Lesson 18, Physical Science
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Q1. Describe how the skater's kinetic and potential energy change as the skater descends. Explain what happens to the total energy (potential energy + kinetic energy) in terms of the Law of Conservation of Energy.
Change the skater with the "Choose Skater" button.






Q2. Describe any changes to the bar graphs you see when you change skaters. Is the Law of Conservation of Energy still obeyed?

Reset the half-pipe and click on the "Show Grid" check box. Grab the track (drag the track with a right-click) and set the bottom of the track at "zero" height.
Select the default, 75 kg, PhET skater and set him at 5.0 meters above the zero and allow him to skate.
Q3. How much potential energy does the skater have at 5.0 meters? How much kinetic energy does the skater have at 0.0 meters?

Q4. If a 20.0 kg skater started his skate at 10 meters height (on Earth):
How much potential energy would the skater have at the start of skating?
How much kinetic energy would the skater have at the start of skating?
How much potential energy would the skater have at zero height?
How much kinetic energy would the skater have at zero height?


Create this skate path:


Start the skater on the left side and observe. Then answer the following question:
Q5. Does the skater have enough energy to make it all the way to the right side? Explain why or why not.

If the skater starts on the left on the following path:


Q6. Answer the parts of this question based upon the above skater path. If the skater starts at point "A":

Where does the skater have the maximum potential energy?
Where does the skater have the minimum potential energy?
Where does the skater have the minimum kinetic energy?
Where does the skater have the maximum kinetic energy?
At which two points would the skater have about the same kinetic energy?

Q7. Based upon the equation for potential energy, how do you expect the potential energy to change when the gravity is lower than it is on Earth (for example, gravity on the moon is 1.6 m/s2 )?

Use the option boxes to move the skater to Jupiter, where acceleration due to gravity is 26 m/s2.

Q8. Describe any differences you see in potential and kinetic energy between the Earth and Jupiter.
Use the option boxes to move the skater to the moon where the acceleration from gravity is 1.6 m/s2.

Q9. Describe any differences you see in potential and kinetic energy between the Earth and the moon.

Q10. Does this agree with the prediction you made in Q7?

Q11. How high must a 20 kg skater start at to have a kinetic energy of 360 joules at a height of 0 meters?

Q12. What is the total energy of the 60.0 kg skater before she starts her ride, 12 meters above the ground?

Q13. If you throw a 2.0 kg basketball straight up in the air, at what height will the basketball have 160 J of potential energy?

Q14. Describe what happens to the bar graphs when you change the amount of friction. Is the Law of Conservation of Energy still obeyed?

Answers

Answer 1

The kinetic energy of the skater would increase while his potential energy would decrease as he descends from top to bottom.

What is the law of conservation of energy?

The law of conservation of energy states that the energy possessed by a physical body can neither be created nor destroyed, but it can only be converted (transformed) from one form of energy to another.

Based on the law of conservation of energy, the total energy (potential energy + kinetic energy) would always remain constant because it is conserved.

The potential energy of this skater at a height of 5.0 meters is given by:

PE = mgh

PE = 75 × 9.8 × 5.0

PE = 3,675 Joules.

Also, the kinetic energy of this skater at a height of 0.0 meters would be equal to zero assuming it is at rest.

In conclusion, the potential energy possessed by a physical body is highly dependent on its height while kinetic energy depends only on motion, regardless of height.

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Related Questions

If a supernova remnant core has a mass greater than 2.8 solar masses, then what force will be able to stop gravity from collapsing the core

Answers

If a supernova remnant core has a mass greater than 2.8 solar masses, then NO force will be able to stop gravity from collapsing the core. (Option C)

What is a Supernova Remnant Core?

A supernova Remnant Core is an astronomic structure that is remaining after the explosion of a star in a supernova has occurred.

A supernova is simply the explosion of a star. When the mass of the sun is used as a unit of mass, it is called solar mass. This unit is given as:

1.989 × 1030 kg.

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How fast does an X-ray travel through space?

Answers

Answer:

As with other forms of electromagnetic radiation, X-rays can be described as coupled waves of electric and magnetic fields traveling at the speed of light (about 300,000 km, or 186,000 miles, per second).

Explanation:

hope it's help

Examine table b then read the statement and choose the best responses. as the resistance increased under 25 v, the current . compared to calculated currents, experimental currents proved to be . currents varied proportionally according to resistance: 10 ω of resistance produced a current of a, while 100 ω of resistance produced a current of a.

Answers

The best responses to the statements are:

a. the current decreased.

b. The Same.

c. 2.5.

d. 0.25.

What is resistance?

In an electrical circuit, resistance is a measure of the resistance to current flow.

The Greek letter omega is used to represent resistance in ohms.

The resistance is inversely proportional to the current.

Thus, the correct options are a. the current decreased.

b. The Same.

c. 2.5.

d. 0.25.

Learn more about resistance

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Answer:

Ye ye answer be below:

Explanation:

~Hope this helps! :)

What would be the weight of a 59.1-kg astronaut on a planet twice as massive as Earth and having twice Earth's radius

Answers

Answer:

29.55 kg

Explanation:

force gravity =  G m1 m2 / (r^2)    now change the mass 1 and the r

                     =   G 2m1 m2 / ( 2r)^2

                      = 2/4  G m1 m2 / (r^2)

the weight will be 2/4   or  1/2 the original

                   

2.
What is the coefficient of friction between a block of wood that weighs 12.2
N and requires a force of 2 N to pull along at a constant velocity?
Want
Equation and solve
Given

Answers

Answer:

0.163934

Explanation:

Kinetic friction can be calculated by coefficient of kinetic friction * normal force. In this question the Mg is = to normal force (12.2 N). Therefore using sum of forces equations we get 2N = coefficient of kinetic friction * 12.2N. divide 2 by 12.2 to get the coefficient.

The fact that large elliptical galaxies are much more common in the central regions of galaxy clusters than elsewhere in the universe suggests that __________.

Answers

The fact that large elliptical galaxies are more common in central galaxy clusters suggests that collisions play a role in the formation of these galaxies.

What is galaxy formation?

Galaxy formation is a physical phenomenon where molecular clouds of dust concentrate and thus first generate stars.

Galaxy formation is a process that can be associated with collisions, at least for the formation of elliptical galaxies.

Collisions are a relatively frequent process in clusters (groups) of galaxies that are formed by crashes with other galaxies.

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What is the current in a bulb if the resistance of its filament is 2 ohms and it is connected across a 6-volt battery

Answers

Answer:

3 amps

Explanation:

V = IR

6 = I * 2

I = 3 amps

At the end stages of their lives, most stars will become: (A) Planetary nebulae (B) White dwarfs (C) Neutron stars (D) Black holes (E) Brown dwarfs (F) Both A and B

Answers

A star will become a white dwarf when its nuclear fuel is finished because of no more emission of heat and light.

What happen when a star comes to its end stage?

When the end of the nuclear burning stage of a star comes, such a star expels most of its outer material creating a planetary nebula until only the hot core remains. When this core settles down, it will become a young white dwarf.

So we can conclude that a star will become a white dwarf when its nuclear fuel is finished because of no more emission of heat and light.

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help me friends thank you

Answers

Explanation:

Sound travels faster In solids than liquid than gases

Speed of sound is highest in solids, and higher in liquids and slower in gases. Example- Sound travels in air with the speed of 330 m/s, In steel it travels with a speed of 5920 m/s, In liquids it travels with a speed of 5000 m/s.

Hope this helps you

Earth has a definite orbit within the solar system. This orbit is mainly a result of the.

Answers

The orbit is mainly a result of the mass of the sun

Earth has a definite orbit within the solar system whose the orbit is mainly a result of the mass of the Sun.

What is an orbit?

An orbit is defined as the regular, repeating path that one object in space takes around another while an object in an orbit is called a satellite which may be natural, such as the Earth or the Moon. According to the height of satellites from the earth, these orbit are classified as

High Earth orbitMedium Earth orbitLow Earth orbit.

Most of the weather and some communications satellites will tend to have a high Earth orbit which is farthest away from the surface. The main difference between orbit and orbitals is that the former is defined as a fixed path of electron revolutions, whereas the latter is defined as an uncertain region with a high probability of finding an electron.

Therefore, the Earth has a definite orbit within the solar system whose the orbit is mainly a result of the mass of the Sun.

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Seeds are often found on which part of a gymnosperm?

branch
leaf
cone
stem

Answers

Answer: Cone



Explanation: gymnosperm, any vascular plant that reproduces by means of an exposed seed—unlike angiosperms, or flowering plants, whose seeds are enclosed by mature fruits. The seeds of many gymnosperms (literally, “n4ked seeds”) are borne in cones and are not visible until maturity.

Which element is the main component of
steel and the most widely used of all metals

Answers

Answer:

iron

Explanation:

Iron

IRON is the main ingredient in various forms of iron and steel, but the various types of metals contain other elements as well.


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what is the kinetic energy of a ball with a mass of 7 kg rolling at 10m/s

Answers

Answer:

350 j

Explanation:

K.E. = 1/2 m v^2

      = 1/2  7 * 10 ^2 = 350 j

The electronic circuitry in an ultrasonic receiver measures the transit time and calculates the distance from the receiver to the surface of material.
a. True
b. False

Answers

Answer: False

Explanation:

What is best to say about a runner who is running at a constant velocity? a. their acceleration is positive. b. their acceleration is negative. c. their acceleration is zero. d. their acceleration cannot be determined. please select the best answer from the choices provided. a b c d

Answers

Answer:

C

Explanation:

because acceleration is the rate of change of velocity.

Answer:

C

Explanation:

bcuz i said its c cuzzo

What is the force exerted on a charge of 2.5 µc moving perpendicular through a magnetic field of 3.0 × 102 t with a velocity of 5.0 × 103 m/s?

Answers

3.75 N of force will be applied to a charge. Because of the electric field, a force operated on the charge.

What is the definition of electricity?

The electric force between two charges is proportional to their product and inversely proportional to the square of their distance.

In this question, the provided data is:

F is the applied force,

q denotes the charge, which is equal to 2.5 C.

v is the velocity = 5.0 10³ m/s

B is the magnetic field = 3.0 10² T

The following is the force on a moving charge:

[tex]\rm F = q V B sin \alpha \\\\ F = 2.5 \times 10^{-6} \times 3 \times 10^{-2} \times 5 \times 10^3 \\\\ F=3.75 \ N[/tex]

As a result, 3.75 N will be exerted on a charge.

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Answer:

3.8 N

Explanation:

got it right on edge

downhill water movement is responsible for

Answers

Current from water being moved down

The hertzsprung-russell diagram, for classifying stars based on the relationship between their brightness, temperature and color, is provided below. which type of star would our sun be? question 3 options: white dwarf red giant supergiants main sequence

Answers

The Sun is a main-sequence star which is also known as G2V.

How sun is formed?

It can also known as yellow dwarf because of its yellow colour. It was formed about 4.6 billion years ago from the gravitational collapse of matter of a large molecular cloud.

So we can conclude that the Sun is a main-sequence star which is also known as G2V.

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Voltage ___ commonly occur when large loads, such as motors, are turned off and voltage on the power line increases above the normal voltage fluctuation (+10%) for a short period of time.

Answers

Answer:

Voltage SPIKES

Explanation:

PLEASE HELP: Do you think there could be another period of time when so many brilliant discoveries are made in such a span of time? Why or Why not? Make sure to research other times to be able to defend your point.

Answers

Answer:

"Emerging technologies, such as industrial robots, artificial intelligence, and machine learning, are advancing at a rapid pace. These developments can improve the speed, quality, and cost of goods and services, but they also displace large numbers of workers."

Explanation:

This means in the furture we will have many technologies doing our day to day life things.

Based on the information in the table, choose whether the magnetic field is weak or strong
Current Number of Coils Magnetic Field Strength 0. 2 A Many _______________
5. 0 A Many _______________
5. 0 A Few _______________
put weak or strong in the blanks

Answers

Answer:

Explanation:

Field characteristics

The strength of the field at the Earth's surface ranges from less than 30 microteslas (0.3 gauss) in an area including most of South America and South Africa to over 60 microteslas (0.6 gauss) around the magnetic poles in northern Canada and south of Australia, and in part of Siberia.

a car is 500m behind a truck. if the speed of the car is 80km/h and speed of the truck is 60km/h how long will it take for the car to reach the truck

Answers

Answer:90 seconds Work is shown in photo attached.

If a typical house requires 235 W of electric power on average, how much deuterium fuel would have to be used in a year to supply these electrical needs

Answers

For a typical house requires 235 W of electric power on average,  deuterium fuel used is mathematically given as

E=79206.75

How much deuterium fuel would have to be used in a year to supply these electrical needs?

Generally, the mass and time statement  of deuterium is mathematically given as

Mass deuterium=2.014g

time =3.15*107s= 1year

In conclusion, energy

E=235*3.15*107s

E=79206.75

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A baseball is flying through the
air at 40 m/s east. This
measurement represents the
ball's
A. speed
B. velocity
C inertia
D. force

Answers

Answer:

[tex] \huge\boxed {\sf Velocity}[/tex]

Explanation:

The unit of measurement is m/s hence it can not inertia or force because the unit of intertia and force are kg m² & kg⋅m/s² respectively, hence Option C and Option D can not be the right answer.

To understand the final answer one must know the difference between velocity and speed.

Velocity is a vector quantity which is direction specific. It's the displacement per unit time, the displacement is an vector quantity.

[tex] \sf \: Velocity = \frac{Displacement }{Time} [/tex]

Velocity can be positive negative or zero!

Speed is a scalar quantity which tells the distance covered in unit time. since it's a scalar it have magnitude only, not direction.

[tex] \sf \: Speed = \frac{Distance }{Time} [/tex]

Speed is always either zero or positive.

In the question it tells the baseball is flying through the air at 40 m/s east,

if it was only 40m/s with no direction then it would be speed. but the east is indicating the direction and velocity includes the direction hence the given measurement represents Velocity.

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The potential difference across a conducior is 6.0V. What is the energy dissipaled when a current of 5.0 A flows for 1 minute?

Answers

Answer:

1/2 watt hr    

Explanation:

watts = V I   =   6 * 5 = 30 watts   for 1/60 hr

30 watts * 1/60 hr = 1/2  watt hr

How is the rpm (revolutions per minute) of an actual four-stroke gasoline engine related to the number of thermodynamic cycles

Answers

Answer:

The gasoline engine would have:

intake stroke

compression stroke

power stroke

exhaust stroke        

This is a total of 2 revolutions and 4 thermodynamic cycles

So the number of thermodynamic cycles is twice the rpm of the engine

A solenoid 1.85 m long and 2.20 cm in diameter carries a current of 21.0 A. The magnetic field inside the solenoid is 25.0 mT. Find the length of the wire forming the solenoid.

Answers

Answer:

A wire carrying a 30.0-A current passes between the poles of a strong magnet that is perpendicular to its field and experiences a 2.16-N force on the 4.00 cm of wire in the field. What is the average field strength?

Explanation:

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Order the objects by typical relative size. Smallest first to largest last.

Universe, star, galaxy, moon, planet

Please answer asap!

Answers

Answer:

moon planet star galaxy universe

As a general rule, what will create greater drag on an object?

Answers

Answer:

the faster you move the greater, the drag force acting against the object.

Explanation:

Hope this helps! Please let me know if you need more help or think my answer is incorrect. Brainliest would be MUCH appreciated. Also remember to rate answers to help other students, While leaving thanks to answers that help you. Have a great day!

The faster you move the more force will drag

A particle's position (in meters) is given by the equation s(t) = 5x sin(2x), on the interval [-1, 4] minutes. What is its instantaneous velocity at t = 0?

Answers

You almost certainly meant to say the particle's position is a function of time t, not some other variable x (or vice versa) so that

s(t) = 5t sin(2t)

Differentiate s(t) to get the instantaneous velocity of the particle at time t. By the product rule,

s'(t) = 5 sin(2t) + 10t cos(2t)

Evaluate the derivative at t = 0 :

s'(0) = 0

The instantaneous velocity at t = 0 is 0 m/s.

To find the instantaneous velocity at t = 0, we need to take the derivative of the position function s(t) with respect to time (t). The derivative of s(t) gives us the velocity function v(t), which represents the particle's velocity at any given time t.

Given the position function s(t) = 5t * sin(2t), we find the velocity function v(t) by taking the derivative:

v(t) = d/dt (5t * sin(2t)).

To find the velocity at t = 0, we substitute t = 0 into the velocity function:

v(0) = 5 * 0 * sin(2 * 0) = 0.

Therefore, the instantaneous velocity of the particle at t = 0 is 0 m/s. This means that at t = 0, the particle is momentarily at rest, and its velocity is neither increasing nor decreasing at that specific moment.

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