific heat capacity is the amount of heat required to raise the temperature of 1kg of substance by 1k

Please hurry need ASAP!!! When a pendulum swings, at which point is kinetic energy highest?
1
2
3
4
5

Answers

Kinetic energy only exist if object has motion.

At point 3 , kinetic energy is highest.

We know that,  

                              Kinetic energy  =  [tex]\frac{1}{2} mv^{2}[/tex]

Where m is mass of pendulum and v is speed of pendulum.

Since the mass of the pendulum  would not  change, the only way for kinetic energy to change is for the speed of the pendulum to change.

Kinetic energy is highest when the velocity is the highest. This occurs at the bottom of the pendulum.

At the lowest point (Point 3 ) the pendulum has its greatest speed.  All of the energy in the pendulum is kinetic energy and there is no gravitational potential energy.

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what evidence can you present for the possibility of time travel?

Answers

The Mandela effect is a good example of time travel

The Mandela effect is a good example of time travel

what is Mandela effect ?

The Mandela effect is a  false memory effect occur when many different people incorrectly remember the same thing.

It is widespread and it is a false memory by Nelson Mandela, South African human rights activist, an eventual president, died in prison in the 1980s.

When a group of people misremembers the Mandela effect is occurred, it is a  historical event or person.

Nelson Mandela did not die in prison in the 1980s. After serving 27 years in prison, Mandela became president of South Africa from 1994–1999. He died in 2013.

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One way to create static electricity is to ____________.

A.turn off an electric circuit
B.run an electric current through an object
C.rub two things together
D.use an electric generator

Answers

Answer:

C. Rub two things together.

Explanation:

Rubbing two things together causes friction which forms energy and there you have it, static electricity. Take a fuzzy sweater and rub it against another fuzzy sweater and then touch it. The energy stored will release in the form of shock.

Lightning is an example of static discharge.

True Or False

Answers

Answer:

true

Explanation:

Answer: true

Explanation:

Select the correct answer from each drop-down menu.
Pictures that we receive from space are of the
because it takes time for
to reach Earth.
Reset
Next

Answers

Answer: the other guy does not know anything about science! he is incorrect, the answers are past for the first blank and light for the second blank. depending on what planet in space you take pictures on, and how far away they are, and their orbit, it is past and light. because it takes time for light to reach earth depending on the planet's orbit, and how far away it is.

so the correct answers are: past, and light.

What is the maximum amount of potassium nitrate (KNO3) that can dissolve in 100 grams of water at 40°C?

A.
25 grams

B.
50 grams

C.
62 grams

D.
75 grams

Answers

Answer: 62 gram

Explanation:

Using attached solubility graph

This solubility graph tells us the amount of potassium nitrate that can be dissolved per 100g of water in order to have a saturated solution of potassium nitrate at a given temperature.

In order to find the solubility of the salt at 40∘C, start from the 40∘C mark on the graph and move up until you intersect the curve. At the point of intersection, move left until you intersect the y axis and read off the value that you land on.

In this case, you can estimate that the solubility of potassium nitrate in water at 40∘C is equal to about 62g

This tells you that a saturated solution of potassium nitrate will hold about 62 g of dissolved salt, i.e. of dissociated salt, per 100g of water at 40∘C.

Please find the attached file for the graph.

1. How would you describe the area in which you live? Use terms such as desert, prairie, or
coastal. Even if you live in a city, in which type of environment was the city built?

I need help ASAP

Answers

Answer:

forest rual area

Explanation:

because thats where i live

Final answer:

The desert environment of the Great Basin Desert where I live impacts the city's architecture, economy, and conservation efforts. Unique flora and fauna, along with minimal water resources, shape the community's way of life and urban planning. Geographic features like nearby mountains further influence the city's development and residents' daily activities.

Explanation:

The area in which I live is a desert, specifically the northern tip of the Great Basin Desert. The natural setting of a city can vastly influence its history, design, layout, and way of life. For instance, the dry and semiarid climate of this area has led to a fragile ecosystem. Three examples of how the environment has shaped my city include the architecture, which is designed with materials suitable for hot and dry conditions; the city's economy, which is likely to be based on industries that can thrive in such a climate, such as tourism; and conservation efforts, which are significant due to concern for the fragile ecosystem and endangered species in the region.

This desert environment means we have a unique set of flora and fauna adapted to the dry conditions. Construction materials tend to reflect the limited resources available, leaning more into minimalist designs that can maintain cooler indoor temperatures. The economy is also shaped by the environment, as agricultural practices and water usage have to be carefully managed, and recreational activities often revolve around the unique landscape, such as hiking in desert parks.

The surrounding landscape is characterized by low rainfall and limited water sources, which also impacts urban planning regarding water usage and storage. Additionally, geographic features such as nearby mountains can influence weather patterns and therefore impact city planning and daily life.



Mr. Barnes class did an experiment testing electromagnetic strength. As the results show; they discovered that the more coils they used; the stronger the magnetic strength. Which lab design did they use?
A) They created a closed circuit to attract paper clips using a copper wire coiled around an iron nail. The copper wire was also touching only the negative pole of a D- Battery.
B) They created a closed circuit to attract paper clips using a copper wire coiled around a pencil. The copper wire was also touching both the positive and negative poles of a D- Battery.
C) They created a closed circuit to attract paper clips using a copper wire coiled around an iron nail. The copper wire was also touching both the positive and negative poles of a D- Battery.
D) They created a closed circuit to attract paper clips using a insulated wire coiled around an iron nail. The insulated wire was also touching both the positive and negative poles of a D- Battery.

Answers

Answer:

c

Explanation:

The correct option is C. They created a closed circuit to attract paper clips using a copper wire coiled around an iron nail. The copper wire was also touching both the positive and negative poles of a D- Battery.

What is  electromagnetic strength?

A permanent magnet's magnetic flux constantly flows from its N-pole to its S-pole.

The magnetic field and the current combine to produce force when a conductor is placed in a magnetic field and current passes through the conductor. "Electromagnetic force" is the name of the force.

The direction of the magnetic force, the flux, and the current are all determined by the fleming's left hand rule.

Therefore, The correct option is C. They created a closed circuit to attract paper clips using a copper wire coiled around an iron nail. The copper wire was also touching both the positive and negative poles of a D- Battery.

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two point charges having charge values of 9.2 E -6 C and 3.5 E -6 C, respectively, are separated by 3 E -2 m. What is the absolute value of the mutual force between them

Answers

Answer: The absolute value of the mutual force between the two point charges is 5.3952 x 10^-3 N.

Explanation:

The mutual force between two point charges can be calculated using Coulomb's law, which states that the force between two point charges is directly proportional to the product of their charges and inversely proportional to the square of the distance between them:

F = k * (q1 * q2) / r^2

where F is the force, k is Coulomb's constant (9.0 x 10^9 N m^2/C^2), q1 and q2 are the charges of the two-point charges, and r is the distance between them.

In this problem, q1 = 9.2 E-6 C, q2 = 3.5 E-6 C, and r = 3 E-2 m. Substituting these values into Coulomb's law, we get:

F = (9.0 x 10^9 N m^2/C^2) * [(9.2 E-6 C) * (3.5 E-6 C)] / (3 E-2 m)^2

F = 5.3952 x 10^-3 N

The absolute value of the mutual force between the two point charges is 5.3952 x 10^-3 N.

What do you mean by resistance of conductor?state it’s unit.

Answers

Answer:

its unit is Ohm

Explanation:

Resistance means material which resist the passing current  through it and the value of resistance says how much the material is resisting the current and it temperature dependent and the unit is Ohm.

An spring has a period of 4 seconds. What is its frequency?

Answers

Answer:

2Hz

Explanation:

Hope this helps

Two stars that orbit each other are called a binary star system.
TRUE
FALSE

Answers

Answer:

TRUE

Explanation:

A binary star is a star system consisting of two stars orbiting around their common barycenter. Systems of two or more stars are called multiple star systems.

Answer:

True

Explanation:

waxing or waning moon?

Answers

Answer:

waning gibbious

Explanation:

What kind of organisms are able to convert sunlight into usable energy?

Answers

Answer:

Photosynthetic organisms

Explanation:

The electromagnetic energy of sunlight is converted to chemical energy in the chlorophyll-containing cells of photosynthetic organisms. In eukaryotic cells these reactions occur in the organelle known as the chloroplast

Hope this helps! :)

Answer:

The producers

Explanation:

What is the difference between speed and velocity ?
A) velocity describes speed with direction.
B) there is no difference.
C)Velocity describes direction with position.
D)Velocity is used in space, while speed is used on earth.

Answers

velocity describes speed with direction.

The difference between speed and velocity is that velocity describes the speed with direction. Hence, option A is correct.

What is the difference between Speed and Velocity?

Despite their similarities, speed and velocity have quite different meanings, just as distance and displacement do. Speed, which is a scalar quantity, is the "speed at which an object is moving." The rate at which an object travels a distance can be thought of as its speed.

A fast-moving object travels at a high speed and completes a significant distance in a brief period. This is in contrast to an object traveling slowly, which travels a relatively short distance in the same length of time. Zero speed refers to an object that is not moving at all.

One side velocity is vector and speed is scalar other side.

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A light ray strikes a flat, smooth, reflecting surface at an angle of 80° to the normal. What angle does
the reflected ray makes with the surface of the mirror?

Answers

Answer:

80 angle of incidence=angle of reflection

Explanation:

Answer:

80 angle of reflection!

Explanation:

Because it is a flat, smooth surface it will reflect like that of a normal plane mirror, so the angle of reflection will be equal to that of the angle of incidence!

Hope this helps you understands!

Can you change how much power you use while exercising?

Answers

Answer:Most treadmills and stationary bikes use electricity, but what if you could produce electricity while exercising? With a pedal-power generator, you can! And you can use the electricity immediately to power a television, computer, stereo or other electronics — or store it in batteries to use it later.

Explanation:

Explain what happens when a ferromagnetic material is made into a permanent magnet.

Answers

Not only do ferromagnetic materials respond strongly to magnets (the way iron is attracted to magnets), they can also be magnetized themselves—that is, they can be induced to become magnetic or made into permanent magnets. ... In an unmagnetized ferromagnetic object, domains are small and randomly oriented.

A dog whistle is designed to produce a sound with a frequency beyond that which can be heard by humans (between 20,000 Hz and 27,000 Hz). If a particular whistle produces a sound with a frequency of 25,000 Hz, what is the sound’s speed? Assume the wavelength of this sound wave in air is 0.013m. *
4 points
325 m/s
250 m/s
113 m/s
467 m/s

Answers

Answer:

Speed of the sound in air is 325 m/s

Explanation:

As we know that the frequency of the sound is given as

[tex]f = 25000 Hz[/tex]

wavelength of the sound is given as

[tex]\lambda = 0.013 m[/tex]

now we have

[tex]v = \lambda f[/tex]

so we have

[tex]v = (0.013)(25000)[/tex]

[tex]v = 325 m/s[/tex]

Final answer:

The speed of the sound produced by a dog whistle with a frequency of 25,000 Hz and a wavelength of 0.013m is 325 m/s.

Explanation:

The speed of a sound wave can be calculated using the relationship speed = frequency times wavelength. Given a whistle that produces a sound with a frequency of 25,000 Hz and a wavelength of 0.013m, we can find the speed of this sound wave in air. By multiplying the frequency by the wavelength, 25,000 Hz  imes 0.013m, we get 325 m/s. Therefore, the speed of the sound produced by the whistle is 325 m/s.

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