A cyndrical flask of cross sectional area A is fitted with an airtight piston that is free to slide up and down .contained within the flask is an ideal gas. Initially the pressure applied by the piston is 140kpa and the base of the flask is 22cm. When additional mass is added to the piston the pressure increases to 380kpa. Assuming the system is always at the temperature of 290k find the new height of the piston

Answers

Answer 1

Assuming the system is always at the temperature of 290k, the new height of the piston be 16.21 cm.

What is pressure?

The physical force applied to an object is referred to as pressure. Per unit area, a perpendicular force is delivered to the surface of the objects. F/A is the fundamental formula for pressure (Force per unit area). Pascals are a unit of pressure (Pa).

Absolute, atmospheric, differential, and gauge pressures are different types of pressure.

As height of the piston is proportional to volume of ideal gas. From Boyle's law of gases   at constant temperature  we can write:

PV = pv

⇒PH = ph

⇒ 140 kpa × 22 cm = 290 kpa × h

⇒ h = 22 × 140/190 cm = 16.21 cm.

Hence, the new height of the piston be 16.21 cm.

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Related Questions

Listed following are several astronomical objects. Rank these objects based on their diameter, from largest to smallest. (Note that the neutron star and black hole in this example have the same mass to make your comparison easier, but we generally expect black holes to have greater masses than neutron stars.)
Largest Diameter
- main-sequence star of spectral type A
- Jupiter
- one-solar-mass white dwarf
- the moon
- a two-solar-mass neutron star
- the event horizon of a two-solar-mass black hole
Smallest Diameter
Feedback: Correct
The main-sequence star is obviously much larger than a planet such as Jupiter. A one-solar-mass white dwarf is about the size of Earth, which makes it larger than the Moon. A neutron star will be larger than a black hole of the same mass, because while light can escape from a neutron star, the same mass in a black hole must be more concentrated so that its gravity is strong enough to prevent light from escaping.

Answers

Objects based on their diameter, from largest to smallest are:

-main-sequence star of a spectral type A

-Jupiter

-a one-solar-mass white dwarf

-the Moon

-a two-solar-mass neutron star

-the event horizon of a two-solar-mass black hole

Earlier than then, observers had seen best 5 planets-Mercury, Venus, Mars, Jupiter, and Saturn. The sun is a celeb and is the most important object in the sun gadget. Its diameter is ready 1.4 million km. The sun is made normally of hydrogen gasoline.

From largest to smallest they're Universe, galaxy, sun machine, celebrity, planet, moon, and asteroid.

Astronomers at the NANOGrav Physics Frontiers middle have found the biggest neutron star ever recorded, which is nearly too huge to be in life. The pulsar, J0740+6620, is 2.17 times the mass of the sun and has a diameter of about 15 miles.

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you are working for seti, the search for extraterrestrial intelligence. one day, you receive a radio communication from an alien intelligence. although you cannot understand their language, they have included some photos from an i love lucy episode. the photos allow you to determine that it is the episode in which lucy makes a television commercial on vitameatavegamin. this episode first aired on cbs on may 5, 1952. before running to your supervisor to tell him the news, you quickly determine how far away in light-years the alien civilization is. (enter the maximum possible distance.)

Answers

The maximum possible distance in light-years of the alien civilization that sent the radio communication containing photos from the "I Love Lucy" episode "Vitameatavegamin" is approximately 22.1 light-years.

To determine the maximum possible distance in light-years of an alien civilization that has sent you a radio communication containing photos from the "I Love Lucy" episode "Vitameatavegamin," you can use the fact that light travels at a constant speed of approximately 299,792,458 meters per second.

Since the episode "Vitameatavegamin" first aired on May 5, 1952, the maximum possible distance in light-years of the alien civilization would be the distance that light could have traveled in the time since the episode aired.

To calculate this distance, you can use the following formula:

d = c × t

Where d is the distance in meters, c is the speed of light in meters per second, and t is the time in seconds.

To convert the distance from meters to light-years, you can use the conversion factor 1 light-year = 9.46 x 10^15 meters.

Plugging in the values for the speed of light and the time since the episode aired (70 years), we get:

d = 299,792,458 m/s × (70 years × 365 days/year × 24 hours/day × 3600 seconds/hour)

= 2.09 x [tex]10^{17}[/tex] meters

Converting this distance to light-years using the conversion factor above, we get:

d = 2.09 x [tex]10^{17}[/tex] meters / (9.46 x [tex]10^{15}[/tex] meters/light-year)

= 22.1 light-years

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The magnetic field inside a 4.0cm diameter superconducting solenoid varies sinusoidally between 8.0T and 12.0T at a freqency of 10Hz.
a) what is the maximum electric field strength at a point 1.5cm from the solenoid axis?
b) What is the value of B at the instant E reaches its maximum value

Answers

E max = 0.942 V/m is the maximum electrical field amplitude at a position 1.5 cm away from the solenoid axis.

An electric field is what?

The physical force that surrounds ionised objects and exerts force on every other energetic particles with in field, either attracting of repel them, is known as an electric field (or E-field). It can also refer to a collection containing charge particles' physical field.

Briefing

Diameter, D, equals 4 cm = 400 parts per million m

R = d/2 ≈ 0.04/2 = 0.02 metres for the circumference.

The electric potential is provided by Faraday's law;

Frequency; f = 10 Hz

From Faraday’s law, the electric field is given by;

E = -(r/2)(dB/dt)

We can formulate the magnetic field's equation as follows based on the magnetic field's variation:

B(t) = B_c + B_o*sin (2πft)

B(t) = 2sin(2*10t) + 10

Thus;

dB/dt = 40π cos 20πt

When cos 20t = -1, the electric field is at its maximum value.

(dB/dt)_max = -40π

Thus, with respect to the solenoid axis, at r = 1.5 centimeter = 0.015 m, we obtain;

E = -(0.015/2) × -40π

E = 0.942 V/m

what happens when there are extreme differences in air pressure and temperatures? view available hint(s)for part a what happens when there are extreme differences in air pressure and temperatures? when there are extreme differences in air pressure and temperatures, hurricanes are formed. when there are extreme differences in air pressure and temperatures, slight winds often occur, resulting in light rain and some hail. when there are extreme differences in air pressure and temperatures, it results in a rapidly moving warm front. when there are extreme differences in air pressure and temperatures, it creates a stationary front. when there are extreme differences in air pressure and temperatures, violent storms often occur, including hailstorms and tornadoes.

Answers

Violent storms occur, including hailstorms and tornadoes. Warmer and cooler air masses are in constant motion because atmosphere is trying to equalize temperatures and pressure.

What happens when extreme differences in air pressure and temperatures occurs?

High-pressure systems are generally associated with clear weather. Weather pattern characterized by low air pressure, is a result of warming. Low-pressure systems are associated with storms.

Air temperature determines amount of humidity in air mass. Colder air masses absorb less water vapor than hot air masses and the increased levels of water vapor in humid air are associated with thunderstorms and hurricanes. Wind occurs due to differences in pressure.

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an experiment is conducted in which red light is diffracted through a single slit. part a listed below are alterations made, one at a time, to the original experiment, and the experiment is repeated. after each alteration, the experiment is returned to its original configuration. which of these alterations decreases the angles at which the diffraction minima appear? select all that apply. view available hint(s)for part a listed below are alterations made, one at a time, to the original experiment, and the experiment is repeated. after each alteration, the experiment is returned to its original configuration. which of these alterations decreases the angles at which the diffraction minima appear? select all that apply. the experiment is conducted in a water-filled tank. the distance between the slits and the screen is halved. a green, rather than red, light source is used. the slit width is doubled. the slit width is halved. the distance between the slits and the screen is doubled.

Answers

The answer is: The slit width is halved.

Minima are the points of low intensity in a diffraction pattern. They appear due to destructive interference between light waves scattered by different points of a lattice or crystal. Minima occur when the path difference between two waves is equal to an integer multiple of the wavelength of the light.

When the slit width is halved, the angles at which the diffraction minima appear are decreased because the diffraction pattern becomes more focused due to the reduced aperture size. This causes the minima to be closer together and have smaller angles. The other alterations do not affect the angles at which the minima appear.

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(True or False) A 5-kg chunk of aluminum and a 5-kg block of silver that are at the same temperature have the same thermal energy. Heat flows from a higher temperature to a lower temperature. Different materials need the same amount of heat to have similar changes in temperatures.

Answers

Aluminum and silver of 5 kg mass have different thermal energies at the same temperature. Heat moves from a higher to a lower temperature.

Various materials need varying amounts of heat to have similar changes in temperature. When two items with different temperatures come in contact with one another, energy moves from the hotter (higher temperature) object to the cooler (lower temperature) object until both objects reach the same temperature. Temperature change is one of the main outcomes of heat transfer: heating raises the temperature while cooling lowers it.

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Wind gusts create ripples on the ocean that have a wavelength of 5.00 cm and propagate at 2.00 m/s. What is their frequency?

Answers

The frequency of the wave of the wind gusts is determined as 40 Hz.

What is frequency of a wave?

The frequency of a wave is the number of waves that pass a fixed point in a given amount of time. In other words, is the number of cycles completed by a wave in a given time period.

Mathematically, the relationship between frequency, velocity and wavelength of a wave is given as;

v = fλ

f = v / λ

where;

f is the frequency of the wavev is the velocity of the waveλ is the wavelength

f = (2 m/s) / (0.05 m)

f = 40 Hz

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Cardiopulmonary resuscitation is a procedure used to deliver oxygenated blood to the brain when the heart is no longer beating.

Responses

False
False

True

Answers

Answer: True

Explanation:

Cardiopulmonary resuscitation (CPR) is a medical procedure involving repeated compression of a patient's chest in an attempt to restore the blood circulation and breathing of a person who has suffered cardiac arrest.

A 15.0 kg penguin waddling east at a velocity of 7.0 m/s collides with a stationary 10.0 kg penguin. After the collision the 15.0 kg penguin is traveling at a velocity of 4.2 m/s 20.0o S of E.
a. What is the velocity of the 10.0 kg penguin after collision?
b. is this collision elastic or inelastic?

Answers

The velocity of the 10.0kg stationary penguin after collision with a 15.0 kg penguin which has a velocity of 7.0m/s is 4.2m/s and the collision is inelastic.

Whether it is an elastic or nonelastic collision is the momentum of the system will remain the same, which is also known as the law of conservation of momentum

m1v1+m2v2 = m1u1+m2u2

where,

m1 = mass of the first object

m2= mass of the second object

v1= velocity of the first object before the collision

v2=velocity of the second object before the collision

u1=velocity of the first object after collision

u2=velocity of the second object after collision

So,

15×7 +10×0 = 15×4.2 +10×u2

⇒105 = 63 + 10×u2

⇒u2 = 4.2

Since in this whole process the loss of kinetic energy is happening via the form of heat, light, and sound so it is an inelastic collision

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The index of refraction of a glass plate is 1.60. What is the Brewster's angle when the plate isin the following substances?(a) air1°(b) water2

Answers

The Brewster's angle when the plate is in the air is 58° and 50° when in water for the given refractive index of the glass plate.

What is Brewster's angle?

In most cases, at least a portion of the optical power of the light is reflected when it strikes a flat boundary between two different transparent materials. However, given a specific incidence angle known as Brewster's angle.

What is Refractive Index?

The refractive index of an optical material is a dimensionless quantity that indicates how well that material bends light. The refractive index controls how much light is refracted or curved when it enters a medium.

Calculations:

Brewster angle

       θB = tan-1 (n2 /n1)

For air

          θB= tan-1 (1.60 /1)

              = 58°

For water

          θB = tan-1 (1.60 / 1.33)  =50.2°

Hence, Brewster's angle when the plate is in the air is 58° and 50° when in water for the given refractive index of the glass plate.

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Jan Baptista van Helmont's famous experiment incorrectly showed that the plants produce most of their mass from:

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Jan Baptista van Helmont's famous experiment incorrectly showed that the plants produce most of their mass from water.

In physics, mass is used to express inertia, a property common to all matter. In essence, it is the resistance of a mass of matter to changing its course or speed in response to the application of a force. The more mass a body has, the less of a change an applied force makes. Using Planck's constant, the kilogram, the ISU's unit of mass, is equivalent to 6.62607015 1034 joule seconds (SI). One kilogram is multiplied by one square meter per second to produce one joule. Since the second and the meter have already been defined in terms of other physical constants, the kilogram is determined by precise measurements of Planck's constant.

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_________ is The process of obtaining a spectrum and reading the information it contains

Answers

Spectroscopy is the process of obtaining a spectrum and reading the information it contains.

What is spectroscopy?

Spectroscopy is the study of how light and other radiation are absorbed and emitted by materials, and how this depends on the wavelength of the radiation. The study of interactions between particles like electrons, protons, and ions as well as their interactions with other particles as a function of their collision energy has been added to the term more recently. The most fundamental physics theories, such as quantum mechanics, the special and general theories of relativity, and quantum electrodynamics, have all benefited greatly by spectroscopic analysis. Scientific comprehension of the electromagnetic force as well as the strong and weak nuclear forces has been greatly aided by the use of spectroscopy in high-energy collisions.

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Write a hypothesis to explain why we observe a higher fraction of elliptical galaxies within a cluster and a higher fraction of spiral galaxies in the field.
Elliptical galaxies are the common form of galaxies and they are found in the universe as they lack swirling arms of their own. They are a total of 10-15% of total galaxies.

Answers

Because more elliptical galaxies are seen when specific areas of the sky are explored in depth.

What characteristics do elliptical galaxies share?

The majority of elliptical galaxies are made up of older, low-mass stars with scarce interstellar space and little star formation, and they typically have a lot of globular clusters all around them.

Do elliptical galaxies revolve similarly to spiral galaxies?

Elliptical galaxies really aren't supported by rotation, in contrast to spiral galaxies.The galaxy's shape is defined by the rate at which the stars move in each direction due to the unpredictable and frequently extremely extended orbits of its constituent stars.

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A desktop computer is to be cooled by a fan whose flow rate is 0.34 m^3/min. Determine the mass glow rate of air through the fan at an elevation of 3400 m where the air density is 0.7 kg/m^3. Also, if the average velocity of air is not to exceed 110 m/min, determine the diameter of the casing of the fan. Answers: 0.238 kg/min, 6.3 cm

Answers

The mass flow rate to cool the desktop computer s 0.238kg/min and if the average velocity does not exceed 110m/min the diameter of fan casing is 6.3 cm.

What is mass flow rate?

The mass of a substance that moves per unit of time is known as the mass flow rate in physics and engineering. In SI units, it is measured in kilograms per second; in US customary measures, it is measured in slugs or pounds per second. The standard symbol is m (pronounced "m-dot"), though (Greek lowercase mu) is also occasionally used. See, for instance, Schaum's Outline of Fluid Mechanics, where mass flow rate is sometimes referred to as mass flux or mass current.

Since its known to us that;

Flow rate V = 0.34 [tex]m^{3}/min[/tex]

density of air ρ = 0.7 [tex]kg/m^{3}[/tex]

average velocity of air  [tex]v_{avg}[/tex]= 110 m/min

Mass flow rate is given by

m =  ρ x V

m = 0.7 x 0.34

m = 0.238 kg/min

Since Flow rate can be written as

V = A.[tex]v_{avg}[/tex]

Where A denotes Area of cross-section

0.34 = [tex]\frac{\pi d^{2}}{4}[/tex][tex]v_{avg}[/tex]

0.34 =[tex]\frac{\pi }{4} (d^{2})[/tex] x 110

d = 0.0626 m

d= 62.6 = 63 mm

Thus, we conclude that mass flow rate to cool the desktop computer s 0.238kg/min and if the average velocity does not exceed 110m/min the diameter of fan casing is 6.3 cm.

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which of the following graphs best predicts the solar energy output in the country in the northern hemisphere in december?

Answers

B graphs best predicts the solar energy output in the country in the northern hemisphere in December.

Any form of energy produced by the sun is known as solar energy.

Nuclear fusion occurs in the sun, which is how solar energy is produced. When two hydrogen atoms hit forcefully and combine to form a helium atom at the sun's core, fusion takes place.

This procedure, also referred to as a PP (proton-proton) chain reaction, produces a significant quantity of energy. The sun's core burns around 620 million tons of hydrogen per second. Other stars that like our sun in size experience the PP chain reaction, which supplies them with constant energy and heat. On the Kelvin scale, these stars have a temperature of roughly 4 million degrees (about 4 million degrees Celsius, 7 million degrees Fahrenheit).

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Two forces F1 and F2 are acting on the box shown in the drawing, causing the box to move across the floor. The two force vectors are drawn to scale. Which one of the following statements is correct? (6.1)
(a) F2 does more work than F1 does.
(b)F1 does more work than F2 does.
(c)Both forces do the same amount of work.
(d)Neither force does any work.

Answers

The correct answer is (b) F1 does more work than F2.

The block is moving horizontally the direction is opposite to direction of motion. The two forces applied are F1 and F2.F1 is applied horizontally so its horizontal component is F1cos0 = F1

While F2 is at angle  so horizontal component of F2 is F2cos(theta) and as we know cos is a decreasing in 0 to 90 degree. Therefore F1 does more work than F2.

Work is defined as the product of the magnitude of a force and the displacement of the object it is acting upon. In this case, the forces F1 and F2 are acting on the box, causing it to move across the floor. To calculate the work done by each force, we need to calculate the magnitude of the force and the displacement of the box.

The magnitude of F1 is given in the diagram, and it is 2 N. The magnitude of F2 is also given, and it is 4 N. For the displacement of the box, we will assume it is 1 m.

Now we can use the formula W = F x d to calculate the work done by each force.

For F1: W1 = 2 N x 1 m = 2 J

For F2: W2 = 4 N x 1 m = 4 J

Since F1 does 2 J of work, and F2 does 4 J of work, F1 does more work than F2 does. Therefore, the correct answer is (b) F1 does more work than F2 does.

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a student has set up the three circuits shown. the light bulbs and the batteries are identical. rank all 3 ammeters in order of their current measurements

Answers

The correct option is D) A₁ = A₂ > A₃

What is series circuit?

An easy circuit that enables electrons to move between one or more resistors is called a series circuit. A resistor is anything that consumes energy from a cell (battery). The resistor in a series circuit is typically a light bulb. The circuit is attached to the cell end to end, without any branches, in order to turn on the bulb. Any gaps or disconnections will result in the circuit malfunctioning; all circuit components should be simply connected from one end to the cell and the other end to the bulb.

In the figure, A₁ and A₂ will show same reading as they are arranged in series connection.

A₁ = A₂.

In third case there is no bulb ∴ There will be no current flow hence there will be 0 resistance affected.

So, A₁ = A₂ > A₃

Hence, Option D is correct.

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5. A 1500-kg car makes a u-turn with a radius of 25m. If the coefficient of static friction between the tires and the road μs = 0.42, what is the greatest speed the car can have without skidding (m/s)?

Answers

The maximum speed of the car was found to be 10.14 ms-1.

Define coefficient of static friction ?

A number that expresses how sticky an object is to its contact surface while it is stationary is known as the coefficient of static friction.

It is the ratio of the normal force imposed on the body to the static friction present between two contact surfaces.

Consider the three categories of dry friction: rolling friction, kinetic friction, and static friction.

Generally speaking, rolling friction and kinetic friction coefficients are lower than the coefficient of static friction.

Because static friction is greater than kinetic friction and rolling friction, this is the case.

This suggests that if an item is immobile, it will take greater effort to start it moving.

Rolling friction often has the least friction since it is greater in kinetic friction than rolling friction.

Fr=μs|n|

g=9.81

Fc=mv^2max/R

mv^2max/R=μsmg

v^2max=μsgR

vmax=√(0.42)(9.81)(25)

=√103.005

vmax =10.14 ms-1

The maximum speed of the car was found to be 10.14 ms-1.

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a projectile is fired at an angle of 55 above the horizontal and has a maximum up[ward vertical diusplacement

Answers

A projectile being fired at 55 degrees after the magnitude of the horizontal component of the projectile's displacement is 40.2m

Initial velocity of projectile (v) = 35 m/s

Given Angle (θ)= 55°

Estimating, horizontal components of velocity

[tex]v_{x}[/tex] = v cosθ

= 35 cos 55°

= 20.1 m/s

Calculating the horizontal components of displacement after t = 2

d₂ = [tex]v_{x}t[/tex]

= 20.1 x 2

= 40.2 m

Projectile motion refers to the motion of an object or particle that is launched into a gravitational field, such as from the surface of the Earth, and travels along a curved path while only being influenced by gravity. An object that is fired into the air and only reacts to the acceleration of gravity is called a projectile.

The projectile's path is the name for the object's trajectory. A projectile is any object that is sent into space with only gravity acting on it. The primary force affecting a projectile is gravity. This doesn't mean that other forces don't have an impact; it just means that they have a much smaller one compared to gravity.

Note that the full question is:

A projectile is fired at an angle of 55° above the horizontal with an initial speed of 35.0 m/s. What is the magnitude of the horizontal component of the projectile's displacement at the end of 2 s?

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A planet travels in an elliptical orbit around its star, as shown above. Which arrow best shows the direction of the net force exerted on the planet?

Answers

The arrow that best shows the direction of the net force exerted on the planet is arrow B.

What is the net force exerted on a planet orbiting the sun?

The net force exerted on an object travelling round the sun is known as gravitational force.

According Newton's law of universal gravitation, every two objects in the universe attract each other with a force that is directly proportional to the product of masses of the objects and inversely proportional to the square of the distance between them.

Fg = Gm₁m₂/R²

where;

m₁ is the mass of the first object (planet)m₂ is the mass of the second object (planet)R is the distance between the two objects

Thus, gravity is the primary force that controls the orbit of the planets around the sun and it is directed towards the sun.

Each planet has its own gravity based on the size of the planet and the speed at which it travels round the sun.

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At an orange juice plant, orange juice pulp with a density of 1.25 g/ml passes through a pumping station where it is raised vertically by 5.76 m at the rate of 1,920,000 liters per day. The liquid enters and leaves the pumping station at the same speed and through pipes of equal diameter. (a) Determine the output mechanical power (in W) of the lift station. Ignore any energy loss due to friction. (b) Assume an electric motor continuously operating with average power 3.70 kW runs the pump. Find its efficiency.

Answers

The output mechanical power (in W) of the lift station is and efficiency of electric motor continuously operating with average power 3.70 kW runs the pump is 135475.2x10^3J. and efficiency is 0.065%

Given density of orange juice (ρ) = 1.25g/ml

Height of juice level (h) = 5.76m

rate of juice increases (r) = 1920000 lts/day

Through equal-diameter pipes, the liquid travels through the pumping station at the same speed as it does when leaving.

Average power = 3.70 kW = 3.7x10^3W

Time = 24h

Work done (W1) = Power x time taken = 3.70x10^3 x 24 = 88.8x10^3J

This is the difference in potential energies: the effort required to move water to a height. W2 = E1-E0  where E0 =0and E1 = mgh

m = density x volume = 1.25x10^3x1920m^3 = 2400x10^3kg

E1 = 2400x10^3x9.8x5.76 = 135475.2x10^3J

Work done (W2) = 135475.2x10^3J

efficiency = W1/W2 = 88.8x10^3/135475.2x10^3 = 0.00065 = 0.065%

Hence efficiency = 0.065%

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protons having a kinetic energy of 5.20 mev are moving in the positive x-direction and enter a magnetic field of 0.0550 t in the z-direction, out of the plane of the page, and extending from x. 0→x=1m as shown in Fig.
a. Calculate the y-component of the protons' momentum as they leave the magnetic field.
b. Find the angle ϕ between the initial velocity vector of the proton beam and the velocity vector after the beam emerges from the field. Ignore relativistic effects and note that 1eV=1.60×10−19J.

Answers

a)  The y-component of the protons' momentum as they leave the magnetic field is 8.8 x 10-21 kg m/s

b) The angle ϕ between the initial velocity vector of the proton beam and the velocity vector after the beam emerges from the field is  9.812821°

Since are given with the kinetic energy of  5.20 Mev (8.32X 10^-13J), and  a magnetic field of 0.0550 t in the z-direction.From the diagram we can see  that, p(Y) =mv sin θ

=> sin θ =1/R , where R = mv/eB

=>sin θ = eB/mv

=>eB= mv sin θ

=> Py(the momentum) = eB =1.60×10−19J*0.0550 =  8.8 x 10-21 kg m/s .In the second case, sin θ  =  eB/mv, since the kinetic energy is 5.20 Mev

=>1/2 mv² =  5.20 mev = 8.33132e⁻¹⁹

=> v = √(2* 8.33132e-19 / 1.6 x10⁻²¹) = 32.27 m/s²

Now sin φ = eB/mv

=>sin φ =  8.8 x 10-21/ 1.6 x10^-21* 32.27 = 0.17043

=>φ = sin-1(0.17043)  = 9.812821°

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calculate the acceleration due to gravity on the surface of the sun. you can find the relevant data in appendix c of the text.

Answers

Use these uncertainties to estimate the biggest and smallest possible values you could get for gravity:

    g (low) = 2h / ( t + Δt )²

    g(high) = 2h / ( t - Δt )²

What is a simple definition of gravity?

The force that pulls items toward the center of a planet and other entity is called gravity. Each of the planets are kept in orbits around the sun by gravity.

Briefing:

First, choose an area where you can dump your small thing. Drop from a height that is sufficient to reduce the relative proportion of time needed to start and stop the stopwatch but not excessive enough to start affecting the outcome due to air resistance  One narrative is a decent middle ground.

The fall distance of the object is measured in meters. The entire course uses metric measurements only!

At least twenty times, time the thing falling.

Use the relationship to get the earth's acceleration owing to gravity (derived from calculus))

    g = 2h / t2

where t is the median fall time and h is the fall height.

To calculate your random uncertainty, use your spread in t values:

    Δt = (largest duration – lowest duration) / 2.

     g (low) = 2h / ( t + Δt )²

    g (high) = 2h / ( t - Δt )²

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which of the following is the most important reason to astromomers for studying asteroids, comets, and dwarf planets?

Answers

The most important reason astronomers for studying asteroids is to trace solar system evolution.

what are asteroids?

Small, stony objects called asteroids orbit the Sun. Despite orbiting the Sun similarly to planets, asteroids are far smaller than planets. Small, stony objects called asteroids orbit the sun. Despite orbiting the sun similarly to planets, asteroids are far smaller than planets.

What are comets called?

Depending on whether a comet has more ice or rocky debris, scientists may refer to them as dirty cannonballs or snow dirtballs, according to NASA.  Amazing images of Comet NEOWISE taken from space and the Earth are related.

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An athlete at the gym holds a 2.5kg steel ball in his hand. His arm is 70 cm long and has a mass of 4.0 kg
a)
What is the magnitude of the torque about his shoulder if he holds his arm straight out to his side, parallel to the floor?
Express your answer to two significant figures- Newton meter
b)
What is the magnitude of the torque about his shoulder if he holds his arm straight, but 55? below horizontal?
Express your answer to two significant figures - newton meter.

Answers

torque τ   = 25.24 N-m

torque  τ  = 12.68 N-m  

given data in the qstion:

mass of the ball  is= 2.5 kg

arm length is  l = 70 cm = 0.7 m

mass of arm is  = 4 kg

solution by using data:-

we get here  center of mass that is

center of mass =  (m1+m2) rcm =m1 r1+m2 r2

center of mass = 0.44545 m  

and

the torque will be

torque τ   =  F × r ×sinθ  

torque τ   =  (4+2.5)9.8 × 0.4454 × sin90

torque τ   = 25.24 N-m

and now we get the magnitude of the torque  

magnitude of the torque is τ  = F × r ×sinθ

magnitude of the torque is  τ  = (4+2.5)9.8 × 0.4454 × sin60

magnitude of the torque is τ  = 12.68 N-m  

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The ______ model develops knowledge to observe, analyze, and critique physical activity and sport issues and topics in a variety of contexts.

Answers

The Cultural Studies model develops knowledge to observe, analyze, and critique physical activity and sports issues and topics in a variety of contexts.

Cultural Studies:

The science of comprehending contemporary society, with a focus on politics and power, is known as cultural studies. It is an all-encompassing phrase that is used to discuss a variety of topics, such as media studies like journalism and film, sociology, industrial culture, globalization, and social theory. By pursuing this field, one is attempting to unravel the human condition.

Students who want to work in the media or politics find this profession to be quite popular due to the variety of disciplines it offers. Understanding culture in connection to power is one of the goals of science. It examines the varied social and political systems found in many nations as well as how they relate to one another and the rest of the world.

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n empty bottle has a mass of 35.00 grams. When filled with water, it has a mass of 98.44 grams. Of the same bottle is filled with a different fluid, the mass is 89.22 grams. What is the specific gravity of this other fluid

Answers

The specific gravity of the liquid is 0.85

What is specific gravity of a liquid?

The specific gravity of a liquid is the relative weight of that liquid compared to an equal volume of water. It can also be called relationship density. Specific gravity has no unit

Therefore specific gravity of a liquid = weight of the liquid/ weight of water OR mass of the liquid / mass of water.

Mass of water = 98.44-35.00 = 63.44g

mass of the liquid = 89.22-35.00 = 54.22

Therefore the specific gravity of the liquid = 54.22/63.44= 0.85

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The dynamo theory states that Earth's magnetic field is created in the ...

Answers

The dynamo theory states that Earth's magnetic field is created in the planet's outer core.

The dynamo theory proposes a mechanism by which a celestial body such as the Earth or a star generates a magnetic field.

Dynamo theory describes the process through which a rotating, convecting  and electrically conducting fluid acts to maintain a magnetic field. This theory is used to explain the presence of anomalously long-lived magnetic fields in astrophysical bodies.

There are three requisites for a dynamo to operate:

An electrically conductive fluid medium, Kinetic energy provided by planetary rotation, An internal energy source to drive convective motions within the fluid.

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the current i in a long, straight wire is constant and is directed toward the right as in (figure 1). conducting loops a, b, c, and d are moving, in the directions shown, near the wire.

Answers

Answer: The directions shown, near the wire is moving anticlockwise

Explanation:

When the current in the wire AB decreases, the magnetic flux linked with the loop (which is out of the page) will decrease. Hence, the current induced in the loop must be anticlockwise to oppose the decrease in magnetic flux.

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the op-amp circuit that has a capacitor as the feedback component and resistor at the inverting input is called a(n) . unity follower differentiator integrator summing amplifier

Answers

An integrator is an operational amplifier (op-amp) circuit with a resistor at the input terminal and a capacitor serving as the feedback component.

What purpose does a capacitor serve?

A capacitor is an insensitive electric component that contains an electrostatic signal of energy. Two components that are arranged close to and are electrically insulated from one another make up a capacitor, a device used to store electrical energy. A linear capacitor is a simple example of one such flash drive.

What rules the basic operation of a capacitor?

A capacitor works under the assumption that its permeability increases as a single conductor is brought close to another conductor. The upshot is that the structure has two major plates that are offset against one another and pointed in different directions.

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