1. This spiral wishing well is a great way to demonstrate a gravity field. Explain how the well is a good representation of a gravitational field AND how it is an incorrect representation of a gravitational field.


2. Imagine a proton (mass = 1.67 x 10-27 kg) and an electron (mass = 9.11 x10-31 kg) are moving up this page at the same speed, side by side. At some point in their travels, they run into an electric field that is pointed to the right. What happens to the paths of the proton and electron when they enter this field? Will the proton be moving faster or the electron?





3. Halley’s Comet will be visible from the Earth again in 2062. This comet is famous for it’s beautiful tail and easy visibility from Earth. Explain using Einstein’s explanation of Gravity why the comet only appears every 76 years.



4.Other than the examples listed in the previous questions, where else have you come across the topics we have discussed in class this week? Be specific!

Answers

Answer 1

Explanation:

A spiral wishing well can be a good representation of a gravitational field in the sense that it demonstrates how objects are attracted to a central point, which is similar to how objects are attracted to a massive object in a gravitational field. The well also shows how the force of gravity increases as objects get closer to the center, which is consistent with the inverse square law of gravity. However, the well is an incorrect representation of a gravitational field in the sense that it is not a three-dimensional representation of the field, but rather a two-dimensional representation. Additionally, the well does not take into account the fact that gravity is a force that acts between all objects with mass, not just those that are close to a central point.

When the proton and electron enter the electric field that is pointed to the right, the proton will be deflected to the right and the electron will be deflected to the left. This is because the proton has a positive charge and the electron has a negative charge, and opposite charges are attracted to each other. The proton and electron will move at the same speed because the electric field does not affect their speed, only their direction of motion.

According to Einstein's theory of general relativity, the orbit of Halley's Comet is determined by the curvature of spacetime caused by the mass of the sun and other celestial bodies. The comet follows an elliptical orbit around the sun, with the sun at one of the foci of the ellipse. The shape of the orbit is determined by the mass of the sun, the distance of the comet from the sun, and the velocity of the comet.

The period of the orbit of Halley's Comet is 76 years, which means that the comet takes 76 years to complete one orbit around the sun. This period is determined by the distance of the comet from the sun, the mass of the sun, and the velocity of the comet. The further the comet is from the sun, the longer the period of its orbit. As the comet approaches the sun, its ices start to vaporize and create a bright tail that can be seen from Earth.

In summary, Einstein's theory of general relativity explains that Halley's Comet only appears every 76 years because of the shape of its orbit around the sun, which is determined by the mass of the sun and the distance of the comet from the sun, as well as the velocity of the comet. The orbit is an elliptical one and the distance from the sun causes the vaporization of ices which make the tail visible from Earth.


Related Questions

from the following statements about mechanical waves, identify those that are true for transverse mechanical waves only, those that are true for longitudinal mechanical waves only, and those that are true for both types of waves.

Answers

The particles in a medium vibrate perpendicular to the wave's path when it passes through it, indicating that the wave is just a transverse mechanical wave.

The only type of wave that can pass through a medium is a longitudinal mechanical wave, which causes the particles within the medium to vibrate in a direction parallel to the wave's path.

The speed at which a wave moves across a medium depends on an inertial characteristic of that medium. This is true for both transverse and longitudinal mechanical waves.

A transverse wave is a form of wave in which the wave's velocity is always perpendicular to the particle positions in the medium. To see an example, move one end of a Slinky (whose other end is fixed) to the left and right of the Slinky as opposed to back and forth. Waves on the water's surface, for instance.

In physics, a mechanical wave is a wave that incorporates matter oscillation and transmits energy across a medium. Despite the fact that waves can travel long distances, the transmission medium, or the substance, has a limited range. Example - Sound waves  

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A 4.0 kg mass is released from rest at the top of a frictionless ramp 2.0 m above ground. It slides down the ramp to a level, horizontal portion of frictionless track and then collides with a stationary 8.0 kg mass. Immediately after the collision, the larger mass has a velocity v_l = +3.5 m/s (i.e., heading to the right)

Answers

The velocity of the smaller mass just after the collision is B) +0.7 m/s.

To calculate the velocity of the smaller mass after the collision:

Use the law of conservation of momentum, which states that the total momentum before the collision is equal to the total momentum after the collision: (m1 * v1) + (m2 * v2) = (m1 * v1') + (m2 * v2')

Substitute in the known values: (4.0 kg * 0 m/s) + (8.0 kg * 0 m/s) = (4.0 kg * v4) + (8.0 kg * (vg + 3.5 m/s))

Solve for the velocity of the smaller mass (v4): v4 = (8.0 kg * (vg + 3.5 m/s)) / 4.0 kg

Substitute in the value for the velocity of the larger mass (vg) which is not given in the question: v4 = (8.0 kg * (0 m/s + 3.5 m/s)) / 4.0 kg

Solve for the velocity of the smaller mass (v4): v4 = (8.0 kg * 3.5 m/s) / 4.0 kg

Simplify the calculation: v4 = 2.8 m/s / 4.0 kg

Divide the final value by the mass of the smaller object: v4 = 0.7 m/s

So the velocity of the smaller mass just after the collision is 0.7 m/s.

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a steel pad supporting heavy machinery rests on four short, hollow, cast iron piers (see figure). the ultimate strength of the cast iron in compression is 50 ksi. the outer diameter of the piers is d 5 4.5 in., and the wall thickness is t 5 0.40 in. using a factor of safety of 3.5 with respect to the ultimate strength, determine the total load p that can be supported by the pad.

Answers

Respect to the ultimate strength, determine the total load p=294k that can be supported by the pad.

What is meant by strength?

Strength is frequently described as "the maximal force that a muscle or set of muscles can exert during a single contraction."Positive character characteristics or abilities are referred to as strengths. Knowledge, characteristics, abilities, and talents are examples of strengths. In contrast, weaknesses are shortcomings.Your strengths should typically be abilities that are reinforced by experience. If communication is one of your strengths, for instance, think back to a time when you used it to accomplish a task or solve a problem.Self-motivation, listening skills, and the ability to do tasks correctly and swiftly are some of my strongest traits.

σ U =50ksi

n=3.5

σ allow = nσ /U = 50ksi/3.5 =14.29ksi

d=4.5in.

t=0.4in.

[tex]d_{0}[/tex] =d−2t=3.7in.

A= π/4 [tex](d^{2} -d^{2} _{0})[/tex] = π/4[[tex](4.5in.)^{2} (3.7in.) ^{2}[/tex] ]=5.152[tex]in.^{2}[/tex]

P 1 = allowable load on one pier

P 1 =σ allowA =(14.29ksi)(5.152[tex]in.^{2}[/tex])=73.62k

Total load P = [tex]4P_{1}[/tex]=294k

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The density of a fluid is given by the empirical equation rho = 70.5exp(8.7 times 10^-7P) A. Where p is density (lbm/ft^3) and P is pressure (lbf/in^2). (1 N=0.2250 Ibf; I g=0.002205 Ibm; 1 ft=12in=30.48cm) ? B. What are the units of 70.5 and 8.27 times 10^7? C. Calculate the density in g/cm^3 for a pressure of 9.0 times 10^6 N/m^2. Derive a formula for p (g/cm) as a function of P (N/m^2).

Answers

This equation can be used to calculate the density in g/cm^3 for any given pressure in N/m^2.

What is density?

Density is a measure of mass per unit of volume, usually expressed in kilograms per cubic meter. It is an important physical property of matter and is used to compare the relative densities of different substances. Density is also used to calculate the buoyancy of objects in a fluid. The density of a substance is affected by temperature and pressure. In general, substances with higher densities tend to be more compact and therefore more dense.

A. The units of 70.5 and 8.7 times 10^7 are lbm/ft^3 and lbf/in^2 respectively.

B. To calculate the density in g/cm^3, we must convert the pressure from N/m^2 to lbf/in^2 by multiplying it by 0.2250. Thus, we have 9.0 times 10^6 N/m^2 * 0.2250 = 2.025 times 10^7 lbf/in^2. Plugging this into the equation, we have rho = 70.5exp(8.7 times 10^-7 * 2.025 times 10^7) = 1176.6 g/cm^3.

To derive a formula for p (g/cm) as a function of P (N/m^2), we can simply rearrange the equation to solve for p. Thus, we have p = 70.5exp(8.7 times 10^-7 * P) / 0.002205. This equation can be used to calculate the density in g/cm^3 for any given pressure in N/m^2.

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A constant net force, F net is applied to a cart with mass,m, causing an acceleration,a. If the mass of the cart is doubled, but the net force remains the same, what will the acceleration of the car be?

Answers

The acceleration of the car will be halved. Option A is the correct answer.

What is acceleration?

This refers to the rate of change of velocity. It is the speed that is changing but not at all times. When an object moves in a circular path at a constant speed, it is still accelerating, because the direction of its velocity is changing.

Solving for the acceleration:

The acceleration of the car will be halved. This is because the acceleration of an object is directly proportional to the net force applied to it and inversely proportional to its mass. Therefore, if the mass of the cart is doubled and the net force remains the same, the acceleration will be halved:

(a = Fnet/m).

The equation is :

F=ma

If we keep force constant and mass doubles, acceleration will be halved.

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The acceleration of a train that increases its velocity from 10.0 m/s to 15.0 m/s in 2.90 seconds is _____ m/s^2.

Answers

In 2.90 seconds, a train can accelerate from 10.0 m/s to 15.0 m/s, and this train accelerates at a rate of 1.94 ms2/m/s2.

For what reason does a train's acceleration diminish?

At the start of the trip, the train picks up speed as it accelerates. In the middle of the journey, it remains the same (where there is no acceleration). When the train comes to a stop, it gets smaller as it slows down.

Distance traveled by the train as a percentage of time is its speed. The time it takes for two trains to cross each other is determined by the length of the trains, say lengths a and b, and the speeds of the trains, x and y, respectively.

In 2.90 seconds, a train can accelerate from 10.0 m/s to 15.0 m/s, and this train accelerates at a rate of 1.94 ms2/m/s2.          

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sort these stellar objects by their peak wavelength. not all the objects are on the interactive, so determine the trend first, then sort the objects. stellar objects (4 items) (drag and drop into the appropriate area) the sun, a g star with t

Answers

The stellar objects the sun a g star is with T= 5500k

Distance between the equivalent positions of two successive waves is known as the wavelength. Two points or particles that are in the same phase and have completed identical percentages of their periodic motion are referred to as "corresponding points." Wavelength is typically measured from crest to crest or from trough to trough in transverse waves (waves with points vibrating at right angles to the direction of their advance); from compression to compression or from rarefaction to rarefaction in longitudinal waves (waves with points vibrating in the same direction as their advance). The Greek symbol lambda (λ) is typically used to represent a wave's length. Wavelength is defined as the product of a wave train's frequency (f) and speed (v) in a medium.

The wavelength of the temperature inversely related to each other. Higher the temperature, lower will be its wavelength.

1. Highest (reddest)        a brown dwarf with T=100k

___________________________________________

2.                                      a K star with T=4400k

___________________________________________

3.                                      the sun, a G star with T=5500k

___________________________________________

4.(lowest/bluest)              an F star with T=7000k

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A 21 g ball of clay traveling east at 3.2 m/s collides with a 32 g ball of clay traveling north at 2.1 m/s. What are the speed and the direction of the resulting 53 g ball of clay?

Answers

The resulting ball of clay after the collision is moving with a speed of 2.53 m/s in a direction between east and north.

To determine the speed and direction of the resulting 53 g ball of clay after the collision, we need to use the conservation of momentum principle.  

Let us call the initial momentum of the first clay ball (21 g) "p1", and the initial momentum of the second clay ball (32 g) "p2". The final momentum of the resulting clay ball (53 g) will be "p3".

The initial momentum of the first clay ball can be calculated as p1 = m1 * v1 = 21 g * 3.2 m/s = 67.2 gm/s (going east)

The initial momentum of the second clay ball can be calculated as

p2 = m2 * v2 = 32 g * 2.1 m/s = 67.2 gm/s (going north)

So, the total initial momentum is p1 + p2 = 67.2 gm/s + 67.2 gm/s = 134.4 g*m/s

After the collision, the total momentum of the resulting clay ball is 134.4 gm/s, and its mass is 53 g. So, we can use the following equation to find its final velocity: p3 = m3 * v3 = 134.4 gm/s = 53 g * v3

So, the final velocity of the resulting clay ball is v3 = 134.4 g*m/s / 53 g = 2.53 m/s.

To find the direction of the resulting clay ball, we can use the vector addition of the initial velocities of both clay balls. The direction of the final velocity vector would be the angle formed between the sum of the vectors and the x-axis.

So, the final velocity vector of resulting clay ball is a vector sum of the initial velocities of both clay balls, and its direction would be somewhere between the east and north direction.

Therefore, the resulting ball of clay after the collision is moving with a speed of 2.53 m/s in a direction between east and north.

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A simple machine increases the distance that a force needs to be applied from 3 meters to 27 meters, and
the work done is 216 Joules. How much force is applied? (1 point)
a.8N
b.72 N
c.9N
d.81 N

Answers

the input force by the output force 2. by adjusting the force's necessary application direction 3. 3N4. W=△E5.

What is the most accurate explanation of direction?

Direction can refer to the way something moves, the way you must go to get somewhere, the way something is beginning to take shape, or the direction you are facing. When you turn right rather than left, that is an illustration of direction.

What exactly is a feeling of purpose in life?

Your direction perception refers to your capacity to generally understand where you are or which course to go, even if you're in a strange environment. He quickly got lost due to his weak sense of direction. If you claim someone

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a river flows with a uniform velocity v. a person in a motorboat travels 1.52 km upstream, at which time a log is seen floating by. the person continues to travel upstream for 91 min at the same speed and then returns downstream to the starting point, where the same log is seen again.

Answers

The velocity of the log relative to the river is 3.04 km/182 min = 0.017 km/min.

What is velocity?

Velocity is a vector quantity that describes the rate and direction of the movement of an object or particle. It is composed of two components: speed and direction.

The speed of the river is constant and is denoted by v. Therefore, the velocity of the motorboat is v + u, where u is the speed of the motorboat relative to the river.
When the person travels 1.52 km upstream, the total distance covered by the motorboat is 1.52 km x (v + u). This is also the distance covered by the log during the same period of time.
The time taken by the person to travel upstream is 91 min. Therefore, the total time taken by the motorboat to cover the round trip (upstream + downstream) is 182 min.
The total distance covered by the motorboat during the round trip is 3.04 km x (v + u). Since the same log is seen again, the distance covered by the log during the round trip is also 3.04 km.
Therefore, the velocity of the log relative to the river is 3.04 km/182 min = 0.017 km/min.

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two Casa distance to kilometer apart on a straight line if they are moving towards each other at 10 km per hour in 30 km per hour respectively how long it does say take to reach at their passing point​

Answers

The four different forms of speed are as follows: uniform speed. variable rate Typical rate.

What is the meaning of relative speed?The speed of one moving body in relation to another is known as relative speed. When two bodies are moving in the same direction, their difference is used to calculate their relative speed. The relative speed, however, is determined by summing the speeds of the two bodies when they are going in the opposite direction.Speed is a talent. It takes a lot of technical expertise to constantly use one's body's capabilities to its fullest capacity.Velocity, as opposed to speed, refers to the pace and direction of an object's movement as it moves down a path. In other words, whereas velocity is a vector, speed is a scalar quantity.

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A space probe is launched from Earth headed for deep space. At a distance of 10,000 miles from Earth's center, the gravitational force on it is 264 lb. What is the size of the force when it is at each of the following distances from Earth's center?
(a) 20,000 miles
lb

(b) 30,000 miles
lb

(c) 100,000 miles
lb

Answers

The size of the force when it is at 20,000 miles distances from Earth's center is  66 lb.

The size of the force when it is at 30,000 miles  distances from Earth's center is  29.33 lb.

The size of the force when it is at 100,000 miles  distances from Earth's center is 2.64 lb.

What is gravitational force?

The force of attraction between any two bodies is directly proportional to the product of their masses and inversely proportional to the square of the distance between them, according to Newton's universal law of gravitation.

(a) the size of the force when it is at 20,000 miles  distances from Earth's center = (264)/(2²) lb = 66 lb.

(b)  the size of the force when it is at 20,000 miles  distances from Earth's center = (264)/(3²) lb = 29.33 lb.

(c)  the size of the force when it is at 100,000 miles  distances from Earth's center = (264)/(10²) lb = 2.64 lb.

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does cloud spins faster due to conservation of angular momentum. or gravitational potential energy is converted to kinetic energy.happen firsty

Answers

The rules of energy conservation and angular momentum conservation ensure that any rotating, collapsing cloud will finish up as a spinning disk.

What is momentum?

Momentum is defined in Newtonian physics as the product of an object's mass and velocity. It is a vector quantity with magnitude and direction. Momentum is a measure of mass in motion: how much mass is involved in how much movement. It is commonly denoted by the sign p. Momentum is clearly defined as the measure of an object's kinetic energy. In layman's terms, momentum is the product of mass and velocity. Complete response: Simply said, momentum is concerned with the quantity of motion. It can also be referred to as the preserved quantity.

Here,

The laws of energy and angular momentum conservation guarantee that any rotating, collapsing cloud will end up as a spinning disk.

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Two large parallel copper plates are 5.0 cm apart and have auniform electric field between them as depicted in Fig 22-48. Anelectron is released from the negative plate at the same time thata proton is released from the positive plate. Neglect the force ofthe particles on each other and find their distance from thepositive plate when they pass each other.
I made five attempts to include the digaram but to no avail.
The positive plate is on the left.
The negative plate is on the right.
The proton is released at the positive plate.
The electron is released at the negative plate.
The direction of the electric field is from the positive plate tothe negative plate.

Answers

Since the electric field is uniform, the proton and the electron will experience the same acceleration.

What is electric field?

An electric field is a physical field generated by electric charges, such as the electrons in a conductor. It is an invisible force that can attract or repel other charged objects in its vicinity.

This means that their velocities will increase at the same rate. Therefore, when they pass each other, their distances from the positive plate will be the same.

The distance from the positive plate to the proton and electron when they pass each other is 5.0 cm. This is the same distance as the distance between the two plates.

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A baseball is hit almost straight up into the air with a speed of 22 m/s. Estimate (a) how high it goes, and (b) how long it is in the air. (c) What factors make this an estimate ?

Answers

(a) The ball goes up to the height of 31.89 m. (b) The ball stays for 5.1 s in the air. (c) The acceleration due to gravity and wind resistance can affect the estimation.

What is Acceleration due to gravity?

Acceleration owing to gravity is the term used to describe the rate at which a body's velocity changes as a result of the earth's gravitational pull. In general, it is assumed that the acceleration caused by gravity is in the downward direction.

The acceleration caused by gravity has been calculated as, however as it changes from location to location, it may have an impact on the estimation.

You may have thought that the wind has no impact, but it can actually generate drag and even cause the ball to shift course.

Therefore, (a) The ball goes up to the height of 31.89 m. (b) The ball stays for 5.1 s in the air. (c) The acceleration due to gravity and wind resistance can affect the estimation.

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Help me pleaseee!!
Would appreciate ^^
**BRAINLIST, thanks and
points***
With steps pls so I can
understand

The battery has an internal resistance of 2.50
4.1 Show that the resistance of the 6.2 V, 4.5 W lamp at its working potential difference
(pd) is about 9.

Look at photo for more info
4.2 The terminal pd across the battery is 6.2 V.
Calculate the emf of the battery.

Answers

4.1) Resistance of the 6.2 V, 4.5 W lamp at its working potential difference (pd) is about 9.   4.2) The emf of the battery is 6.2V.

What is potential difference?

The energy used between two points in a circuit is called potential difference, therefore it is measured between two points either side of component.

4.1)To calculate the resistance of the lamp;

resistance = pd / current

pd is the potential difference across the circuit and current is the flow of electricity through circuit.

Given, potential difference across the lamp is 6.2 V and the power of the lamp is 4.5 W,

So, Power = pd x current

4.5W = 6.2V x current

current = 4.5W / 6.2V

Hence, current = 0.726 A

resistance = pd / current

resistance = 6.2 V / 0.726 A

resistance = 8.56 ohm, approximately 9 ohm

4.2 The emf of battery is the maximum potential difference of the battery, when no current is flowing through circuit. In this case, emf of the battery is the same as terminal pd across the battery which is 6.2V. So the emf of the battery is 6.2V.

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Hellooooooooooopooooooo

Answers

Answer:

Hi ??? what is your question

Tension force has units of ________. Check all that apply.

Answers

Answer:

Newton (N)

Explanation:

A pair of closely spaced parallel conducting plates, charged with equal and opposite electric charges, produces a uniform electric field in the region between them. In designing a cutting‑edge device that will revolutionize the electronics industry, Leticia sets up such a pair of plates separated by a distance 0.999 mm, then charges them so that the direction of the electric field in their interior region points from plate A to plate B. Her idea requires that electrons, when released from rest at one of the plates, reach the other plate at the speed of 1.71% of the speed of light. The speed of light is =3.00×108 m/s. 2 questions:

At which plate should the electrons be released?
B
either A or B
A
cannot be determined

What is the strength of the electric field?

Answers

The electrons should be released from plate A because  electric field lines goes from plate A to plate B.

What are cathode and anode?

The negative or reducing electrode that releases electrons to the external circuit and oxidizes during an electrochemical reaction is known as the anode.

The Cathode is the positive or oxidizing electrode, which receives electrons from the external circuit and reduces them during the electrochemical reaction.

As the direction of the electric field in their interior region points from plate A to plate B,  electric field lines goes from plate A to plate B and the electron  should be released from plate A.

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The capacitance of an empty capacitor is 12 µF. The capacitor is then connected to a 12 V battery and charged up. With the capacitor connected to the battery, a slab of dielectric material is inserted between the plates. As a result, 2.5 x 10-5 C of additional charged flow from one plate, through the battery, and on to the plate. What is the dielectric constant, &, of the material?​

Answers

The dielectric constant is 2.11

What does the term "capacitance" mean?

Capacitance is the ability of a component or circuit to assemble and store energy in the form of an electrical charge. It consists of two electrical wires that are a specific distance apart from one another. The void between the conductors can be filled with vacuum or a dielectric, an insulating material. The capacity of a capacitor to hold charges is referred to as its capacitance.

Dielectric materials serve as insulation or have very poor electrical conductivity. Dielectrics, unlike metals, practically do not conduct current when exposed to an electric field because they lack loosely bound, or free, electrons that could wander through the substance. Instead, there is electrical polarisation.

The capacitance of the empty capacitor ,C1 = 12µF = 12*10^-6F

Battery voltage= 12 V

charge, Q2= 2.5 x 10-5 C

Initial charge ,Q1  = C1V1

                            = 12* 12*10^-6

                            = 224 *10^-6C

Qk  = Q1 + Q2

Qk = (2.24 + 2.5)*10^-5 = 4.74*10^-5

Ck = KC1

Only the charges differ; the voltage (V) across both capacitors stays constant.

Qk/V =  K Q1/V

K = Qk/Q1

K = 4.74 *10^-5/2.24*10^-5

K = 2.11

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Marsha is pushing down and to the right on a 12 kg box at an angle of 30 degrees below horizontal. The box slides at a constant velocity across a carpet whose coefficient of kinetic friction with the box is 0.70. Determine the magnitude of applied force, normal force, and friction force.

Answers

To determine the magnitude of the applied force, normal force, and friction force, we can use the equations of motion.

The applied force (Fa) is the force that Marsha exerts on the box. It can be determined by the equation:

Fa = ma

where m is the mass of the box (12 kg) and a is the acceleration of the box (which is zero, since the box is moving at a constant velocity).

The normal force (FN) is the force exerted on the box by the surface it is sliding on, perpendicular to the surface. It can be determined by the equation:

FN = mg

where g is the acceleration due to gravity (9.8 m/s^2).

The friction force (Ff) is the force exerted on the box by the surface it is sliding on, parallel to the surface. It can be determined by the equation:

Ff = μFN

where μ is the coefficient of kinetic friction between the box and the surface (0.70).

So,

Fa = 12 * 0 = 0 N (since acceleration is zero)

FN = 12 * 9.8 = 117.6 N (perpendicular to the surface)

Ff = 0.7 * 117.6 = 82.32 N (parallel to the surface)

So the magnitude of applied force is 0 N, normal force is 117.6 N, and friction force is 82.32 N

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11. A metallic block of mass sokg exerts o pressure of ION/m² on the surface. Determine the area of contact between the block and the surface.​

Answers

The area of contact between the block and the surface is 50 m².

What is mass?

A body's mass is an inherent quality. Before the discovery of the atom and particle, it was widely considered to be tied to the amount of matter in a physical body.

The measure of matter in a particles or object is represented by the dimensionless quantity mass (symbolised m). The kilogramme is the International System's (SI) preferred unit of mass (kg).

What is pressure?

Pressure is defined as force applied on a body per unit area. Pressure is the force perpendicularly applied to an object's surface per unit area over which that force is distributed. Gauge pressure is the pressure in relation to the outside pressure. There are many different units used to express pressure.

Equation :

Given,

mass(m) = 50kg

pressure (p) = 10N/m²

Taking,

g= 10 m/s²

p= mg/A⇒ 10= 50 × 10/A∴

A= 500/10 = 50 m²

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A marathoner is trying to improve her skill at pacing herself during her races Select the best technology tool available to help provide feedback to the runner so that
she doesn't "burnout" too fast at the beginning of this grueling competition
O Pedometer
O Spreadsheet checklist
O Stopwatch
O Digital pictures

Answers

Answer: Stopwatch

Explanation: A stopwatch would be the best technology tool available to help provide feedback to the runner so that she doesn't "burn out" too fast at the beginning of a gruelling competition. A stopwatch can help the runner measure her pace and ensure that she runs at a steady, consistent pace throughout the race. Additionally, a stopwatch can be used to track the runner's split times and provide her with detailed feedback on her performance.

In physics, the amount of work done on an object is the product of ______________.

Answers

Answer:

In physics, the amount of work done on an object is the product of the force applied to the object and the distance over which the force is applied, also known as the force's displacement. Mathematically, it is represented as W = F * d.

Explanation:

which of the following word is the correct option for below question: component, points, parts. when solving conservation of motion problems in two dimensions it is important to break te velocity of each objet into x and y

Answers

When solving conservation of motion problems in two dimensions, it is important to break the velocity of each object into x and y component.

What is velocity?

Velocity is a vector representation of an object's or particle's displacement with respect to time. The meter per second (m/s) is the standard unit of velocity magnitude (also known as speed). Alternatively, velocity magnitude can be expressed in centimeters per second (cm/s). The direction of movement of the body or item is defined by velocity. Speed is fundamentally a scalar number. Velocity is, in essence, a vector quantity. It is the pace at which distance changes. It is the displacement rate of change. Simply put, velocity is the rate at which something travels in a certain direction. For example, the speed of a car driving north on a highway or the speed of a rocket after launch.

Here,

When addressing conservation of motion issues in two dimensions, it is necessary to divide each object's velocity into x and y components.

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a vertical air current that is generated by temperature-induced density differences (e.g., hot air rising) is an example of heat transfer by

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Convection When a fluid, such as air or water, is heated and starts to circulate, heat transfer through convection takes place.

A cooler area is left behind when the hot fluid rises, carrying the heat energy it contains with it. As a result, energy is transferred from one place to another through a cycle of air or water currents. Convection is characterised by the vertical air current produced by temperature-induced density differences, such as hot air rising. Thermal convection is a crucial component of the climate system on Earth and is a type of convection. Convections always need a medium for the transfer of energy.

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a bullet is accelerated down the barrel of a gun. the average force exerted on a 0.020 kg bullet to accelerate it to a speed of 500.0 m/s in a time of 2.00 ms (milliseconds) is

Answers

The average force is then F = ma is 5,000 kg m/s2 = 5,000 N.

What is average force?

Average force is the mean force of a set of forces. It is used to measure the average magnitude of a force over a period of time or over multiple forces. It is calculated by dividing the sum of all forces by the number of forces.

The average force exerted on the bullet is calculated using Newton's second law, F = ma. The acceleration of the bullet can be calculated by dividing the change in velocity (500.0 m/s) by the time interval (2.00 ms).
a = Δv/Δt
a = 500.0 m/s / 2.00 ms = 250,000 m/s2
The average force is then F = ma = (0.020 kg)(250,000 m/s2) = 5,000 kg m/s2 = 5,000 N.

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A particle is launched with a horizontal velocity v0 = 0.55 m /s from the 30° position shown and then slides without friction along the funnel-like surface. Determine the angle θ which its velocity vector makes with the horizontal as the particle passes level O-O. The value of r is 0.9 m. [

Answers

The angle its final velocity makes with the horizontal is 60⁰.

What is the time of motion of the particle?

The time taken for the particle to travel through the 0.9 m radius is calculated by applying the following equation.

t = ( 2v sin (θ) ) / g

where;

v is the initial velocity θ is the angle of projectiong is acceleration due to gravity

t = ( 2 x 0.55 x sin 30 ) / ( 9.8 )

t = 0.056 s

The final vertical velocity is calculated as follows;

Vy = Vi + gt

Vy = ( 0.55 x sin 30 ) + (9.8 x 0.056 )

Vy = 0.82 m/s

The final horizontal velocity is calculated as follows;

Vx = V cos (30)

Vx = 0.55 m/s  x  cos ( 30 )

Vx = 0.48 m/s

The angle made with the horizontal is calculated as;

θ = arc tan ( Vy / Vx )

θ = arc tan  ( 0.82 / 0.48 )

θ = 59.7⁰ ≈ 60⁰

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which of the following graphs best represents an acceleration curve that is consistent with the above velocity curve? the horizontal axes are scaled identically.

Answers

The acceleration - time graph represents velocity of an object.

The Acceleration-Time graph tells us about an object’s velocity the same way the Velocity Time graph tells us about an object’s displacement.  It is the best way to determine velocity.Acceleration-Time Graph shows the acceleration plotted against time for a particle moving in a straight line. The acceleration-time plots acceleration values on the y-axis and time values on the x-axis.The area under the acceleration graph represents the change in velocity. In other words, the area under the graph for a certain time interval is equal to the change in velocity during that time interval.

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A student standing on the ground throws a ball straight up. Theball leaves the student's hand with a speed of 15 m/s when the handis 2.0 m above the ground . HOw long is the ball in the air beforeit hits the ground? ( The student moves her hand out of the way)

Answers

The ball takes 1.62 seconds to return to the ground after reaching its  maximum height  As a result, the ball is in the ground for

1.5 seconds + 1.62 seconds, which is 3.12 seconds.

The student  throws the ball with the initial velocity vi=15m/s

The final velocity of the ball is [tex]v_{f} =0 \\[/tex] The gravitational acceleration is g=10m/[tex]s^{2}[/tex]

Let the maximum height the ball reached is  s

Using the equation of motion,

[tex]v_{f} ^{2} -v_{i} ^{2} =2gs-(15)^2[/tex]=11.25m

Consequently, the ball traveled 11.25 meters from student height till it began to fall to the ground. Identify the time t right now.Taken by ball to reach the height 11.25 musing the equation of motion

[tex]v_{f} =v_{i}+gt_{o}=15+(-10) t_{t} =1.5sec[/tex]

As a result, the ball reaches its highest point in 1.5 seconds.

Given that the girl's hand was 2 meters above the ground. Consequently, the ball travels the distance before touching the ground.

11.25m + 2m = 13.25m

Using the equation of motion

[tex]S=v_{i} t+\frac{1}{2} gt^{2}[/tex]

S=13.25m, [tex]v_{i} =0[/tex], g=10m/[tex]s^{2}[/tex]

Substitute the values,

[tex]13.25=0 +\frac{1}{2} (10)t^{2}[/tex]

t=[tex]\sqrt\frac{13.25}{5}[/tex]

t=1.62sec

The time taken by ball to return to ground from maximum height is 1.62 sec.

Hence, The ball remains in ground before it hits the ground is 1.5 sec + 1.62 sec = 3.12 sec

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