A 0.6 kg object moves at a constant velocity of 2 m/s, traveling a total distance of 30 m. Using the work-energy theorem, what is the net work on the object? (1 point)

A. 2.4 J
B. 0 J
C. 1.2 J
D. 36 J

Answers

Answer 1

Answer: B. 0 J

Explanation:


Related Questions

Two students drop an object into sand from a height of 1.5 meters. They record the depth of the hole made in the sand by each student's object What is the most likely explanation for the results? (1 point) O Maddie's object had a faster drop speed O Naveed's object has less mass O Naveed's object had greater kinetic energy O Maddie's object has a smaller width​

Answers

Weight is the force of gravity on mass, which is intrinsic to matter. Remember that F=ma. The acceleration due to gravity is independent of the mass of the object falling, but the force it feels, and thus the weight of the object, is.

They record the depth of the hole made in the sand by each student's object  gives the idea about the mass of the objects.

Naveed's object has less mass

Is gravity affected by mass?Gravitational force is a force that attracts masses. The gravitational force grows in proportion to the size of the masses (also called the gravity force). The gravitational force weakens rapidly as the distance between masses grows.Given two identically sized but different materials objects, the heavier (denser) object will fall faster because the drag and buoyancy forces are the same for both, but the gravitational force is greater for the heavier object.Weight is the force of gravity on mass, which is intrinsic to matter. Remember that F=ma. The acceleration due to gravity is independent of the mass of the object falling, but the force it feels, and thus the weight of the object, is.

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Which if the following topics will be covered in Physical Science A? (4)

Group of answer choices

Anatomy

Bonding

Elements

Genetics

Matter

Newton's Laws of Motion

Reactions

Answers

Answer:

I'm not going to give you the direct answer because you shouldn't cheat but I will give a hint

Explanation:

Physics, chemistry, astronomy, geology and other disciplines concerned with the study of non-living things are examples of physical science.

A boy is pulling a sled with a rope pulled over his shoulder so the angle the rope makes
with the horizontal is 50°. If the sled has a mass of 100 kg, and the coefficients of friction
are μs = 0.6 and Uk = 0.3, what force on the rope is necessary to move the sled at a
constant acceleration of 0.1 m/s?

Answers

Answer:

348.7 N

Explanation:

Static friction coeff not needed.

This is a little complicated because some of the force on the rope (F) is making the Normal Force ( and thus the frictional force) less

Normal force will be      ( 100 ( 9.81) - F sin(50) )

  then friction becomes  .3  ( 100(9.81) - F sin 50)

Force pulling horizontally will have to be

  F = ma

         100 kg * .1 m/s = 10 N      PLUS the effort to overcome friction

                                           

   So the horizontal force will be  

        10 +  (  .3( ( 100)(9.81) - F sin50 ))      <===simplify a bit

         10 + 294.3  - .3 F sin50

          304.3 - .3 F sin50  = horizontal force

The horizontal force is also given by   F cos 50      Now we can equate the two underlined items above

304.3 - .3 F sin 50   =  F cos 50

304.3   = F ( cos50 + .3 sin50)

304.3 / ( cos 50 + .3 sin 50) = F        = 348.7 N        

A student holds a rod in his hand. He rubs the rod with a cloth. The rod gains a positive charge.
Of which material could the rod be made, and which transfer of charge has happened?

Answers

Hence,option D . The rod is made up of plastic, the positive charge from the cloth to the rod.

Static charge or an electrostatic charge is a deficiency or extra of electrons that occurs on ungrounded or insulating surfaces. it's miles produced by way of triboelectric costs, expenses which can be generated by friction among surfaces, including the motion of paper thru a copier or printer.

An electrical charge is created when two materials come into contact or are rubbed collectively. when the substances are in touch, electrons can be actually rubbed off of one object and onto the alternative.

Static power is an imbalance of electric fees within or on the floor of a material. The fee stays till it could pass away by way of an electric present-day or electric-powered discharge.

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A gust of wind blows an apple from a tree.
As the apple falls, the force of gravity on the
apple is 9.30 N downward, and the force of
the wind on the apple is 1.96 N to the right.
What is the magnitude of the net external
force on the apple?
Answer in units of N.

Answers

The magnitude of the net external force on the apple is 9.50 N

What is force?

Force is that thing that causes a change in motion or state of rest of an object.

How to calculate the magnitude of the net external force on the apple?

Since a gust of wind blows an apple from a tree, as the apple falls, the force of gravity on the apple is 9.30 N downward and the force of the wind on the apple is 1.96 N to the right,

the gravitational force is F = -(9.30 N)j and the force of the wind is F' = (1.96 N)i

Since the forces are perpendicular, the magnitude of the net external force on the apple is F" = √(F² + F'²)

So, substituting the values of the variables into the equation, we have

F" = √(F² + F'²)

F" = √[(-9.30 N)² + (1.96 N)²]

F" = √[86.49 N² + 3.8416 N²]

F" = √(90.3316 N²)

F" = 9.504 N

F" ≅ 9.50 N

So, the net force on the apple is 9.50 N

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An object starts at a point +25 m goes 40 m towards +X direction in 5 s then suddenly changes its direction to the opposite and covers 50 m in 10 seconds. What was its average speed during the first 5 s?

Answers

The average velocity of the object in the first 5 seconds is 4 m/s.

What is average velocity?

The average velocity of an object can e defined as the average of the velocities of the object throughout its motion.

Average velocity = sum of all the velocities of the object / number of the velocities

Average velocity can also be defined as the ratio of the total displacement of the object and the total time taken.

Average velocity = total dsiaplcement / total time taken

Considering the given object:

total displacement in the first 5 seconds = 40 m

time taken = 5 seconds

Average velocity = 40 m / 5 seconds

Average velocity = 4 m/s

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Identify the variable in the thermal energy equation, Q = m (T₁-T) C
Q-thermal energy
m-
T₁-
-
T₁-initial temperature

Answers

Answer:

m is the mass of the sample, C is the specific heat, and T is the temperature

Explanation:

khan academy

A toy robot can walk and talk and runs on batteries. What type of energy is stored in the batteries?.

Answers

Chemical energy is stored in the batteries.

What is chemical energy?

Chemical energy is the energy that is released when chemical substances engage in a chemical reaction and change into other substances. Batteries, food, and gas are a few examples of chemical energy storage mediums. Energy can be absorbed by or evolved from a chemical system when breaking and creating chemical bonds.

The energy transformation occurring when a battery-powered toy car is set into motion when switched on is chemical to electrical to mechanical.

When a remote-controlled toy car begins to move, potential energy is converted into kinetic energy.

A battery has chemical energy stored within it.

When switched on, the circuit within the toy car closes.

This causes the chemical energy to be converted to electrical potential energy.

When the remote is pressed to make the toy car move, this potential energy is converted to mechanical kinetic energy.

In this way, energy transformation takes place from chemical to electrical to mechanical.

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been working on this, anyone know?

Answers

To launch a 60 kg human at the given speed, the spring constant needed is 1500 N/m.

What is spring constant?

This is the proportion of a spring's extension to the force applied to it. Utilizing the energy conservation principle, the spring's spring constant is determined. The human will transform the elastic potential energy of the spring into kinetic energy in order to launch at the desired speed.

Briefing:

U = K.E

¹/₂kx² = ¹/₂mv²

k = mv²/x²

where;

m is mass of the human

v is the speed of the cannon

x is the extension of the spring

k is the spring constant

Substitute the given parameters and solve for the spring constant.

k = (60x 15²) / (3²)

k = 1500 N/m

A spring constant of  1500 N/m is need to maintain the law of conservation of energy, from elastic potential energy of the spring to kinetic energy of the human,

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The complete question is -

In order To launch a 60 kg human so that he leaves a cannon moving at a speed of 15 m/s, you need a spring with an appropriate spring constant. This spring will be compressed 3.0 m from its natural length to launch the person. The cannon oriented at an angle of 37⁰ above the horizontal?

a) Which spring constant should the spring have so that the cannon functions as desired?

four horizontal forces act on a vertical quarter-circular plate of radius 250 mm. determine the magnitude and point of application of the resultant of the four forces if p

Answers

The magnitude and point of application of the resultant of the four forces

R=200N

AB=CD=125mm

BC=216.5mm

Point to of application

z axis=200mm

y-axis= 63.4mm

This is further explained below.

What is Radius?

Generally, the Radius of the quarter circle,

r=250mm

Force, P=40N

Resultant force,

R=-80+120+200-PR

=-80+120+200-40

R=200N

Therefore

cos60=AB/AC

0.5=AB/250

AB=CD=125mm

sin60=BC/AC

√3/2=BC/250mm

BC=216mm

The result of the four forces.Taking moments about the z-axis

[tex]\sum[/tex] My =200*250-80*CD

[tex]\sum[/tex] My=40000N-mm

[tex]\sum[/tex]=R*z

z=200mm

Taking moments about the z-axis

[tex]\sum[/tex]120*250-80*BC

[tex]\sum[/tex] Mz=12680N-mm

12680=200*4

Y=63.4mm

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Two stars have the same luminosity, but star b is three times farther away from us than star a. Compared to star a, star b will look.

Answers

Since Intensity depends on power and area, star b will have the same brightness as star a but look smaller

What is Luminous Intensity ?

Luminous Intensity is the magnitude or quantity of the brightness of light emitted by a luminous object.

If two stars have the same luminosity, but star b is three times farther away from us than star a. If we are to compare star a with star b, star b will look bright but small.

The reason is due to the fact that Intensity is directly proportional to power and inversely proportional to area and not to the distance or length.

Therefore, star b will look bright but small.

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A little green moon person stands by the rim of a crater on the Moon, where
the freefall acceleration is 1.62 m/s2 and there is no air resistance. The crater
has vertical walls. To determine the depth of the crater, she drops a rock and
measures the time it takes for it to hit the bottom. If the depth of the crater is
120 m, after what time interval will the rock hit the floor of the crater?

Answers

Answer:

Time:

t = 12 s

Explanation:

Given:

g = 1.62 m/s

H = 120 m

V₀ =0 m/s

__________

t - ?

From the formula:

H = V₀·t + g·t² / 2

H = g·t² / 2

we find the time:

t = √ (2·H / g)

t = √ (2·120 / 1.62) ≈ 12 c

The only kind of radiation that earth’s surface emits is infrared (ir) radiation.

a. True
b. False

Answers

The statement is true. Solar radiation, also referred to as ultraviolet or shortwave radiation, is emitted by the Sun. Longwave or infrared radiation is emitted by the Earth.

Because they are cooler than the surface of the sun, the earth and its atmosphere emit infrared radiation with longer wavelengths than solar radiation. The 3 - 100 m range contains the majority of the energy of the infrared radiation that the earth and its atmosphere emit. Infrared is the thermal emission (or heat) from our planet that earth scientists study. Some of the energy from incident solar radiation that strikes Earth is absorbed by the atmosphere and the surface, warming the planet. Infrared radiation, which is emitted by the Earth, is what causes this heat.

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the result of 2 oppositely directed forces is 50N. The magnitude of one of the forces is 3 times that of the other, what is the magnitude of each one of the forces.​

Answers

The magnitude forces of each one of the forces is F₁ = 75N and F₂ = 25N.

What is force?

Any action that tends to preserve, modify, or deform a body's motion is considered to be a force in mechanics. Usually, Isaac Newton's three laws of motion from his Principia Mathematica are used to explain the concept of force (1687).

A body at rest or moving uniformly in a straight line will stay in that state until a force is applied to it, according to Newton's first law. According to the second law, any external force that interacts with a body causes it to accelerate (change its velocity) in the force's direction.

If two forces act on an object in opposite directions, the net force is the difference between the two forces, which means

F₁ - F₂ = Net force

Here net force = 50N, so

F₁ - F₂ =  50N

We have given that F₁ = 3F₂

Now substituting the value of F₁ in F₁ - F₂ =  50N, we get

3F₂ - F₂ =  50N

2F₂ = 50N

F₂ = 50/2

F₂ = 25N

And F₁ in  F₁ = 3F₂ is

F₁ = 3(25)

F₁ = 75N

Thus, The magnitude forces of each one of the forces is F₁ = 75N and F₂ = 25N

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It requires 350 joules to raise a certain amount of a substance from 10.0°C to 30.0°C. The specific heat of the substance is 1.2 J/g°C.

What is the mass of the substance?

Answers

The mass of the substance is 14.58g.

Solution:

Heat  ΔQ = 350J

Initial temperature  T = 10°C

Final temperature [tex]T^{1}[/tex] = 30°C

Change in temperature:  

ΔT =[tex]T^{1}[/tex]  - T

= 30 - 10

=  20°C

Specific heat: 1.2 J/g°C

The mass of a substance:

ΔQ = mcΔt

m = ΔQ/cΔt

= 350/1.2 x 20

= 14.58 grams.

Molecular weight is the sum of the average masses of the atoms in the molecule of a substance. It is calculated by adding together the atomic masses of the elements in the substance and multiplying each by the index of the molecular formula. The mass of 1 mole of a substance in 1 gram is called molar mass.

Find the atomic weight of each element in the formula, multiply by the number of atoms of that element in the compound, and add to all other elements. This gives the 1 mole mass of the molecule in grams. The molar mass of a substance is the mass in grams of one mole of that substance. This mass is the atomic mass of the chemicals that make up the substance, expressed in atomic mass units AMU.

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Would appreciate some help :)

Answers

Answer:

a

Explanation:

two flat mirrors are connected to each other such that they make an angle of ψ. a laser enters the system and first reflects off the bottom mirror, then the top mirror. when the beam exits it makes an angle of θ

Answers

The angle is 53.5 degrees.

What is a flat mirror?

A plane mirror is a mirror with a flat (planar) reflective surface. For light rays striking a plane mirror, the angle of reflection equals the angle of incidence.

This ques have been solved in two steps:

Step 1:

given that;

Θ=107 degrees

from figure,

∠BAC=180-ψ-(90-φ)

∠BAC= 90-ψ-φ

∠AOC=180-2(ψ-φ)-2φ

∠AOC=180-2φ

Step 2: part(a)

writing an expression for the psi at point o:

Θ+180-2ψ=180

2ψ=Θ

ψ=Θ/2

above is the expression for ψ

Step 3: part(b)

The angle of ψ is,

ψ=Θ/2

ψ=107/2

ψ=53.5 degrees

Hence, the angle is 53.5 degrees.

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100 POINTS AND BRAINLY PLEASE HELP QUICK QUESTION I'M DESPERATE

Question 13(Multiple Choice Worth 2 points)


As a beginner bowler, Maria gets frustrated that her shots very rarely knock down any pins. Her Mom says that her arm movement looks awkward before releasing the ball. Maria feels like she needs to improve arm swing motion. How can Maria improve her bowling technique to be more successful?


Increase the weight of the ball to gain more control
Push the ball out away from her on the first step
Put more spin on the ball so that it curves prior to hitting the pins
Take fewer steps before releasing the ball to decrease her arm speed

Answers

Push the ball out away from her on the first step. Option B.

The key to consistent shots is the angle at which you pocket the ball. For right-handed bowlers, the pocket is between the 1st and 3rd pins. If you are left-handed it will be between pins 1 and 2. Keep your arms straight as you bring them back for the backswing and try to stay close to your body throughout the throw. Timing is important when releasing the ball.

A simple way to determine where the ball should exit the edge of the oil sample is simply to apply the rule of 31. Subtract 31 from the oil pattern distance. This will give you the board number where the ball ends the pattern. As a rule of thumb, right-handed bowlers place the inside of their left foot on the midpoint, and left-handed bowlers do the same with their right foot. Then stand with your other leg slightly behind you about 2 inches apart.

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Answer:

Maria can improve her arm swing motion in bowling by developing a free swing, where instead of controlling the ball with her arm, the ball controls her arm. This can be achieved by putting only mild to light grip pressure on the ball and pushing it back while standing relaxed. This will let the ball down and the gravitational energy will get her arm to the apex. As soon as she reaches the apex, she’ll have to slide forward and release the ball without pulling and grabbing.

Out of the options you provided, pushing the ball out away from her on the first step seems to be a good way for Maria to improve her arm swing motion in bowling.

So your answer would be (A) pushing the ball out away from her on the first step.

A spring has a force of 2.0N and an extension of 0.30m. What will the extension be if the force applied is 6 N.


Will mark as brainliest

Answers

Answer:

0.9 m

Explanation:

Hooke’s Law

[tex]\large\boxed{F = ke}[/tex]

where:

F is the force in newtons (N).k is the 'spring constant' in newtons per metre (N/m).e is the extension in metres (m).

Given values:

F = 2.0 Ne = 0.30 m

Substitute the given values into the formula to find k:

[tex]\implies 2.0=0.30k[/tex]

[tex]\implies k=\dfrac{2.0}{0.30}[/tex]

[tex]\implies k=\dfrac{20}{3}\; \sf N/m[/tex]

To find the extension if the force applied is 6 N, substitute the found value of k and the given value of F into the formula and solve for e:

[tex]\implies 6=\dfrac{20}{3}e[/tex]

[tex]\implies 18=20e[/tex]

[tex]\implies e=\dfrac{18}{20}[/tex]

[tex]\implies e=0.9\; \sf m[/tex]

A sample of 0. 02 mol of oxygen has a temperature of 399 k and a volume of 5. 00 l. What is its pressure?.

Answers

Pressure (P) is 0.1309 atm.

Give a definition of an ideal gas?

A gas that meets the definition of an ideal gas has extremely small molecular volumes and molecular forces that have no impact on the behavior of the gas.

When the parameters are kept within the proper ranges throughout a large range around normal temperature and pressure, many gases, including nitrogen, oxygen, hydrogen, noble gases, some heavier gases like carbon dioxide, and mixtures like air, can be handled as ideal gases.

Given,

Number of moles n =  0. 02 mol

Temperature T = 399 k

Pressure P = ?

Volume V = 5L

The ideal gas constant is equal to 0.08206L atm/mol K.

Number of moles

n = P V/R T

0. 02 = P × 5/0.08206 × 399

0.02 = P × 5/ 32.741

0.65482 =  P × 5

P = 0.1309 atm.

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gravitation in words. An object weighing 140 N on the surface of the earth is moved to a position which is 6,7 × 10^6 m above the surface of the earth. 1.2 Calculate the percentage by which its weight will change.​

Answers

An object with mass attracts another object with mass; the magnitude of the force is directly proportional to the masses of the two objects and inversely proportional to the square of the distance between the two objects.

The percentage of Weight change =( 140-32.56) / 140  X100

                                     = 76.74 %.

How do you calculate the gravitational force?An object with mass attracts another object with mass; the magnitude of the force is directly proportional to the masses of the two objects and inversely proportional to the square of the distance between the two objects.The gravitational unit of force is the kilogram-force.An object with mass attracts another object with mass; the magnitude of the force is directly proportional to the masses of the two objects and inversely proportional to the square of the distance between the two objects.

F = force

G = gravitational constant

m_1 = mass of object 1

m_2 = mass of object 2

r = distance between centers of the masses

F =[tex]G \frac{ m_1 m_2}{r^2}[/tex]

F = 140N (object on the surface of the earth)

radius of the earth = 6 378.1 x 10^3 m

new distance = [tex]6.3781 x 10^6 + 6.7 x10^6. =13.07 x 10^6.[/tex]

F1/F2 =[tex](13.07 x10^6)^2/(6.3x10^6)^2[/tex].

F1/ F2 = 4.3

140 N /F2 = 4.3

F2 =140/ 4.3 = 32.56 N

The percentage of Weight change =( 140-32.56) / 140  X100

                                     = 76.74 %.

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At the micro level, what is the difference between an unmagnetized iron nail and a magnetized iron nail?.

Answers

The magnetic domains in an unmagnetized nail are oriented at random, which causes the net magnetism to sum to zero. Many of the magnetic domains in a magnetized nail are aligned.

What distinguishes a magnetized iron nail from an unmagnetized iron nail?

A magnetized iron nail has aligned domains, while an unmagnetized iron nail has domains that are orientated arbitrarily.

What is magnetic substance that isn't magnetized?

The material will be drawn to a magnet in its unmagnetized state but won't function as a magnet. In other words, two ferromagnetic materials that are not magnetically attracted to one another will not attract one another.

Why is an iron object that hasn't been magnetized drawn to a magnet?

Iron becomes magnetized when it is exposed to a magnetic field because the atoms start to align their electrons with the magnetic field's direction. The two magnetic objects then become attracted to one another as a result of this.

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A body is pulled along a horizontal plane by a constant force of 10N applied parallel to the plane

Answers

A body is pulled along horizontal plane by a constant force of 10N applied pavement to the plane. The work done in moving a distance 20m is (W)= 200 J.

What is work done?

When some amount of force is acted on the object and it moves some distance that means some work has been done on the object. It can be measured in Joule.

How can we calculate the work done?

To calculate the work done we are using the formula here is,

W=Fd

We are given here,

F= The amount of force acting on the body. = 10N

d= The distance the object move. = 20m

We have to calculate the values of work done = W

Now we put the values in the equation we get,

W= Fd

Or, W= 10*20

Or, W= 200N

From the calculation we can say that, The work done in moving a distance 20m is (W)= 200 J.

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A body is pulled along horizontal plane by a constant force of 10N applied pavement to the plane. calculate work done in moving a distance 20m

The distance between two successive crest is 5 m at
a frequency of 12 Hz.
(i) what is the wave velocity?
(Il)If there is a crest at × = 3m at time t, find three other positions of the crest at that instant. (iii) What time later will there be another crest at x =
3т?
(iv) If the amplitude of the wave is 1.5 m, write the equation of the wave.

Answers

A periodic or cyclic motion's wave velocity is the distance it travels in a unit of time (in any direction).(I) the wave velocity 60 m/s.(ii) The three other position of the crest are 8m, 13m, 18m (iii) time period= 0.083 sec (iv) equation of the wave y(x, t)= 1.3 sin (kx-ωt+Ф)

what is wave velocity?

In other terms, wave velocity is the distance travelled by waves in a unit of time. The definition of wave velocity is stated as the velocity associated with the disturbance propagating in the specified medium.It is also known as phase velocity.Depends upon nature of the medium.

(I) according to the wave velocity equation

v= wavelength* frequency= 5*12=60 m/s

(II) x=3m,

three other position of crest x1= x+λ= 3+5= 8m

x2= x+2λ= 3+10=13m , x3=x+3λ= 3+15=18m

(iii)  time period= 1/ frequency=0.083 sec

(iv) amplitude given= 1.5 m

equation of wave y(x, t)= A sin (kx-ωt+Ф)

k=  wave number

ω=angular frequency

A= amplitude of wave

x= horizontal position variable

t=time period

Ф=Phase

equation of the wave

y(x, t)= 1.3 sin (kx-ωt+Ф)

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A baseball is thrown at an angle of 29° relative to the ground at a speed of 29.8 m/s. The ball is caught 76.7687 m from the thrower.
The
acceleration due to gravity is
9.81 m/S'
2
How long is it in the air?
Answer in units of s.

Answers

Answer:

2.94 sec

Explanation:

Horizontal component of velocity =  29.8 cos 29°

  Rate * time = distance

    29.8 cos 29   *   t   =  76.7687 m

              t = 2.94 sec

In a summer storm, the wind blows with a velocity of 8 m/s north. Suddenly in 3 seconds, the wind's velocity is 23 m/s south. What is the wind's acceleration?​

Answers

Initial velocity = 8 m/s

Final velocity = 23 m/s

Time for the velocity change  = 3 s

By definition, the average acceleration is

(23 - 8)/3 = 5 m/s²

Answer: 5 m/s²

Hope this helps!! have a great rest of your day!

wo coaxial aluminum tubes are 30 cm long. the outer diameter of the inner tube is 3 cm, the inner diameter of the outer tube is 4 cm. when these are connected to a 45 volt battery, how much energy is stored in the electric field between the tubes?

Answers

Energy is stored in the electric field between the tubes is 5.85 x 10-11 J.

What is electric field?

Any charge results in an electric field being connected to a specific spot in space. The value of E, often known as the electric field strength, electric field intensity, or just the electric field, expresses the magnitude and direction of the electric field. Without any precise information of what created the field, knowing the value of the electric field at a certain location is sufficient to predict what would happen to nearby electric charges.

We have inner tubes.

A1 = \pi ro2 = (3.14) [(0.03 m) / 2] 2

A1 = (3.14) (0.000225 m2) (0.000225 m2)

A1 = 0.0007065 m2

We have outer tubes.

A2 = \pi ri2 = (3.14) (3.14) [(0.04 m) / 2] 2

A2 = (3.14) (0.0004 m2) (0.0004 m2)

A2 = 0.001256 m2

The conducting tubes' total area is provided by -

A = (0.0007065 m2) + (0.001256 m2) (0.001256 m2)

A = 0.0019625 m2

We have a formula that yields

(8.85 x 10-12 C2/Nm2) (0.0019625 m2)/d = C = varepsilon0 A (0.3 m)

C = 5.78 x 10-14 F

The energy stored in the electric field between the tubes when these are coupled to a 45 volt battery is provided as:

U = (1/2) C V2 = (0.5) (5.78 x 10-14 F) (45 V)

U = 5852.2 x 10-14 J

U = 5.85 x 10-11 J

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10. Light travels at 3.00 x 10^8 m/s. How far does it travel in 1.00 year? This distance is known as a "light-year". (Hint: calculate how many seconds there are in a year.)

Answers

The speed of light is 3.00 x 10^8 meters per second. A "light-year" is the measurement for this distance.

time = 31536000 seconds

First, We have to calculate the number of seconds in a year.

time = (365 days)

(24 hours/day)

(3600 seconds/hour)

time = 31536000 seconds

We can calculate the distance that light travels in this many seconds. distance = speed x time

distance = (3.00 x 10^8 m/s) (31536000 seconds)

distance = 9.46 x 10^{15} meters

A light year is 9.46 x 10^{15} meters

What is light year?

A light-year, also spelled lightyear, is a significant unit of length that is used to express astronomical distances. It is roughly 9.46 trillion kilometers in length.

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compared to a giant iceberg, a hot cup of coffee has

Answers

compared to a giant iceberg, a hot coffee cup has a higher temperature but low internal energy.

The temperature of a hot cup of coffee is higher because the average kinetic energy of the molecules of hot coffee are higher than the molecules of a giant ice cap. If we put a thermometer in both, we would clearly see the difference.

Despite having a higher temperature, hot coffee has lower internal energy as compared to icebergs because the giant iceberg contains a lot of particles whose combined energy will make the total internal energy of the iceberg much larger than the hot coffee cup.

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An electric lamp rated at 48 watts,12volts supply. Calculate the current flow in the lamp and the resistance.

Answers

Let's use the formula of power.

[tex]P=I\cdot V[/tex]

Where P = 48 watts and V is 12 volts, let's use these magnitudes and solve for I.

[tex]48W=I\cdot12V[/tex]

Divide both sides by 12V.

[tex]\begin{gathered} \frac{48W}{12V}=\frac{I}{12V}\cdot12V \\ I=4A \end{gathered}[/tex]Therefore, the current flow in the lamp is 4 A.
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