a merry-go-round spinning at 0.8 rad/s has a radius of 3 m. its rotational inertia is 600 kg m2. a 20 kg boy starts at the center and moves to the edge of the merry-go-round. determine the angular velocity of the merry-go-round when the boy reaches the edge.

Answers

Answer 1

When the boy approaches the edge of the merry-go-round, its angular velocity is 0.6 rad/s.

What is angular velocity?

Rotational velocity, sometimes referred to as ω vector, is a pseudovector that depicts how quickly an object's rotation angle or orientation varies over time.

According to question-

When child was at centre, her moment of inertia was 0

So, net moment of inertia at this instant ,I1= 600 Kgm^2

w1 = 0.8 rad/s

When child moves to rim, his inertia, I= m*r^2 = 20*3^2 = 180 Kg.m^2 gets added

net moment of inertia at this instant ,I2= 600 + 180 = 780 Kgm^2

w2= ?

Use conservation of angular momentum,

I1*w1 = I2*w2

600*0.8  = 780 * w2

w2=0.6 rad/s

Answer: 0.6 rad/s

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Related Questions

5.what is one thing scientists can learn from studying the paleomagnetism on the ocean floor? * 1 point the cause of the magnetic pole reversals the exact location of the next earthquake the speed of the plates moving away from each other when the next magnetic reversal will take place

Answers

We can find out more about the Earth's innards, this geodynamo, or even follow the movements of the continents over time (plate tectonics), as well as the age of rocks and where they developed.

Describe the dynamo.

A dynamo is a type of electric generator that uses a commutator to produce a conducting current. A dynamo produces an electric current or power from of the rotating of the coil by using the electromagnetic rules.

What purpose does a dynamo serve?

The dynamo's job is to convert mechanical energy into electrical energy. The dynamo's control gear adjusts the current output based on the demands placed on the electrical system and the battery's condition.

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While a car travels around a circular track at a constant speed, its?

Answers

While a car travels around a circular track at a constant speed, its speed is changing with direction.

What is acceleration of an object?

The acceleration of an object is the rate of change of velocity of the object with time.

The acceleration of an object moving in a circular track is known as centripetal acceleration.

a = v²/r

where;

v is the speed of the objectr is the radius of the track

The speed of an object is a scalar quantity without direction, but when it occurs in a circular track, the speed occurs in different direction, so acceleration for constant speed in a circular track cannot be zero.

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A football with line a pointing straight down from it, line b going straight ahead from it, and line c curving downward from it. which arrow, a, b, or c, depicts the force of gravity on the thrown football?

Answers

Line C. Gravity is a force that pulls objects towards the Earth's surface. The curved line depicts this force, so it is the arrow that depicts the force of gravity on the thrown football.

What is force?

Force is the action of one body or object on another that causes it to move, stop, or change direction. It is a vector quantity, meaning it has both magnitude and direction. Forces can be exerted on objects by other objects, or they can be self-generated, such as through the action of gravity. Examples of forces include the force of a hammer striking a nail, the force of gravity on an object, the force of air on an airplane, and the force of friction between two surfaces. Force can also be used to describe energy, such as the force of a chemical reaction, or the force of a magnetic field.

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Determine the time needed to pull the cord at B down 4 ft starting from rest when a force of 10 lb is applied to the cord. Block A weighs 20 lb. Neglect the mass of the pulleys and cords.

Answers

The time needed o pull the cord at B down 4 ft starting from rest is 0.249s .

What does a pulley's tension mean?

At its two ends, tension is the pulling force applied to the object attached to its ends by the ropes at its ends. Tension is the pulling force put on the rope (or string, cable, or chain) on one side of the point by the rope on the other.

2Ta - Wa = ma a1

40-20 = 20 a1

a1 = 32.2 ft/s^2

a2 = -4 x 32.2

    => 128.8 ft /s^2.

s=ut + 1/2 a t^2;

u=0;

4= 0+ 1/2 x 128.8 x t^2

=> time t= 0.249 sec.

What is tension, exactly?

The force imparted through a rope, string, or wire when both opposing forces strain on it is described as tension. The tension force draws energy proportionately on the objects at the ends and is applied along the entire length of the wire. Every physical object in contact with another one applies some force to that object.

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Help appreciated!!!
I need two paragraphs on the difference between day and night !!! Thank you!

Answers

Answer:

day have always sun light but night is full of dark with moon light

a 1.02 nf parallel-plate capacitor is charged to an initial potential difference of 60 v and then isolated. the dielectric material between the plates has a dielectric constant of 4.8. how much work is required to withdraw the dielectric sheet? answer in units of j.

Answers

Energy change for the system = 5.0 10 5 J - 1.0 10 5 J = 4.0 10 5 J

The system's energy changed by the work done required to remove the mica sheet is 4.0 105 J.

What systemic work is being done?

In terms of physics, work is defined as being done on a system when a force is applied and the system suffers a displacement.

What is the system's work in thermodynamics?

Actions like compression, which also include shaft work, churning, and rubbing, are performed on a thermodynamic system by objects or systems nearby. Such compression-based work is characterized here as thermodynamic work.

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you take a 2.1 kg box and pull it with a rope to slide it horizontally across the ground. you pull the rope with a 18.4 n force at an angle of 29 degrees with the horizontal. if you slide the box 1.1 m, how much work did your pulling force do on the box?

Answers

For lift a 3.00-kg weighted object, a force od 20.8 N is exerted perpendicular to the inclination. Using the work-energy theorem, one can the initial kinetic energy.

A force is what?

The meaning of the term "force" is obvious. This kind of force can be described as only a push or a pull, which is perfectly okay. A force does not "exist in" or "contain" an object. A force from the other can exert pressure on something. The concept of the a force fails to distinguish between living creatures and inanimate objects.

Where do forces come from?

The interactions of two (or more) things result in forces. Each applies an equal but opposing power to the other. The object is propelled by external forces. The object's general motion is unaffected by an interior force.

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Which of these statements about a wave's amplitude is true?
O Higher amplitude indicates higher energy.
Higher amplitude requires higher frequency.
Higher amplitude can change a mechanical wave into an electromagnetic wave.
Higher amplitude reduces a wave's reflection and refraction.

Answers

Higher amplitude indicates higher energy. these statements about a wave's amplitude is true.

what is energy ?

Energy is the ability to do work. It is a fundamental concept in physics and is defined as the ability to do work or produce heat. Energy is the capacity to cause change and can be stored in a variety of forms such as kinetic, potential, thermal, electrical, mechanical, and chemical.

Kinetic energy is the energy of motion; potential energy is the energy stored in an object due to its position; thermal energy is the energy related to the temperature of an object; electrical energy is the energy related to the movement of electrons; mechanical energy is the energy related to the motion of an object; and chemical energy is the energy stored in the bonds of atoms and molecules. Energy can be converted from one form to another, and although energy can never be created or destroyed, it can be transferred from one system to another.

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You weigh 650 N.
What would you weigh if the Earth were
five times as massive as it is and its radius
were five times its present value?
Answer in units of N.

Answers

Your new weight on Earth would be 130 N.

What is the measure of your weight?

The weight of a body is the measure of the force of gravity on the object or body.

Mathematically, the formula for the weight of a body is given as;

W = mg

where;

m is the mass of the object or bodyg is acceleration due to gravity

The formula for acceleration due to gravity is obtained by combining Newton's second law of motion and Newton's law of universal gravitation.

F = mg = GmM / R²

g = GM/R²

where;

M is mass of EarthR is radius of Earth

Assuming the the Earth were five times as massive as it is and its radius

were five times its present value, the new acceleration due to gravity is calculated as;

g' = (G x 5M ) / ( 5R )²

g' = ( 5 / 25 ) (GM/R²)

g' = 1/5 g

So the new acceleration due to gravity will reduce by 1/5, hence the new weight will equally reduce by 1/5.

new weight = 1/5 x 650 N

new weight = 130 N

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Can anyone help please

Answers

The combined resistance of the circuit is 300 ohms and the current in the circuit is 0.01A.

What do you mean by circuit?

A closed loop in which electrons can move called a circuit. Electricity is supplied to the circuit by an electricity source, such as a battery. No electrons will move till the circuit is finished, that is, it goes full circle back to the electrical source.

The combined resistance of the circuit can be calculated by adding the individual resistances in series: 100 ohms + 200 ohms = 300 ohms.

To calculate the current in the circuit, you can use Ohm's Law, which states that current (I) equals voltage (V) divided by resistance (R):

I = V / R

In this case, the voltage is 3.0 V, and the resistance is 300 ohms.

So, I = 3.0 V / 300 ohms = 0.01 A or 10mA.

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The potential energy of a box on a shelf, relative to the floor, is a measure of a. the work done putting the box on the shelf from the floor. b. the weight of the box times the distance above the floor. c. the energy the box has, because of its position above the floor. d. any of these

Answers

the energy the box has, because of its position above the floor. d. any of these

Any of these. The potential energy of a box on a shelf, relative to the floor, is the energy the box has because of its position above the floor.

What is potential energy?

Potential energy is a type of energy stored in an object due to its relative position or condition. This energy is the result of forces acting on an object, such as gravity, tension, and compression. The object has the potential to do work, as it can be converted into kinetic energy. Potential energy can be stored in a variety of forms, such as chemical, mechanical, electrical, and gravitational. The amount of potential energy an object has is determined by its position, configuration, or condition.

This energy is determined by the work done putting the box on the shelf from the floor, as well as the weight of the box times the distance above the floor.

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if the bob's mass is doubled, approximately what will the pendulum's new period be?

Answers

The pendulum's new time period is T.

A simple pendulum is made composed of a bob dangling at the end of a string that is so light that it is thought to be massless. As an illustration of a conservative oscillatory system, it is used. This idealized pendulum is made up of a point mass m fixed to one end of a massless rod of length L.

The formula for calculating a basic pendulum's

T= 2π√(L/g)

time period takes into account its length, acceleration from gravity, and time period (T). The time period is unaffected by changes in the bob's mass because this formula is mass-independent. As a result, T will continue to be the new time period. Nothing has changed.

Your question is incomplete but most probably your full question was

A simple pendulum consisting of a bob of mass m attached to a string of length L swings with a period T. If the bob's mass is doubled, approximately what will the pendulum's new period be?

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please help I'm stuck
a 1,500 kg satellite is in orbit around Mars at a distance of 2 Mars radii above the surface.Mars's mass is 6.42 × 10^23 kg, and its radius is 3.39 × 10^6 m


Calculate the magnitude of the gravitational force acting on the satellite.

Answers

The magnitude of the gravitational force acting on the satellite is  7.43 × 10⁻¹⁷ Newton.

What is force?

The definition of force in physics is: The push or pull on a massed object changes its velocity. An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude.

A spring balance can be used to calculate the Force. The Newton is the SI unit of force.

The magnitude of the gravitational force acting on the satellite = GMm/(R+ 2R)²

= (6.67 × 10⁻¹¹× 4500 × 3.39× 10⁶)/(3 × 3.39 × 10⁶)² Newton

= 7.43 × 10⁻¹⁷ Newton.

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Answer:

621 N.

Explanation:

consider two particles, particle a, and particle b, that both have the same mass, but for which the speed of particle a is twice that of the speed of particle b, . what is the ratio of the kinetic energy of the two particles, ?

Answers

The ratio of the kinetic energy of the two particles is 4:1

What is kinetic energy?

A type of energy known as kinetic energy is connected to an object's motion. It is the energy that an object possesses as a result of its motion. Kinetic energy is directly related to the mass of the object and its velocity. The kinetic energy of an object is calculated by multiplying half of the mass of the object by the square of its velocity.

The formula for kinetic energy is KE = ½ mv2, where m is the mass of the object and v is the velocity of the object. Kinetic energy is a form of energy that is transferable; it can be transferred from one object to another. This can be seen when two objects collide with each other and energy is transferred from one object to the other.

The Kinetic energy = 1/2m v²

Given Mass is same, so we get rid of mass

v₁² ∝ v₂²

(2a)² ∝ (a)²

4a² ∝ a²

4:1

Thus, the ratio of the kinetic energy of the two particles is 4:1.

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If sound a has a frequency of 450 hz and sound b has a frequency of 447 hz, how many beats will you hear when both are played together?.

Answers

If sound a has a frequency of 450 Hz and sound b has a frequency of 447 Hz, when both are played together, we hear 3 beats per second.

The frequency of a sound wave is the quantity of vibrations created by a medium particle in one second. It is given in hertz (Hz), an internationally recognised unit of measurement.

The number of times per second that a sound pressure wave repeats itself is known as frequency, often known as pitch.

The frequency of a sound wave is the quantity of vibrations created by a medium particle in one second.

The frequency of sound A is 450 Hz and frequency of sound B is 447 Hz.

If both the beats are played together, the frequency of sound wave is 450 Hz - 447 Hz = 3 Hz. Therefore, an individual will hear 3 beats per second.

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when in a raceway with not more than three current-carrying conductors, how many amperes can a 10 awg thw carry continuously?

Answers

30A current can a 10 awg thw carry continuously.

How many conductors that can transport electricity can you fit in a conduit?

The NEC mandates that you derate the conductor's capacity for any number of conductors beyond three, even though it permits up to 16 current-carrying THHN conductors in such a conduit. The derating is not substantial until there are more than nine conductors.

When more than three current-carrying conductors are installed in one raceway their ampacities must be reduced according to NEC?

When installing more than three current-carrying conductors in a single raceway, cable, or covered ditch, the ampacity of each conductor must be decreased in accordance with the relevant adjustment factor.

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If an object's mass decreases while a constant force acts on it, the acceleration A. Decreases. B. Increase C. None of them D. Will be zero E. Remain the same

Answers

the resistance a body of matter provides to a change within the speed or position when a force is applied. The change a force applies produces a change that is smaller the more mass a body has. While one constant force exerts force on an object, the acceleration falls and the mass drops.

What is referred to as mass?

A amount pf matter in such a particle a object is represented by its mass, which is denoted by the symbol m. Inside the International System (SI), the kilogram serves as the default unit of mass (kg).

What does mass signify in terms of physics?

In physics, mass is a numerical representation of inertia, which is a basic characteristic of all matter. The resistance a body in matter offers to something like a change inside its speed or location as a result of the force that is applied is what it is in essence. The change a force applies produces a change that is smaller the more mass a body has.

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A football is kicked straight up into the air; it hits the ground 5.4s later.

What was the greatest height reached by the ball? Assume it is kicked from ground level.
With what speed did it leave the kicker's foot?

Answer to two sig. fig. and include the appropriate units.
Include all math(Algerba based) and why that formula was chosen.

Answers

The greatest height reached by the ball is -9.5m and the speed with which it leaves the kicker's foot is 15.69 m/s.

What is the kinematic equation of motion and what does it represent?

The kinematic equation of motion is a mathematical equation that describes the position, velocity, and acceleration of an object in motion. It is used to calculate an object's motion in terms of its position, velocity, and acceleration over time. There are four kinematic equations of motion, which are:

v = u + at

s = ut + 1/2at^2

v^2 = u^2 + 2as

s = vt - 1/2at^2

where v is the final velocity, u is the initial velocity, a is the acceleration, t is the time and s is the displacement. These equations can be used to solve problems related to a motion under constant acceleration.

to solve for the greatest height reached by the football, and the speed with which it leaves the kicker's foot, we can use the following kinematic equations:

h = vit + 1/2a*t^2

vf^2 = vi^2 + 2ah

where h is the height, vi is the initial velocity (upwards), t is the time, a is the acceleration (downwards, due to gravity), and if is the final velocity (at the greatest height).

Given:

Time of flight, t = 5.4s

Gravity acceleration, a = -9.8 m/s^2 (downwards)

Final velocity, vf = 0 m/s (at the greatest height)

We can use the first equation to solve for the initial velocity, vi:

h = vit + 1/2at^2 (1)

0 = vi5.4 + (-4.9)(29.16)

vi = (4.929.16)/5.4 = 15.69 m/s (2)

We can use the second equation to solve for the height:

vf^2 = vi^2 + 2ah (3)

0 = 15.69^2 + 2*(-9.8)h

h = (15.69^2)/(2-9.8) = -9.5 m (4)

The greatest height reached by the ball is -9.5m and the speed with which it leaves the kicker's foot is 15.69 m/s.

We have used the kinematic equations of motion h = vit + 1/2at^2 and vf^2 = vi^2 + 2a*h for solving the problem as it is a vertical motion problem where the initial velocity is not known and the height and time are known.

It is important to note that the height is negative because the ball is kicked upwards, and the initial height is considered as zero. It reaches a certain height and comes back to the ground level. It doesn't mean that the ball went below ground level.

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wilma i. ball walks at a constant speed of 5.20 m/s along a straight line from point a to point b and then back from b to a at a constant speed of 3.15 m/s. (a) what is wilma's average speed over the entire trip?

Answers

The average speed of Wilma over the entire trip is 3.92 m/s.

What is speed?

The speed at which an object's location changes in any direction. The speed of an item, which is a scalar quantity, is the size of the change in its location over time or the size of the change in its position per unit of time.

Let us consider that distance between A and B is x, time taken by Wilma to go from point A to point B is t1 and time taken by Wilma to go from point B to A is t2.

Given,

x=5.20 t1

x=3.15 t2

t1=[tex]\frac{x}{5.20}[/tex], t2=[tex]\frac{x}{3.15}[/tex]

Average speed= v=[tex]\frac{2x}{t1+t2}[/tex]

v= [tex]\frac{2x*16.38}{3.15x+5.20x}[/tex]

v=[tex]\frac{32.76x}{8.35}[/tex]

v=3.92 m/s.

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consider the two pendula shown above. in case 1 a stick of mass m is pivoted at one end and used as a pendulum. in case 2 a point particle of mass m is attached to the center of the same stick. 1)in which case is the period of the pendulum the longest?

Answers

Inertia moment and physical pendulum are two notions needed to tackle this issue. In this case, R is the radius from rotation axis, & M is the size of point atom. when the real pendulum hits its point of inertia,

Why is a pendulum used?

Body suspended from the a fixed point to act as a pendulum that swings back and forth as a result of gravity. Because the period—the amount of time between each full oscillation—is constant, pendulums are employed to control the movement of clocks.

What does a pendulum do and why does it swing?

a system made composed of a string that hangs from an overhead support and an object just at string's bottom. Gravity and the string's combined force cause the object to swing back and forth. Bob the Pendulum

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with what tension must a rope with length 3.00 m and mass 0.145 kg be stretched for transverse waves of frequency 45.0 hz to have a wavelength of 0.770 m ? express your anwer in newtons.

Answers

The string is under 58.03 N of stress, in accordance with the supplied information.

Why do you use the word "frequency"?

The frequency of a repeated event is its number of instances per amount of time. It differs from angular frequency and is sometimes referenced to as temporal resolution for clarification. One occurrence per second, or hertz (Hz), is the unit of frequency.

λ = Wavelength = 0.770 m

f = Frequency = 45.0 Hz

m = Mass of string = 0.145 kg

L = Length of string = 3.00 m

μ = Linear density = m/L

The wave's speed is determined by

v = λf

v = 0.770 * 45.0

v= 34.65 m/s

The source of the string's tension is

T = v²μ

T = (34.65)² * 0.145/3.00

T = 58.03 N

The string is under 58.03 N of stress.

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which of the following properties can be inferred from the star’s orbital period?
0 the planet's orbital radius 0 the planet's mass 0 both the planet's orbital radius and its mass 0 neither the planet's orbital radius nor its mass

Answers

The planet's orbital radius is the properties can be inferred from the star’s orbital period. Hence option 'a' is correct.

Definition of orbital period

An orbital period is the time it takes for an astronomical object to complete an orbit around another object. In astronomy, it often refers to objects revolving around the Sun, such as planets or asteroids, as well as moons revolving around other star, exoplanets, and the double stars.

How does mass influence orbital period?

A satellite's mass does have an impact on its orbit. The orbital period & radius of the satellite are influenced by its mass. A satellite's orbital period and radius will be shorter and smaller if it has higher mass.

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A dolphin in 25℃ sea water emits a sound directed towards the bottom of the ocean 150m below. How much time passes before it hears an echo?
(Take speed of sound in seawater at 25℃ = 1530 m/s)

Answers

Dolphin in 25℃ sea water emits a sound directed towards the bottom of the ocean 150m below time after which dolphin hears an echo t=d/v=300/1530=0. 196=0. 20s

How is echo distance calculated?

If the fisherman's sonar device receives an echo in 0.02 seconds and the speed of sound in water is 1500 meters per second (back and forth) it can signal that there are fish 15 meters based on equation d = v*t = 1500 meters per second * 0.02 seconds = 30 meters.

What is the value of echo?

To display data on a screen both of these are necessary the changes are meager printed has a return type of 1 while echo does not and print can be used in equations.

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When a person blacks out, their hippocampus is unable to:
answer choices
a. record new memories
b. control muscular movement
c. keep them from making embarrassing decisions
d. regulate their blood pressure

Answers

When a person blacks out, their hippocampus is unable to record new memories.

In a region of the brain known as the hippocampus, our brain retains a short-term memory of the experience. Later, the memories are consolidated, or moved to a different region of the brain, where they will be stored for a longer period of time.

Alzheimer's disease normally starts by destroying neurons and the connections between them in the cortex and hippocampus, two regions of the brain essential in memory.

Later, it has an impact on the parts of the cerebral cortex that control language, thought, and social interaction. The majority of short-term memory is kept in the frontal lobe of the cerebral cortex.

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suppose that during the launch of a rocket from the surface of the earth, an astronaut onboard the rocket stands on a bathroom scale and measures her weight to be 5.2 times her normal weight. determine the acceleration of the rocket.

Answers

Her apparent weight W' = 22.54 m/s2 is 5.2 times what she normally weighs. to ascertain the rocket's acceleration.

What does acceleration mean in layman's terms?

The pace at which speed changes is known as acceleration.So because direction of an object's velocity is shifting even while it follows a circular course, it continues to accelerate.

Describe the acceleration formula.

According to the formula a = v/t, kinetic energy (a) is the product of the shift in velocity (v) and the time shift (t). In terms of meters per minute squared (m/s2) this enables you to calculate how quickly velocity varies.

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According to Table 1, which of the following materials is the poorest electrical conductor? O Brass O Copper O Nichrome O Aluminum

Answers

Nichrome materials is the poorest electrical conductor

The electrical conductivity of Nichrome is the least. Therefore Nichrome is the poorest electrical conductor.

An item or category of material known as a conductor allows for the flow of charge (electric current) in one or more directions. Both physics and electrical engineering utilize this phrase. Electrical conductors are usually made of metal-based materials. Electric current is a flow of positively charged holes, negatively charged electrons, and occasionally positive or negative ions.

It is not essential for one charged particle to move from the component creating the current (the current source) to those consuming it for current to flow within a closed electrical circuit (the loads).

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you are at the bank of a still river that is 100 m wide. a friend is standing on the opposite side of the river 300 m directly north of the point directly across from where you are. you plan to swim across the river then run along the opposite bank. if you can swim 3 meters per second and run 5 meters per second, then to what point should you swim to minimize your time?

Answers

To minimize your time to reach your friend, you should swim to the point directly across from your current position and then run along the opposite bank.

This is because the time you would take to swim to any other point along the opposite bank would be the same (100m / 3m/s = 33.33s) but the distance you would run would be different, and thus the time running would be different.

The time taken to run along the opposite bank is 300m / 5m/s = 60s. So the total time taken to reach your friend would be 33.33s + 60s = 93.33s.

This is the fastest way to reach your friend since you are taking the shortest path which is directly across the river and running along the opposite bank.

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Consider the flask diagramed below with the following pressures 492 torr H2 and 0.376 atm for N2. What are the final partial pressures of H2 and N2 after the stopcock between the 2 flask is opened? (Assume the final volume is 3.00L). What is the total pressure in torr?

Answers

After the stopcock is opened the final pressure in the flask is 172.92 torr, the final partial pressure of H2 is 492 torr, and the final partial pressure of N2 is 0.376 atm.

The final partial pressures of H2 and N2 after the stopcock between the two flasks is opened are given by the Ideal Gas Law (PV=nRT).

The Ideal Gas Law states that the product of the pressure, volume, and molar amount of a gas is equal to the product of the universal gas constant, R, and the temperature.

At constant temperature, the product of pressure and volume is directly proportional to the number of moles of gas, n. Therefore, when the stopcock is opened, the number of moles of H2 and N2 in the final flask is the sum of the number of moles in the original flasks.

The number of moles of H2 in the first flask is given by n1 = (P1V1) / (RT) = (492 torr x 2.00 L) / (0.0821 atm x L / mol x 273K) = 0.0428 mol

The number of moles of N2 in the second flask is given by n2 = (P2V2) / (RT) = (0.376 atm x 1.00 L) / (0.0821 atm x L / mol x 273K) = 0.0141 mol

The final number of moles of H2 and N2 is n = n1 + n2 = 0.0428 mol + 0.0141 mol = 0.0569 mol

After the stopcock is opened, the final pressure is equal to the product of the number of moles, n, and the ideal gas constant, R, and the temperature divided by the final volume Vf,

Pfinal = nRT / Vf = 0.0569 mol * 0.0821 atm x L / mol x 273K / 3.00 L = 0.0227 atm

In torr, the final pressure is Pfinal760 = 0.0227760 =172.92 torr.

The final partial pressure of H2 is 492 torr and the final partial pressure of N2 is 0.376 atm.

In conclusion, after the stopcock is opened the final pressure in the flask is 172.92 torr, the final partial pressure of H2 is 492 torr, and the final partial pressure of N2 is 0.376 atm.

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a model ship is built to a scale of 1 cm: 4 m. the length of the model is 40 cm. what is the length of the actual ship? a. 160 m c. 40 m b. 50 m d. 15

Answers

The length of actual ship, in accordance with the scale provided, is 160 meters, as stated in the question.

What is the length of length?

Using measuring instruments like a yardstick, measuring tape, etc., one may determine the size of any item. A ruler can be used to estimate, for instance, how many centimeters a pencil is long. A foot scale can be utilized to gauge the height of each student in a class.

How big and thick are they?

The distance between an object's sides is its length. The greatest dimension is this one. The width of an entity is the gap between its two sides. The smallest dimension is this one.

Length of scale = 4m

Length of model = 40cm

Length of actual ship = 400cm*40cm

= 160m

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during any process, the net electric charge of an isolated system does not change.T/F

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Yes ,the net electric charge of an isolated system does not change.

A quality of matter known as a charge causes it to produce and experience electrical and magnetic phenomena. The fundamental tenet of charge conservation is that the system's overall charge is conserved.

As we all know, a system is a collection of things, and the interactions between charges and energy and momentum are comparable. However, this conservation rule makes more sense because an object's net charge depends on the quantity of electrons and protons present. Protons and electrons cannot suddenly arrive or vanish, and the overall charge must remain constant. This explains why a body always contains the same number of protons and electrons.

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