Two bullets are fired at the same time with the same kinetic energy.
If one bullet has twice the mass of the other, what is the ratio of the speed of the lighter bullet to the speed of the heavier?
Which can do the most work?

Answers

Answer 1

The ratio of the speed of the lighter bullet to the speed of the heavier will be four times the heavier bullet.

Both can do same amount of work.

What is kinetic energy?

Kinetic energy of a body is the energy due to the motion of the body.

Kinetic energy = mv²/2

where m is mass and v is velocity of the object.

Since both objects have the same kinetic energy but one bullet has twice the mass of the other, the ratio of the speed of the lighter bullet to the speed of the heavier will be four times the heavier bullet.

The kinetic energy of both bullets is the same. Hence, they can do equal amount of work.

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Related Questions

Two 78.5-kg hockey players skating at 4.47 m/s collide and stick together.
If the angle between their initial directions was 120 ∘, what is their speed after the collision?

Answers

2.235 m/s is their speed after the collision .

What is momentum ?

Momentum, the product of a particle's mass and its velocity. Momentum is a vector quantity. It has both magnitude and direction. Isaac Newton's second law of motion states that the rate of change of momentum over time is equal to the force acting on a particle. See Newton's Laws of Motion.

From Newton's second law,  if a particle is subject to a constant force over a period of time, the product of that force and the time interval (momentum) equals the change in momentum. Conversely, the momentum of a particle is a measure of the time it takes for a constant force to come to rest.

This is an inelastic collision , the momentum is conserved

v = 4.47 x cos(60)

= 2.235 m/s

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For a specific gas, how does its emission spectrum relate to its absorption spectrum?

a) Bright lines in its emission spectrum have different wavelengths than the dark lines of its absorption spectrum.
b) They do not relate directly.
c) Dark lines in its emission spectrum have the same wavelengths as the bright lines of its absorption spectrum.
d) Bright lines in its emission spectrum have the same wavelengths as the dark lines of its absorption spectrum.

Answers

Bright lines in its emission spectrum have the same wavelengths as the dark lines of its absorption spectrum. Hence, option (d) is correct.

What are emission spectrum and  absorption spectrum?

The electromagnetic radiation spectrum that is emitted when an atom or molecule changes from a high energy state to a lower energy state is known as the emission spectrum of a chemical element or chemical compound.

Absorption spectrum: An electromagnetic spectrum where a drop in radiation strength at particular wavelengths or ranges of wavelengths indicative of an absorbing substance (such as chlorophyll) is particularly visible as a pattern of dark lines or bands, in contrast to emission spectrum.

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WILL GIVE BRAINLEST PLS HELP ASAP
1 Select the correct answer. The motion of a car on a position-time graph is represented with a horizontal line. What does this indicate about the car’s motion? A. It’s not moving. B. It’s moving at a constant speed. C. It’s moving at a constant velocity. D. It’s speeding up.

Answers

Answer:

B, it's moving at a constant speed

An 800kg roller coaster is at the top of a hill (the hill radius is 7m) moving with a speed of 4 m/s. What is the normal force on the roller coaster at this point?

Normal Force =____ N (round to the nearest tenth)

Answers

Explanation:

normal force = mass times gravity

Fn = MG

Fn=?

M=800kg

G=4m/s

Fn = 800*4

Fn = 3200 N

In 1933, work by Irène and Frédéric Joliot-Curie proved Einstein’s prediction. They produced:
A. the first working model of a nuclear bomb.
B. an equation to calculate the fusion reaction inside a star.
C. produced an x-ray crystallography image of a nucleus.
D. produced a photograph that showed the creation of two particles when a particle of light was destroyed.

Answers

D. produced a photograph that showed the creation of two particles when a particle of light was destroyed.

In 1933, Irène and Frédéric Joliot-Curie produced a photograph that showed the creation of two particles when a particle of light was destroyed, which was Einstein's prediction in the concept of pair production, which was a process in which two particles are created when a photon is absorbed. This photograph was the first experimental evidence of this process, which was a significant discovery in the field of nuclear physics.

Consider a radioactive sample with a half-life of one week. How much of the original sample will be left at the end of the second week? The third week? The fourth week?

Answers

2nd week's end 25% of or 1/4th original amount 3rd week's end- 12.5% of or 1/8th the original amount 4th week's end 6.25% of or 1/16th original amount [the amount gets half with every passage of half-life period]

What is Radioactivity ?

The ability of some forms of materials to spontaneously release energy and subatomic particles is known as radioactivity. In essence, it is an attribute of certain atomic nuclei.

Unstable nuclei either spontaneously decay or decay into more stable structures, but only in a limited number of ways that produce a limited range of electromagnetic energy or particles. Some naturally occurring elements and man-made isotopes of elements exhibit radioactive decay.

for every week it will become half of present week ..

suppose if u have A now, after 1 week it will become a/2..

next week it becomes half of a/2 i.e a/4

by applying same rule, given half life period as 1 week , we get

first week = 50%

second week = 25%

third week = 12.5 %

fourth week = 6.25 % of original

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The two graphs in (Figure 1) are for two different vertical mass/spring systems.
0 t (s) 12
Part A
What is the frequency of system A?
Express your answer using two significant figures.
Part B
What is the first time at which the mass of system A has maximum speed while traveling in the upward direction?
Express your answer using two significant figures.
Part C
What is the period of system B?
Express your answer using two significant figures.
Part D
What is the first time at which the mechanical energy of system B is all potential?
Express your answer using two significant figures.
Part E
If both systems have the same mass, what is the ratio kA/kB of their spring constants?
Express your answer using two significant figures.

Answers

We have two graphs for two different vertical mass spring systems that are relevant to this query. We have to explain in the first section that the frequency is the system frequency.

A Because of this, we can observe that the time period Or for solutions is 34 a from the graph. It is four seconds since we know that one cycle takes one second to complete, and one cycle takes four seconds to complete. Thus, this time frame applies.

As a result, we can observe that the frequency will be one upon the And that is 1.4, which is 0.25, if A is equal to this. Therefore, the integration of the 50 frequency, number information. We must mention that when using the mask for the first time, it moves at its fastest pace while moving in an unfavorable direction toward 50.

Since we are aware that it is maximum at the mean position, at which the displacement is zero, we must inform you that I am currently in second place. Inferring from the graph that a's displacement on the time axis is zero at three seconds Consequently, it equals 23 seconds. We can see that the maximum is, in fact, quite the maximum.

The system's time period must be determined in the following section, and we must state when the mechanical energy was initially used. which also applies to kinetic energy. As a result, we can state that from the perspective of the time. The cycle does end after six seconds. It lasts for six seconds. And as we are aware, there is no kinetic energy at the extreme point. So, at the extreme, kinetic energy is equal to both zero and the potential of one mechanical energy.  Therefore, an extreme point is where there is a maximum amount of displacement on either side.

Thus, we may still perceive that. To 1.5 seconds, he moves. Given that this is the extreme point, we obtain the total energy as mechanical energy. A maximum displacement point is there. No, in the following one we must ensure that both systems have the same mask. By using M by K as masses as the under root, the risk taken is equal to these two. Directly proportionate to one upon under the root of K is the same time period. That contrasts with a K note from KB. We can observe that the value of K upon kb is obtained from here. 2.25 has been vanquished there.

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In Young's double slit experiment, the bright spots correspond to
O regions of constructive interference
O regions of either constructive or destructive interference
O regions of destructive interference

Answers

In Young's double slit experiment, the bright spots correspond to regions of constructive interference.

Thomas Young carried out an experiment in 1801, which contributed to the debunking of the light-wave hypothesis. Since Isaac Newton's late 1600s proposal, the wave theory of light has been the preeminent explanation for how light moves across space. However, Young's experiment also served to highlight certain flaws in the wave theory. The Young's Double Slit Experiment involves shining a coherent light source—like a laser—on a screen that has two slits cut into it. Coherent light waves going through the two slits interfere with one another, resulting in the interference pattern behind the slits seeming like a wave.

Coherent light emits a distinctive interference pattern of dark and bright bands on a screen with two apertures. The wavelength of the light is closely correlated with the separation between the light bands. This finding demonstrated that light acts as a wave and backed the wave theory of light over Newton's particle theory.

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a dog runs 25 meters over 4 seconds what is the dog’s average speed

Answers

Answer:

The dog's average speed is 6.25 m/s.

Explanation:

To calculate the dog's average speed, you would divide the distance traveled (25 meters) by the time it took to travel that distance (4 seconds).

Average speed = distance / time

Average speed = 25 meters / 4 seconds

Average speed = 6.25 m/s (meters per second)

Answer:6.25 m/

Explanation:average speed =distance/time

write the balanced nuclear equation for the formation of polonium−215 through α decay.

Answers

The balanced nuclear equation for the formation of polonium-215 through alpha decay is:

[tex]At_{211} +4He - > Po_{ 215}+ 2 n[/tex]

Polonium-215 is an isotope of the element polonium that is formed through alpha decay. In alpha decay, a parent atom loses an alpha particle, which is a helium nucleus, to form a daughter atom. In the case of polonium-215, the parent atom is astatine-211, which loses an alpha particle (4He) to form polonium-215 (215Po) and also two neutrons (2n). The process is represented by the equation 211At + 4He → 215Po + 2n. This equation shows that the total atomic number and mass number are conserved on both sides of the equation. It's important to note that alpha decay is one of the common types of decay in the heavy elements but not all elements can decay by alpha emission.

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HELP!!!!! a 3 kg mass is moving 14.2 m/s east and collides with a 8 kg mass moving 8.2 m/s west. After the elastic collision, what is the velocity of the 8 kg mass? (east is positive and west is negative in terms of direction)

Answers

After the elastic collision, velocity of the 8 kg mass is calculated as 13.525 m/s.

What is elastic collision?

A collision in which there is no net loss in kinetic energy in the system as a result of the collision is called  an elastic collision. Momentum and kinetic energy are conserved quantities in elastic collisions.

m1v1i + m2v2i = m1v1f +m2v2f

m1 =3 kg  ; v1i = 14.2 m/s

m2 = 8kg ; v2i= 8.2 m/s

v1f= 0

v2f = m1v1i + m2v2i / m2

= (3* 14.2) + (8 * 8.2)/8

V2f = 13.525 m/s

Velocity of the 8 kg mass is 13.525 m/s.

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You are in the year where the earth has no more land available for houses you decide to build an apartment up and need things to survive in each earths 5 layers (troposphere,stratosphere, mesosphere, thermosphere, exosphere) Question: what things would you need to survive the thermosphere(really hot it is 2000 degrees fahrenheit)

Answers

You would need to survive the thermosphere: The temperature ( 2000° C or more), the cosmic radiation and charged particles.

What is thermosphere?

The layer of the Earth's atmosphere known as the thermosphere is situated above the mesosphere and under the exosphere. The thermosphere is the bigger portion of the ionosphere because ultraviolet energy inside this layer of the atmosphere promotes photoionization/photodissociation of molecules, creating ions.

The remaining atmospheric gases stratify at these high elevations according to molecular mass. As a result of the sun's intensely powerful energy being absorbed, atmospheric temperatures rise with altitude. Temperatures, which can reach 2,000 °C or higher, are largely reliant on solar activity.

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Mass- 1.50 kg. Angle- 34.4. Coefficient of friction 0.350. find net force and acceleration. Use degrees not radians

Answers

The gravitational force has an acceleration of 14.

What is gravity?Gravity, also called gravitation, in mechanics, the universal force of attraction acting between all matter. It is by far the weakest known force in nature and thus plays no role in determining the internal properties of everyday matter. On the other hand, through its long reach and universal action, it controls the trajectories of bodies in the solar system and elsewhere in the universe and the structures and evolution of stars, galaxies, and the whole cosmos. On Earth all bodies have a weight, or downward force of gravity, proportional to their mass, which Earth’s mass exerts on them. Gravity is measured by the acceleration that it gives to freely falling objects. At Earth’s surface the acceleration of gravity is about 9.8 metres (32 feet) per second per second. Thus, for every second an object is in free fall, its speed increases by about 9.8 metres per second. At the surface of the Moon the acceleration of a freely falling body is about 1.6 metres per second per second.

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A 250 g ball travels at a velocity of 40 m/s. Its momentum is

Answers

The momentum of a 250 g ball travelling at 40 m/s is 10 kg m/s.

What is velocity?

Velocity is a measure of the rate of change in a physical quantity over time. It is a vector quantity, meaning it is composed of both magnitude and direction. Velocity measures the speed of an object at a specific point in time, as well as the direction of its motion.

Momentum is a vector quantity, meaning it has both a magnitude and a direction. In this case, the magnitude of the momentum is 10 kg m/s and the direction is the same as the velocity, i.e. 40 m/s.

Momentum is a product of mass and velocity. It is calculated by multiplying mass (in kg) by velocity (in m/s) and then multiplying the answer by the direction of the velocity (1 for positive and -1 for negative). In this case, the momentum is calculated as follows:

Momentum = Mass x Velocity x Direction
= 250 g x 40 m/s x 1
= 10 kg m/s

In physics, the law of conservation of momentum states that the total momentum of a system remains constant. This means that if an object has a certain momentum, it will keep this momentum unless an external force acts on it to change it. The only way to change the momentum of the 250 g ball travelling at 40 m/s is to apply an external force to it, such as a collision or a frictional force.

In conclusion, the momentum of a 250 g ball travelling at 40 m/s is 10 kg m/s. This momentum can only be changed by applying an external force to the ball.

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A monatomic ideal gas expands from point A to point B along the path shown in the drawing. (a) Determine the work done by the gas. (b) The temperature of the gas at point A is 185 K. What is its temperature at point B? (c) How much heat has been added to or removed from the gas during the process?

Answers

An ideal monoatomic gas with 2 moles expands from its initial state (P0V0) to its end state. The answer is (3/2)(PBVB - PAVA) (PBVB - PAVA)

The noble gases argon, krypton, and xenon are some examples. Therefore, the amount of work done as a gas expands is equal to the product of the gas's pressure and its change in volume. One joule, by definition, is the amount of work required to move an item one meter with a force of one newton.

In a perfect monatomic gas,

U(T) = (3/2)nRT ⇒

ΔU = (3/2)nRΔT

T is the exact temperature.

R is the global gas constant.

The number of moles is n.

T = TB — TA — PBVB (nR) - PAVA/(nR) (nR)

T = (3/2)nR, and

U = (3/2)nR. PAVA/(nR) - PBVB/(nR)

= (3/2)(PBVB - PAVA) (PBVB - PAVA)

Insert the appropriate PB, VB, PA, and VA.

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An object with a large momentum...
is easy to change the motino of
must have a large mass
is difficult to change the motion of
must have a large velocity

Answers

is difficult to change the motion of

As we know that momentum is calculated by the multiplication of the Mass and Velocity of anybody and for getting large momentum we need any of them or both large.

Let's take the example of large velocity for large momentum. As the body has a large velocity, it is not going to be easy to change the motion of the body with a large velocity. So in this case is difficult to change the motion of the body. Just like a bullet of a gun has large momentum the motion is really hard to change even if the bullet has very less mass.

Now let's talk about a body with a large mass. As the body has a large mass will lead to a larger the momentum of body and again it will not be easy to change the motion of the body. Take an example of a large loaded truck even if it is at low speed it is now easy to change its motion, As it has a huge mass.

Now when even one out of Mass and velocity is large then the motion of the body is hard to change and if both are large then it will become harder to change it. Take an example of a freight train that has a huge mass and it is moving at more than 100 kmph then it will not be possible to handle to change its path so it most of the time moves slowly.

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The sixth energy level can hold up to 32 electrons.
How many orbitals are in energy level 6?

Answers

The 7 - 16 orbitals are in energy level 6.

What is orbitals ?

A mathematical function called orbitals in physics and chemistry illustrates the wave-like behaviour of an electron or a pair of electrons in an atom. Using this function, one can figure out the likelihood of discovering an electron near the nucleus.

What is energy level ?

Energy level, also known as energy state, is any discrete value from a range of total energy values for a system of subatomic particles, such as an atom or a nucleus, that are constrained by a force in a finite region.

Therefore, 7 - 16 orbitals are in energy level 6.

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What is the surface area of disk if it's circumstance is 30cm?

The area of the disk, AD = ㅤㅤ Units.

Answer the same question for a perfect square with the perimeter 30cm.

The area of the square, As = Units.

Answers

The surface area of the disk is π x (15cm)2 = 706.858 cm2.

The area of the square is (30cm)2/4 = 225 cm2.

What is  surface area ?

Surface area is a measurement used to describe the total area of a two-dimensional object such as a flat surface or a curved surface. It is measured in units such as meters squared (m2) or feet squared (ft2). Surface area is an important concept in geometry and calculus, as it can help to determine the size of an object and the total area of a shape. It can also be used to calculate the surface area of a 3D object such as a sphere, cone, or cylinder. Surface area is also used to measure the amount of air or water on a surface, for example to determine the surface area of a lake. It can also be used to calculate the area of a room or a building, as well as the area of a plot of land.

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What is the temperature of a gas in which the atoms are moving very, very rapidly?
O cold
O room temperature
O hot​

Answers

The temperature of a gas in which the atoms are moving very, very rapidly is hot.

The correct option is C.

What is temperature?

Temperature is defined as the degree of hotness or coldness of something.

Temperature increase results when heat energy is added to a substance resulting in an increase in the kinetic energy of the partticles of the substance.

The effect of temperature increase on substances includes an increase in the motion of the particles of the substances, a color change, an increase in pressure for gases, etc.

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Compared to the mass of a uranium nucleus before splitting, the pieces it splits into have O more mass O the same mass. O less mass.

Answers

Compared to the mass of a uranium nucleus before splitting, the pieces it splits into have less mass.

What is mass?
Mass
is the measure of an object's quantity of matter. It is measured in kilograms and is calculated by multiplying the object's density by its volume. Mass is an intrinsic property of an object and is independent of its location in the universe. It is inversely proportional to the acceleration due to gravity, meaning that the more massive an object is, the less it is affected by gravity. Mass is also the source of an object's inertia, which is the resistance of an object to change its motion. The total mass of a system is conserved throughout any transformation, meaning it cannot be created or destroyed. Mass is an important concept in physics and can be used to calculate the effects of force, energy, and momentum.

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Input. Output and storage devices are part of a computer hardware.
O True
O False

Answers

the answer would be true
Your answer will come to as true :)

A) Which metals exhibit the photoelectric effect for light with ? =400nm ?Which metals exhibit the photoelectric effect for light with ?
O sodium
O copper
O gold
B)Which metals exhibit the photoelectric effect for light with ?=250nm?
O gold
O iron

Answers

Only sodium work function is less than the energy of the photon

max Kinetic Energy (Kmax) = Ephoton - Wfunction.

What is Work Function?

When a free electron tries to leave the metal surface, this positive charge pushes it back. For electrons, this force creates a "surface barrier." Only until external energy is used to break through the surface barrier will the free electrons be able to escape the metal surface. "Electron emission" is the process of releasing electrons from a metal surface.

The work function of a metal is the amount of additional energy required to remove an electron from a metal surface barrier. The term "work function" refers to the minimal amount of energy needed for an electron to simply escape from the metal surface.

Energy of a photon of wavelength (lambda) 400 nm = hf = hc/lambda = 3.105 eV

Work functions of

Sodium = 2.28 eV

Copper = 4.7 eV

Gold = 5.1 eV

In order for the metals to exhibit the photoelectric effect, their electrons must absorb a photon of energy that is greater than their work functions!

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Which color of light will generate photoelectrons with the highest kinetic energy?
(Remember, a photoelectron is an electron that absorbed a photon.)
Near Ultraviolet
Violet
Green
Blue
Yellow

Answers

Violet light has the highest frequency, hence. Consequently, violet light has the most energy.

Violet light has the shortest wavelength of all visible light, giving it the most energy. The longest wavelength and lowest energy are found in radio waves. Yellow light is less energetic than green light. This is due to the fact that yellow light's wavelength is 580 nanometers, whereas green light's is 550 nanometers. The highest energy photons ever observed have been discovered by a team of Chinese and Japanese astronomers. These photons are gamma rays with energies up to 450 trillion electron volts (TeV). Violet light has the highest frequency, hence. Consequently, violet light has the most energy.

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A student notices that the image produced from a large concave mirror of a distant skyscraper (h = 59 m) is inverted and the magnitude of the height is |hi| = 1.07 m tall. The image is located d = 175 cm in front of the mirror. ds = - d h/hi ds = 96.49 m Numerically, what is the focal length of the mirror, f , in cm

Answers

The focal length of a concave mirror of distant skyscraper is  127.65 cm.

The formula for the focal length of a concave mirror is:

1/f = (1/d) + (1/di)

Where d is the distance from the object to the mirror, di is the distance from the image to the mirror, and f is the focal length.

Given that d = 175 cm and |hi| = 1.07 m, we can calculate the distance from the image to the mirror (di) as follows:

di = (h/|hi|) * d = (59 m / 1.07 m) * 175 cm = 96.49 m

Now we can use this value of di in the above mentioned formula to get the focal length of the mirror :

1/f = (1/d) + (1/di) = (1/175 cm) + (1/-96.49 m)

f = -1/((1/175 cm) + (1/-96.49 m))

f = -1/(1/175 cm - 1/96.49 m)

f = -175 cm / (-1.085)

f ≈ 127.65 cm

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A car drives 215 KM East, and then 45 KM North what is the magnitude of the crisis appointments round your answer to the nearest
whole number?

Answers

So, the magnitude of the crisis appointments to the nearest whole number is 220 km.

Introduction and Formula Used

Hi! Here I will help you to discuss the displacement of a movement. Unlike distance which is a scalar quantity, displacement is a vector quantity. Then, we can define the distance as the shortest distance from two points of two or more movements. In this case, the car's motion is from east to north. Remember that the angle formed between east and north is mutually perpendicular (90°). So, we can calculate the magnitude of the displacement that occurs in two mutually perpendicular movements with this equation:

[tex] \boxed{\sf{\bold{s = \sqrt{(x_1)^2 + (x_2)^2}}}} [/tex]

With the following condition:

s = the displacment[tex] \sf{x_1}[/tex] = the distance of first movement[tex] \sf{x_2}[/tex] = the distance of second movementProblem SolvingWe know that:[tex] \sf{x_1}[/tex] = the distance after first movement = 215 km to the east.[tex] \sf{x_2}[/tex] = the distance after second movement = 45 km to the north.What was asked:s = the displacment or crisis appointment = ... kmStep by step:

[tex] \sf{s = \sqrt{(x_1)^2 + (x_2)^2}} [/tex]

[tex] \sf{s = \sqrt{(245)^2 + (45)^2}} [/tex]

[tex] \sf{s = \sqrt{46,225 + 2,025}} [/tex]

[tex] \sf{s = \sqrt{48.250}} [/tex]

[tex] \sf{\bold{s \approx 219,66 \: km}} [/tex]

Conclusion

So, the magnitude of the crisis appointments to the nearest whole number is 220 km.

A 0.0300-kg bullet is fired vertically at 200.0 m/s into a 0.159-kg baseball that is initially at rest. The bullet lodges in the baseball and, after the collision, the baseball/bullet rise to a height of 37.0 m. Assume up to be the positive direction. What was the average force of air resistance while the baseball/bullet was rising? If the force is upward, enter a positive answer and if the force is downward, enter a negative answer.

Answers

The average force of air resistance while the baseball/bullet was F=-0.94N

Given:

mbullet=0.030 kg

vbullet=200m/s

mbasketball=0.15kg

To solve the velocity after collision, we will use the conversation of momentum

m₁v₁=m₂v₂

[tex]v_{2} =\frac{m_{1}v_{1} }{m_{2} }[/tex]

since the baseball is at rest before the collision, the initial momentum can be calculated purely from the bullet

m₁=mbullet=0.030kg.

v₁=vbullet=200m/s

However, since the bullet lodges to the baseball after the collision, the mass after the collision should be

m₂=mbullet+mbaseball

m₂=0.030kg+0.15kg

m₂=0.18kg

plugging in the values to the equation of v₂

v₂=(0.030)(200)/0.18

v₂=33m/s

To calculate the average force air resistance, we must first determine the work done by the air on the bullet and baseball

-Wair=Wbullet+baseball-Wgravity

Since work done by the bullet and baseball is purely kinetic energy, it can be expressed as

[tex]Wbullet+baseball=\frac{1}{2}mv^2[/tex]

On the other hand, the work done by gravity is purely potential thus

Wgravity=mgh

we can now express the work done on the air as follows

[tex]Wair=\frac{1}{2} mv^2+mgh[/tex]

plugging the given values

[tex]Wair=\frac{1}{2} (0.18)(33.333)^2+(0.18)(9.8)(37)[/tex]

Wair=-34.73J

We will now use the work equation to calculate the average force of air resistance:

W=Fd

[tex]F=\frac{W}{d} \\\\F=\frac{-34.73}{37}[/tex]

F=-0.97N

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A 1.5-kg ball is thrown at 10 m/s. What is the ball's momentum?

Answers

Explanation: Momentum: It is defined as the motion of a moving body. Or it is defined as the product of the mass or velocity of an object.

The formula of momentum is: p=mt

where,  

p = momentum =?

m = mass = 1.5 kg

v = velocity = 10 m/s

Now put all the given values in the above formula, and we get:

p = 1.5 kg * 10 m/s

p = 15kg.m/s

Therefore, the momentum of the ball is 15 kg.m/s

What dielectric material, if any, in the table is your best choice for all three applications?
1) polycarbonate
2) polyester
3) polypropylene
4) polystyrene
5) pyrex
6) No single material is best for all three categories

Answers

No single material is best for all three categories. Each application may require a different dielectric material depending on performance requirements.

What is  Dielectric material ?

A dielectric material is a non-conductive material that is used to provide electrical insulation between two conductors. It is also used to store electrical energy in the form of an electric field. Common dielectrics include plastic, glass, rubber, and oil. Dielectric materials are also used in capacitors, which are devices that store electrical energy in the form of an electric field. The dielectric material between the capacitor plates controls the electric field strength, allowing the capacitor to store more energy. Dielectric materials also have high dielectric constants, which allow them to store more energy in a given volume

What does Capacitors means?

Capacitors are electronic components that store electric charge. They have two terminals and act as a short-term energy storage device. They are used in a wide variety of applications such as filtering, energy storage, timing, and signal processing. In a circuit, capacitors are connected in series or parallel to increase the capacitance. This increases the ability of the capacitor to store electrical energy. When a voltage is applied to the capacitor, it accumulates electric charge. This charge can then be released when needed.

Therefore the correct option is 6. No single material is best for all three categories

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Which of the following best describes the motion of a working gyroscope moving through space? a. the gyroscope both translates and rotates b. the gyroscope rotates, abut does not translate c. the gyroscope neither translates nor rotates d. the gyroscopes translates, but does not rotates

Answers

The best description of  the motion of a working gyroscope moving through space is the gyroscope both translates and rotates.

What is gyroscope?

An instrument used to determine or maintain orientation and angular velocity is a gyroscope. It consists of a spinning wheel or disc mounted onto a set of three gimbals, which are pivoted supports that allow the rotation of the wheel or disc about a single axis. A good example of a gyroscope is a spinning top. It can maintain its orientation when spinning around its vertical axis, as the gyroscopic effect causes it to remain level. Gyroscopes are used in a variety of applications, ranging from navigation and astronomy to robotics and aircraft control systems. In navigation, gyroscopes measure the rate of rotation around the vertical axis, allowing navigators to determine the aircraft’s heading.

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can opinion lead to truth?

Answers

Answer:

No

Explanation: An opinion is a judgment, viewpoint, or statement that is not conclusive, rather than facts, which are true statements.

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