a pilot flying low and slow drops a weight; it takes 2.4 s to hit the ground, during which it travels a horizontal distance of 200 m . now the pilot does a run at the same height but twice the speed. how much time does it take the weight to hit the ground?

Answers

Answer 1

(1) The time does pilot take the weight to hit the ground = 2.4 s

(2) The pilot travel before land = 400 m

Because fall time is proportional to fall height and acceleration due to gravity (g) is constant,

t₁ = t₂  

s₁ = initial distance

s₂ = final distance

t₁ = initial time

t₂ = final time

Hence, the time does it take the weight to hit the ground = 2.4 s

The initial distance (s₁) = 200 m, and the pilot does a run at the same height but twice the speed.

So, the  pilot travel before land:

s₂ = 2 x s₁

= 2 x 200 m

= 400 m

The question is incomplete, it should be:

There are competitions in which pilots fly small planes low over the ground and drop weights, trying to hit a target. A pilot flying low and slow drops a weight; it takes 2.4 s to hit the ground, during which it travels a horizontal distance of 200 m. Now the pilot does a run at the same height but twice the speed. How much time does it take the weight to hit the ground? How far does it travel before it lands?

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Related Questions

4. This is the total distance moved during a time period. Like traveling 60 miles in 1 hour. *
(1 Point)
Distance
O Displacement
O Acceleration
O Speed

Answers

Speed is a measure of how far an object travels in a given amount of time. In this example, the speed is 60 miles per hour.

What is Speed?

Speed is the rate at which an object moves in a given amount of time. It is an important measure of the rate of motion, and can be expressed in many different units including meters per second, miles per hour, kilometers per hour, and more. Speed is the magnitude component of velocity, which is the vector quantity that describes both the speed and direction of an object. Speed is a scalar quantity, meaning that it has magnitude or size but no direction associated with it. In physics, speed is typically measured with the use of a speedometer or other instrument to detect the rate at which an object is moving.

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A boy exerts a 45 N horizontal force as he pulls a 62 N sled across a cement sidewalk at constant speed. What is the coefficient of kinetic friction between the sidewalk and the metal sled runners? Ignore air resistance

Answers

The ratio of the friction force to the normal force that a body travelling over a dry, uneven surface experiences is known as the kinetic friction coefficient (k).

How much snow does the sled encounter during its motion?The sled's runners experience kinetic frictional force from the snow, which causes the sled to slow down and ultimately come to a stop. Kinetic friction has a 0.050 coefficient.The resistive friction force (Fr) divided by the normal or perpendicular force (N) pushing the objects together yields the coefficient of friction (fr), a numerical value. The formula fr = Fr/N is used to represent it.The ratio of the friction force to the normal force that a body travelling over a dry, uneven surface experiences is known as the kinetic friction coefficient (k). A pretty clever approach described by can be used to determine k with a fair amount of accuracy.      

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A group of people are pushing a stalled car with a mass of 1100 kg. If they push with a net force of 350 Newtons for 10 seconds, what is the car’s velocity?

Answers

The car would move with a velocity of 3.182 m/s if they applied a net force of 350 Newtons for 10 seconds.

What is meant by net force?

The net force is the total of all the forces operating on an object, according to its definition. Mass can be accelerated by net force. Whether a body is at rest or in motion, another force is at work on it. When a system has a lot of forces acting on it, the phrase "net force" is employed.

The net force, sometimes referred to as the resultant force, is the total force acting concurrently on an item. For instance, a rope being pulled from the right by a force of five newtons and from the left by a force of three newtons will experience a net force of two newtons from the right.

A bunch of individuals are pulling an automobile that weighs 1100 kg and is stuck in traffic. The car would move with a velocity of 3.182 m/s if they applied a net force of 350 Newtons for 10 seconds.

Therefore, the car’s velocity would be 3.182 m/s.

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In a certain lab experiment, a spring gun was placed on a table and fired steel ball horizontally outward. A student determines that the ball starts 1.0 m above the floor and travels 2.7 m before striking the floor.

(a) Determine the time that the ball is in the air.

(b) Determine the initial velocity of the ball.

Show your work.

Answers

a) There are 0.23 seconds in which the ball is in the air.

b) 11.74 meters per second is the ball's initial horizontal speed.

What exactly is speed?

A body's velocity is defined as the rate at which its displacement alters over time. Having both magnitude and direction, velocity is a vector quantity.

A body's velocity is defined as the rate at which its displacement alters over time.

The point is 1.0 meters tall vertically.

The ball rolled across a horizontal distance of 2.7 meters.

(H/2g) is the length of time the ball has been in the air.

= √(1.0/2×9.8)

is 0.23 seconds

b) The ball travels at an initial horizontal velocity of = 2.7 m/0.23 s.

= 11.74 m/s.

a) There are 0.23 seconds in which the ball is in the air.

b) 11.74 meters per second is the ball's initial horizontal speed.

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at what angle above the horizontal should the ball be thrown so that the runner will catch it just before it hits the ground?

Answers

The angle at which ball should be thrown so that runner will catch it just before it hits the ground depends on several factors, such as the distance between the thrower and runner, speed of the runner, speed of the ball, and the height of runner's catch.

What angle above horizontal the ball should be thrown so that runner will catch it just before it hits the ground?

To maximize the chances of the runner catching the ball, it should be thrown at an angle that is slightly above horizontal and that allows ball to travel the greatest distance possible while still giving the runner enough time to reach ball's landing point.

To determine the angle at which the ball should be thrown, following information is needed:

Distance between the thrower and the runner, Speed of the runner, Speed of the ball and Height of the runner's catch

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David wrote Five $10 Checks and two check for 100 each

Answers

200 checks total hdhahhirje

physical pendulum in the form of a planar object moves in simple harmonic motion with a frequency of 0.450 1--lz. the pendulum has a mass of 2.20 kg, and the pivot is located 0.350 m from the center of mass. determine the moment of inertia of the pendulum about the pivot point.

Answers

The moment of inertia of the pendulum about the pivot point is [tex]0.385 kg*m^2[/tex]

A physical pendulum in the form of a planar object moves in simple harmonic motion when it oscillates about a pivot point, and the frequency of oscillation is determined by the moment of inertia of the pendulum about the pivot point.

The frequency of oscillation of the pendulum is given as 0.450 Hz. The moment of inertia of the pendulum I can be calculated using the equation:

[tex]I = m * L^2[/tex]

where m is the mass of the pendulum and L is the distance from the pivot point to the center of mass.

In this case, the mass of the pendulum is 2.20 kg and the distance from the pivot point to the center of mass is 0.350 m, so the moment of inertia is:

[tex]I = 2.20 kg * (0.350 m)^2 = 0.385 kg*m^2[/tex]

So, the moment of inertia of the pendulum about the pivot point is [tex]0.385 kg*m^2[/tex]

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A 3.0-cm object is placed 8.0 cm in front of a mirror. The virtual image is 4.0 cm further from the mirror when the mirror is concave than when it is planar.
. Determine the focal length of the concave mirror. (a) 6.0 cm (c) 24 cm (e) 96 cm (b) 12 cm (d) 48 cm
. Determine the image height in the concave mirror. (a) 0.5 (c) 2.0 (e) 4.5 (b) 1.5 (d) 3.0

Answers

The focal length and image height of the concave mirror is 24cm and 4.5cm respectively. So, the correct options are (C) and (E) respectively.

What is Concave mirror?

A concave mirror is defined as a reflective surface that is curved inward and away from the light source to reflect light inward at a focal point. Convex mirror is the image formed by a concave mirror shows different types of image depending on the distance between the object and the mirror.

The focal length of the mirror is :

[tex]1/f = 1/d_o + 1/d_i[/tex]

where, [tex]d_o[/tex] and [tex]d_i[/tex] are distances of object and image respectively

For normal mirror[tex]d_o = d_i = 8[/tex]

For concave mirror [tex]d_o = 8; d_i = 12[/tex]

1/f = 1/8 - 1/12 (following sign conventions)

f = 24cm

object height = 3cm

Height of the image is 3*12/8 = 4.5cm

Thus, the focal length and image height of the concave mirror is 24cm and 4.5cm respectively. So, the correct options are (C) and (E) respectively.

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darcel runs the simulation for the large version of each object. what can he say in general about the energies of the objects in the simulation as they roll down the incline? (select all that apply.)

Answers

The total energy of the system remains constant and is equal to the gravitational potential energy of the object at the top of the incline.

What is gravitational potential energy?

Gravitational potential energy is the energy stored in an object due to its position in a gravitational field. This energy is determined by the objects mass, height and the strength of the gravitational field. Gravitational potential energy increases as the object moves higher from the ground and its mass increases. Gravitational potential energy can be converted into kinetic energy when an object falls or moves down a slope.

The total kinetic energy of a rolling object is the sum of the rotational kinetic energy about the center of mass and the translational kinetic energy of the center of mass.

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Complete Question:
Darcel runs the simulation for the large version of each object. What can he say in general about the energies of the objects in the simulation as they roll down the incline? (Select all that apply.)

"The total energy of the system remains constant and is equal to the gravitational potential energy of the object at the top of the incline.""The total kinetic energy of a rolling object is the sum of the rotational kinetic energy about the center of mass and the translational kinetic energy of the center of mass.""The translational kinetic energy is always greater than the rotational kinetic energy.""The potential energy of the system remains constant, and is equal to the total energy."

which types of geometrical symmetry does a sphere have?
A. Rotational symmetry
B. Reflection symmetry
C. Translational symmetry

Answers

The sphere has two geometrical symmetries, they are

1. Rotational symmetry

2. Reflection symmetry

What is Rotational Symmetry?

Rotational symmetry: An object's ability to maintain the same shape when rotated about its own axis is known as rotational symmetry. When turned 180 degrees or at certain angles, either clockwise or counterclockwise, many geometrical forms appear to be symmetrical. Examples include the square, circle, hexagon, and more.

What is Reflection Symmetry?

Reflection symmetry: Symmetry with regard to reflections is known as reflection symmetry. Mirror or line symmetry are other names for reflection symmetry. If a figure is divided into two halves, one of the halves must be the mirror image of the other, according to this rule.

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Geometrical symmetry states that a sphere has reflection symmetry. The orthogonal group O is the name of the symmetry group of the sphere, which includes reflections (3).

Which symmetry in geometry does a spherical possess? Geometrical symmetry states that a sphere has reflection symmetry. The orthogonal group O is the name of the symmetry group of the sphere, which includes reflections (3). The special orthogonal group SO is the symmetry group that only has rotations (3).Further investigation reveals that two electrons spinning in the same direction at the same time cannot be positioned in the same location due to the two-fold rotational property of spherical symmetry.Spherical geometry is the three-dimensional, spherical counterpart of Euclidean or planar geometry and is described as "the study of figures on the surface of a sphere" (MathWorld).In physics, a body is considered to have spherical symmetry if only its density varies with distance from the center.

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an electric field of constant magnitude 'e' is tangent everywhere to a curved surface of area 'a'. what is the electric flux through the curved surface?

Answers

Option B, EA is the surface's electric flux. Due to the fact that the electric flux is defined as the electric field times the surface area it traverses.

The electric flux can be calculated as EA because the surface area is known and the electric field strength is constant.

Electric flux is a measurement of the strength of an electric field flowing through a specific surface. It is calculated by dividing the electric field's strength by the surface area through which it passes.

If the surface area is known and the electric field magnitude is constant in this situation, finding the electric flux can be done by simply multiplying these two numbers.

EA is the mathematical abbreviation for this, where A denotes the surface area and E is the electric field.

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The question is -

(A) An electric field of constant magnitude is tangent everywhere to a curved surface of area . What is the electric flux through the curved surface?

a) Zero

b) EA

c) –EA

d) 2EA

e) Not enough information

physical science worksheet conservation of energy #1
(use g = 10 m/sr for atl catculfiions)

Answers

physical science worksheet conservation of energy based on this formula. ME=GPE + KE.

What is meant by energy ?

Energy is referred to by scientists as the capacity for work.People have figured out how to transform energy from one form to another and then use it to accomplish tasks, making modern civilization possible.The ability to exert a force that causes an item to move is what is meant by the definition of energy as the "power to accomplish work."Even though the definition is unclear, the meaning is clear: energy is simply the force that moves things.Energy can take on a variety of shapes. Examples of these include: electrical energy, sound energy, chemical energy, nuclear or atomic energy, light energy, heat energy, mechanical energy, gravitational energy, and so on.Each form has the ability to shift or transform into the others.

1m/sr = GPE = 85

            KE= 7J

            ME=155

10m/sr  GPE = 15J

            KE= 05J

            ME=155

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A subatomic particle that carries a negative charge.
is the smallest particle made up of three subatomic particles, Neutrons, Protons, and Electrons.

Answers

FALSE: An atomic-scale object with a negative charge. It is consisting of three subatomic particles, Neutrons, Protons, and Electrons, and is the smallest particle known is a "incorrect" statement.

Define the term subatomic particle?

Any of the multiple self-contained units like substance or energy that make up the building blocks of all matter are considered subatomic particles, also known as elementary particles.

They include the heavier constituents of the small but extremely dense atom's nucleus, the positive charge protons and also the electrically neutral neutrons, as well as the electrons, those negatively charged, nearly massless particles that still make up the majority of the atom's size. The only observed subatomic particles, however, are not these fundamental atomic building blocks. For instance, quarks are the building blocks of protons and neutrons, and the electron is just one of several basic particles in this group, which also comprises the muon as well as the neutrino.

Thus, an atomic-scale object with a negative charge. It is consisting of three subatomic particles, Neutrons, Protons, and Electrons, and is the smallest particle known is a "incorrect" statement.

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The complete question is-

A subatomic particle that carries a negative charge. It is the smallest particle made up of three subatomic particles, Neutrons, Protons, and Electrons. (TRUE/ FALSE)

What is the net work done on a 0.430kg football as, starting from rest, it is thrown at
12.7m/s?
a. Wnet = 0
b. Wnet = 34.7J
c. Wnet = 69.4J
d. Wnet = 2.73J

Answers

The work that is done by the ball is 2.73J.

What is the net force?

We have to note that the net force has to do with the force that we can obtain from the Newton's law. We have to note that from the use of the Newton's law that we are going to have that;

F = ma

F = force

m = mass

a = acceleration

Assuming the time to be 1s

a = 12.7 - 0/1

a = 12.7m/s^2

Then the work that is done is obtained by the use of the formula stated above as follows;

F = 0.430kg * 12.7m/s^2

F =  2.73J

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if a test charge of magnitude twice as large as the original test charge were placed at point a, how would the force it feels compare to the force felt by the original test charge when it was placed at point a?

Answers

The force felt by the larger test charge would be twice as large as the force felt by the original test charge.

This is because the force felt by a test charge in an electric field is directly proportional to the magnitude of the test charge. The electric field is a vector field and the force experienced by a test charge is given by the product of the charge of the test particle and the electric field at that point.

So, when the magnitude of the test charge is doubled, the force experienced is also doubled. Therefore, if a test charge of magnitude twice as large as the original test charge were placed at point a, it would feel twice the force that the original test charge felt when it was placed at that same point.

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a baseball bat collides with a 0.145 kg baseball moving with an initial velocity of 35 m/s to the left. if the collision lasts 0.005 seconds and the final velocity of the ball is 25 m/s to the right, what was the force of the bat on the ball?

Answers

According to Newton's third law of motion, the ball imparts an equal and opposite force on the bat. i.e 290 N

Given that,

The mass of the ball = .145 kg

initial velocity of 35 m/s

collision lasts 0.005 seconds

final velocity of the ball is 25 m/s

We have momentum = mass x velocity.

a) Initial momentum = 0.145*35 = 5.075 kg-m/s

b) Final momentum = 0.145*25 = 3.625 kg-m/s

c) Change in momentum = 5.075 - 3.625 = 1.45 kg-m/s

Impulse = Force x time = change in momentum

F = change in momentum/time = 1.45/0.005 = 290 N

d) By Newton's third law of motion, the ball imparts an

     equal and opposite force on the bat.

    therefore, Force = 290 N.

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four point charges lie on the vertices of a square with side length . two adjacent vertices have charge while, the other two have charge . what is the m

Answers

the Magnitude of the electric field at the center of the square has four-point charges lying on the vertices of a square with side length. two adjacent vertices have charge while the other two have charge will be q1/([tex]\sqrt{2\\}[/tex]Πε[[tex]x^{2}[/tex]+[tex]1^{2}[/tex][tex]]^{3/2}[/tex].

Lets all the 4 charges have the charge of q1 (two with the same charge and the other two with another charge) so E1 (Electric field) will be

E1 =2Ecosθ = 2kq/[[tex]x^{2}+1^{2}[/tex]]^3/2 along AC; E2 = 2Ecosθ = 2kq/[[tex]x^{2}+1^{2}[/tex]]^3/2  along DB

so E1⊥E2. The net field will be adding both the electric field

E0 = [tex]\sqrt{E1^{2} +E2^{2} }[/tex] = 2[tex]\sqrt{2}[/tex]kql/[[tex]x^{2}+1^{2}[/tex]]^3/2

=>  q1/([tex]\sqrt{2\\}[/tex]Πε[[tex]x^{2}+1^{2}[/tex]]^3/2

Which is the resultant of the electric field of all four charges on the vertexes of the square.

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an empty truck with a mass of 2500 kg has an engine that will accelerate at a rate of 1.5 m/s what will happen if the truck is carrying an additional weight of 1500kg

Answers

The acceleration of the truck when an additional weight of 1500kg is added to an empty truck of mass 2500kg is 0.9375 m/s².

What is Acceleration?

Acceleration is the rate of change of the velocity of an object with respect to the time interval. Acceleration is a vector quantity. The orientation of an object's acceleration is given through the orientation of the net force which is acting up on that object.

Force = Mass × acceleration

Empty truck Mass = 2500 kg

Acceleration = 1.5 m/s²

Force = 2500 × 1.5

Force = 3750 N

Additional load of 1500 kg

Total Mass = (2500 + 1500)kg = 4000 kg

3750 = 4000 × a

a = 3750 /4000

a = 0.9375 m/s²

Acceleration when the truck has an additional load of 1500 kg is 0.9375 m/s².

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susan replaces all the old incandescent bulbs in her home with led bulbs. by the time she was done, she had replaced 45 lightbulbs with more energy-efficient varieties. how much should she expect to save in energy bills each year?

Answers

Susan should expect to save approximately $3,822.5 in energy bills each year by replacing her incandescent bulbs with LED bulbs.

LED bulbs are much more energy-efficient than incandescent bulbs. They use significantly less power and last much longer.

One of the ways to estimate energy savings is to calculate the difference in power consumption between an incandescent bulb and a LED bulb of the same brightness.

For example, if an incandescent bulb uses 60 watts and a LED bulb uses 10 watts to produce the same amount of light, the LED bulb will use 83% less energy than the incandescent bulb.

If we assume that each LED bulb last for an average of 25,000 hours and the incandescent last for an average of 1,200 hours and the cost of electricity is $0.13 per kWh, the savings will be:

(45 bulbs * (60-10)W/1000) * 25000hrs/yr * $0.13/kWh = $3,822.5

So, Susan should expect to save approximately $3,822.5 in energy bills each year by replacing her incandescent bulbs with LED bulbs.

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what type of gaussian surface is best to determine the electric field from a large (ignore edge effects) sheet of charge?

Answers

The easiest way to extract the electric field from a big sheet of charge is to use a cylindrical gaussian surface. Charges and their arrangements, such as in capacitors and battery cells, produce electric fields.

The easiest way to extract the electric field from a big sheet of charge is to use a cylindrical Gaussian surface. Calculating the flux through the surface is simple since the cylinder-shaped surface encloses the sheet of charge and the electric field lines are parallel to the axis of the cylinder. The symmetry of the cylindrical surface also makes it simple to calculate the electric field. If the cylindrical Gaussian surface is selected to be sufficiently big in comparison to the size of the sheet, the edge effects can be disregarded. Charges and their arrangements, such as in capacitors and battery cells, produce electric fields.

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question a particle with a small electric charge is moved in an electric field by an external force. when the particle is moved along an electric potential isoline, in what direction, if any, is the force exerted by the electric field on the particle?

Answers

A particle with a small electric charge is moved in an electric field by an external force. When the particle is moved along an electric potential isoline, in what direction, if any, The force exerted by Perpendicular to the direction of the particle's motion.

What Is Electric Charge

Electric Charge is the property of subatomic particles that causes it to experience a force when placed in an electric and magnetic field.”

Electric charges are of two types: Positive and Negative, commonly carried by charge carriers protons and electrons.

Examples of the types of charges are subatomic particles or the particles of matter:

Protons are positively charged.Electrons are negatively charged.Neutrons have zero charge.

Is Electric Charge a Vector Quantity

Electric charge is a scalar quantity. Apart from having a magnitude and direction, a quantity to be termed a vector should also obey the laws of vector addition, such as triangle law of vector addition and parallelogram law of vector addition; only then the quantity is said to be a vector quantity. When two currents meet at a junction, in the case of an electric current, the resultant current of these will be an algebraic sum and not the vector sum. Therefore, an electric current is a scalar quantity, although it possesses magnitude and direction.

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A sample of an ideal gas expands to twice its initial volume. In which type of expansion does the gas perform the least work?


A) A free expansion, in which the gas expands suddenly into a vacuum

B) A slow, gradual expansion in which heat is added to the gas

C) A rapid isothermal compression of the gas to half its initial volume, followed by a slow expansion in which heat is added

Answers

A free expansion, in which the gas expands suddenly into a vacuum, is the type of expansion in which the gas performs the least work. So correct option is A).

What do you mean by ideal gas?

An ideal gas is a theoretical gas that is considered to have several idealized characteristics. These include:

No intermolecular forces: The particles in an ideal gas are considered to occupy a large volume relative to the size of the individual particles, and they are not considered to interact with one another through intermolecular forces.Completely random motion: The particles in an ideal gas are considered to move randomly in any direction, with no preferential direction of motion.Point-like particles: The particles in an ideal gas are considered to be point-like, with no size or structure.Constant volume: The volume of an ideal gas is considered to be constant and does not change with pressure or temperature.

These idealized conditions are used to make predictions about the behavior of real gases in various physical systems, and the concept of an ideal gas is a useful tool for understanding and modeling the behavior of gases.

During a free expansion, no external forces are acting on the gas, and no work is done by or on the gas. This is because work is defined as the transfer of energy from one system to another, and in a free expansion, the gas is isolated from its surroundings, so no energy transfer takes place. In contrast, during a slow, gradual expansion in which heat is added to the gas, or a rapid isothermal compression of the gas followed by a slow expansion in which heat is added, external forces are acting on the gas, and work is done on the gas. In these cases, the gas performs more work because energy is transferred from the surroundings to the gas.

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A candy maker offers Child and Adult bags of jelly beans with different color mixes. The company claims that the Child mix has 30% red jelly beans, while the Adult mix contains 15% red jelly beans. Assume that the candy maker's claim is true. Suppose we take a random sample of 50 jelly beans from the Child mix and a separate random sample of 100 jelly beans from the Adult mix. Let (pc - pa) and be the sample proportions of red jelly beans from the Child and Adult mixes, respectively.
(a) What is the shape of the sampling distribution of ?Why?
(b) Find the mean of the sampling distribution. Show your work.
(c) Find the standard deviation of the sampling distribution. Show your work.

Answers

(a) The shape of the sampling distribution of (pc - pa) is normal ,(b) The mean of the sampling distribution of (pc - pa) is 15% and The standard deviation of the sampling distribution 0.051.

(a) The shape of the sampling distribution of (pc - pa) is normal. This is because the sample proportions of red jelly beans from the Child and Adult mixes are generated from independent random samples of jelly beans, and the Central Limit Theorem states that the sampling distribution of a sample proportion will be approximately normal when the sample size is large.

(b) The mean of the sampling distribution of (pc - pa) is 15%. This is because the expected proportion of red jelly beans in the Child mix is 30%, while the expected proportion of red jelly beans in the Adult mix is 15%. Thus, the difference in the expected proportions is 15%.

(c) The standard deviation of the sampling distribution of (pc - pa) can be calculated as follows:

Standard Deviation = sqrt((pchild*(1-pchild))/nchild + (padult*(1-padult))/nadult)

= sqrt((0.30*(1-0.30))/50 + (0.15*(1-0.15))/100)

= sqrt(0.021 + 0.0045)

= 0.051

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HELPPPP ASPPP PLEASE THANK YOU

Answers

The real world examples of a transverse wave is: Sound waves, Vibrations on guitar strings, Clapping.

What is transverse wave?

A transverse wave is a wave whose oscillations are perpendicular to the wave's advance direction. In contrast, a longitudinal wave moves in the direction of its oscillations. A transverse wave is an example of one. Transverse wave motion occurs when all points on a wave oscillate along paths that are perpendicular to the wave's advance direction. A progressive wave is a transverse wave. A transverse wave's propagation direction is always perpendicular to its vibration direction. A vacuum can only carry a few types of transverse waves. A transverse wave is something like an electromagnetic wave or a light wave.

Here,

Sound waves, vibrations on guitar strings, and clapping are all real-world examples of transverse waves.

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in the absence of air resistance, what launch angle of a projectile results in the longest range?

Answers

In the absence of air resistance, the launch angle of the projectile results in the longest range is found to be 45°.

What is the launch angle?

The launch angle may be defined as the vertical angle at which the ball leaves a player's bat after being struck. Average Launch Angle (aLA) is calculated by dividing the sum of all Launch Angles by all Batted Ball Events.

The angle between an input ray and the fiber axis. If the end face of the fiber is perpendicular to the fiber axis, the launch angle is equal to the angle of incidence. The angle of a projectile's initial velocity is definitely calculated when measured from the horizontal direction. These angles are typically 90° or less.

Therefore, in the absence of air resistance, the launch angle of the projectile results in the longest range is found to be 45°.

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A system consists of two positive point charges, q1 and q2>q1. The total charge of the system is 70. 0 μC , and each charge experiences electrostatic force of magnitude 82. 0 N when the separation between them is 0. 270 m. Find q1 and q2

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When each charge experiences electrostatic force of magnitude 82.0 N and the separation between them is 0.270 m. Then q1 is 3.5 x 10^-9 C

and q2 is 6.65 x 10^-9 C.

The electrostatic force between two charges is given by Coulomb's law:

F = k x q1 x q2 / r^2

where F is the electrostatic force, q1 and q2 are the charges, r is the distance between the charges, and k is Coulomb's constant (8.99 x 10^9 N x m^2/C^2).

We know that:

F = k x q1 x q2 / r^2 = 82.0 N

r = 0.270 m

And the total charge of the system is 70.0 μC = 70.0 x 10^-6 C

We can use these equations to find the values of q1 and q2. First, we can use the equation for the electrostatic force to find the product of the two charges:

q1 x q2 = F x r^2 / k = 82.0 x (0.270)^2 / (8.99 x 10^9)

Next, we can use the equation for the total charge to find the sum of the two charges:

q1 + q2 = 70.0 x 10^-6

Now we have two equations and two unknowns. We can use these equations to find q1 and q2.

Solving for q1 and q2, we get:

q1 = 3.5 x 10^-9 C

q2 = 6.65 x 10^-9 C

q1 and q2 are the charges on the point charges.

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four identical charges q are placed at the corners of a square of side a. find the magnitude of the electric field at one charge produced by the other three charges

Answers

The magnitude formula is able to test the stability of the induced current F put on a charge [q 1] as an effect of another charge [q 2: [F = frac(k,q,r)] The Coulomb's ratio (k) or the distance (r) between two are present here.

How do you define magnitude?

huge or highly significant: An average man would have given up due of the task's size. earth science The brilliance of a galaxy as seen from Earth is also measured by magnitude.

Does size equal worth?

A quantity's measuring or absolute value is referred to as its magnitude. A positive actual number serves as the symbol for a magnitude. A magnitude can be defined as a quantity's size in simple terms.

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Suppose astronomers built a 100-meter telescope. How much greater would its light-collecting area be than that of the 10-meter Keck telescope

Answers

The light collecting area of the 100-m telescope will be 100 times the light collecting area of the 10-meter keck telescope.

Given the diameter of first telescope (d1) = 100m

The diameter of Keck telescope (d2) is = 10m

We know that the light collecting area of a telescope is represented as:

A = πD^2/4 where D is the diameter f telescope.

A1/A2  =  πd1^2/πd2^2

A1/A2 = 100 x 100 / 10 x 10 such that A1/A2 = 100

A1 = 100A2

It represents that the light collecting area of the 100-m telescope will be 100 times the light collecting area of the 10-meter keck telescope.

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define speed in your own words. why does a car speedometer only have positive values, even though you can move in reverse?

Answers

Speed is defined as the rate of change of distance over time. It has the dimension of distance x time. The SI unit of speed is a combination of the base unit of distance and the base unit of time. The SI unit for speed is meters per second.

Speed is the speed at which an object's position changes, measured in meters per second. For example, if an object starts at the origin and moves 3 meters in 3 seconds, its speed is 1 meter/second. A car's speedometer only has positive numbers, but it can run backwards. This is because it measures speed based on the distance the car travels, not the direction the car is heading.

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by which element are gamma rays produced

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Answer: Some elements like potassium, uranium, and thorium are naturally radioactive and give off gamma rays as they decay, but all elements can be excited by collisions with cosmic rays to produce gamma rays. The HEND and Neutron Spectrometers on GRS directly detect scattered neutrons, and the Gamma Sensor detects the gamma rays.

Explanation: searching

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