A 59 kg physics student is riding her 220 kg Harley at 12 m/s when she has a head-on collision with a 2.1 kg pigeon flying the opposite direction at 44m/s. The bird is still on the motorcycle after the collision. How fast is the motorcycle going after the collision?

Answers

Answer 1

Answer:

Explanation:

Using conservation of momentum

[tex]m_1=59+220=279kg[/tex]

[tex]m_2=2.1kg[/tex]

[tex]U_1=12m/s[/tex]

[tex]U_2=-44m/s[/tex]

[tex]m_1U_1+m_2U_2=(m_1+m_2)V\\\\\frac{278\times 12-2.1\times 44}{279+2.1}=V\\\\V=11.58m/s[/tex]

Answer 2

The velocity of the motorcycle after collision is 11.6 m/s.

Conservation of linear momentum

Using the principle of conservation of momentum, the total momentum of the system remains constant. Hence, momentum after collision must be equal to momentum before collision.

Thus;

[(55 + 220) Kg * 12 m/s] +  2.1 kg * (-44m/s) = (55 + 220 + 2.1) v

3300 - 92.4 = 277.1v

v = 3300 - 92.4/277.1

v = 11.6 m/s

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Related Questions

What’s the difference between 40hz and 300hz

Answers

Answer:

40hz has less frequency of sound and 300hz has more frequency of sound which means 40hz has less crest and troughs , so it has less reachability thank 300hz.

Explanation:

How much momentum does a 5 kg bowling ball have when its traveling at a velocity of 8 m/s? Question 6 options: 40 kg*m/s 0.625 kg*m/s 3 kg*m/s 1.6 kg*m/s

Answers

Answer:

The momentum of the bowling ball is 40 kg m/s.

Explanation:

Momentum is defined as the product of mass and velocity acting on that object. So it is a measure of the change in the velocity for the given force with the mass of the object.

Momentum = Mass × Velocity.

As the mass of the object is given as 5 kg and the velocity is given as 8 m/s, then the momentum will be

Momentum = 5 kg × 8 m/s = 40 kg m/s.

So, the momentum of the bowling ball is 40 kg m/s.

Which of Newton's Three Laws Applies? Law 1, 2, or 3?
Pushing a cart down the hall, when you try to turn it it tries
to go straight.
More acceleration takes more force.
When you push your knuckles into a table, it hurts your knuckles.
A ball thrown into the ground bounces back up.

Answers

Answer:

1. Newton's first law

2.Newton's second law

3.Newton's third law

Explanation:

1. Newton's first law stated, In an inertial frame of reference, an object either remains at rest or continues to move at a constant velocity, unless acted upon by a force... this is base of the concept of inertia.

2. Newton's second law stated, In an inertial frame of reference, the vector sum of the forces F on an object is equal to the mass m of that object multiplied by the acceleration a of the object: F = ma, or in easier words, F is directly proportional to a.

3. Newton's third law stated, When one body exerts a force on a second body, the second body simultaneously exerts a force equal in magnitude and opposite in direction on the first body., In this case, the Normal Are opposite with gravititional force.

Final answer:

The question is about applying Newton's Three Laws in different scenarios.

Explanation:

The subject of this question is Physics and the grade level is High School. Let's analyze each statement to identify which of Newton's laws applies:

The first statement describes the concept of inertia, which is explained by Newton's First Law. When you try to turn the cart, it resists the change in motion and tries to go straight.The second statement relates to Newton's Second Law, which states that acceleration is directly proportional to the force applied. Therefore, more acceleration requires more force.The third statement is an example of Newton's Third Law. When you push your knuckles into a table, the table exerts an equal and opposite force, causing discomfort.The fourth statement is related to Newton's Third Law as well. When the ball hits the ground, the ground exerts an upward force, causing the ball to bounce back up.

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liquid helium has a temperature of 4k what is the temperature on celsius and fahrenheit?

Answers

Answer:

a.—269°C

b. —452.2°F

Explanation:Please see attachment for explanation

What determines if an object will float or sink in a fluid?
A. Size
B. Mass
c. Weight
D. Density

Answers

Density! I don’t remember that well but if you search it up you’ll get an answer! If the object in between a certain number it will sink nor float
Density is the answer

What is the energy equivalent of an object with a mass of 4.1 kg?
1.2 x 109 J
1.4 x 1035 J
3.5 1018 J
3.7×1017 J

Answers

Answer:

The energy equivalent of an object with a mass of 4.1 kg is 3.7 ×[tex]10^{17}[/tex] J.

Explanation:

One of the significant findings of Einstein is the mass energy equivalence. According to this law, the energy is equivalent to the product of mass and square of velocity of light.

Thus, the equation became E = m[tex]c^{2}[/tex]

As here ,the mass is given as 4.1 kg and c is known as 3×[tex]10^{8}[/tex] m/s, then the energy equivalence of this object will be

E = 4.1 × 3 × 3 ×[tex]10^{16}[/tex] J = 4.1 × 9 × [tex]10^{16}[/tex]J = 36.9×[tex]10^{16}[/tex] J= 3.7 ×[tex]10^{17}[/tex] J.

Thus, the energy equivalence of object with mass of 4.1 kg is 3.7 ×[tex]10^{`17}[/tex] J.

Answer:

D

Explanation:

Scientists track _________________ to be able to predict geomagnetic storms and technological disturbances on Earth

A. sunspots and solar storms

B. coronal hot spots & magnetic flares

C. photospheric emissions

Answers

A. Sunspots and solar storms

Answer:

A

Explanation:

a child sleds down a steep snow-covered hill with an acceleration of 3.94 m/s^2. if her initial speed is 0.0m/s and her final speed is 21.1 m/s, how long does it take for her to travel from the top of the hill to the bottom?

Answers

The time taken is 5.36 s

Explanation:

The motion of the child is a uniformly accelerated motion, therefore we can use the following suvat equation:

[tex]v=u+at[/tex]

where

a is the acceleration

u is the initial  velocity

v is the final velocity

t is the time

For the child in this problem, we have:

u = 0

v = 21.1 m/s

[tex]a=3.94 m/s^2[/tex]

Substituting and solving  for t,  we find the time taken:

[tex]t=\frac{v-u}{a}=\frac{21.1-0}{3.94}=5.36 s[/tex]

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Final answer:

Using the kinematic equation for uniformly accelerated motion, it takes the child approximately 5.36 seconds to sled down the hill from a starting speed of 0.0 m/s to a final speed of 21.1 m/s with an acceleration of 3.94 m/s^2.

Explanation:

To determine how long it takes for the child to sled down the hill, we can use the kinematic equation for uniformly accelerated motion, which is:

final velocity (v) = initial velocity (u) + acceleration (a) × time (t).

Given that the child's initial speed is 0.0 m/s, the final speed is 21.1 m/s, and the acceleration is 3.94 m/s2, we can rearrange the equation to solve for time (t):

time (t) = (final velocity - initial velocity) / acceleration

time (t) = (21.1 m/s - 0.0 m/s) / 3.94 m/s2 = 5.36 s

Therefore, it would take the child approximately 5.36 seconds to travel from the top of the hill to the bottom.

An automobile uses a braking force of 15000N to bring it to rest in 1.4s The mass of the automobile is 800kg. what is the impulse

Answers

The impulse on the car is -21,000 kg m/s

Explanation:

The impulse exerted on an object is the product between the force exerted on it and the time interval during which the force is applied:

[tex]I=F\Delta t[/tex]

where

I is the impulse

F is the force applied

[tex]\Delta t[/tex] is the time interval

For the car in this problem, we have

F = -15,000 N (the negative sign indicates that the direction of the force is opposite to the direction of motion)

[tex]\Delta t = 1.4 s[/tex] is the time interval

Therefore, the impulse on the car is

[tex]I=(-15000)(1.4)=-21,000 kg m/s[/tex]

And the negative sign indicates that the direction of the impulse is opposite to the direction of motion.

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Compounds are created when atoms of different elements _____. form physical bonds have different chemical properties form chemical bonds have similar chemical properties

Answers

Final answer:

Compounds are created when atoms of different elements form chemical bonds. The chemical bond is a result of atoms sharing or exchanging electrons to fulfill the Octet Rule for stability. An example is water, where oxygen and hydrogen atoms bond together.

Explanation:

Compounds are created when atoms of different elements form chemical bonds. Chemical bonds are formed when atoms share, donate (lose), or accept (gain) electrons. This happens in order to fulfill the 'Octet Rule', which states that atoms are most stable when their outermost (valence) electron shell is full, typically with eight electrons except a few exceptions.

For example, in the formation of water (H2O), one oxygen atom forms a chemical bond with two hydrogen atoms. The oxygen atom achieves a stable electron configuration by sharing electrons with hydrogen atoms, which also reach a stable state.

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Compounds are created when atoms of different elements form chemical bonds during chemical reactions, leading to the formation of substances with unique properties.

Compounds are created when atoms of different elements form chemical bonds. Atoms combine to form molecules because they experience an attractive force that results in chemical bonds. There are various types of chemical bonds, such as polar covalent bond, hydrogen bond, non-polar covalent bond, and ionic bond. Chemical reactions facilitate the formation of compounds, where the initial substances reorganize their atomic arrangements, breaking existing bonds and forming new ones to create substances with unique properties.

A compound consists of atoms of two or more elements combined in a fixed, small whole-number ratio. For example, water consists of hydrogen and oxygen in a 2:1 ratio, represented by the empirical formula H2O, and table salt is made up of sodium and chlorine in a 1:1 ratio, represented by the empirical formula NaCl.

It is important to understand that compounds have their own unique chemical and physical properties—different from those of the elements that form them. The atoms in a compound are not created or destroyed during a chemical reaction, but are rearranged, resulting in a substance that is different from the original reactants.

What is the electromagnetic spectrum and how is it used to gather information about
components in the universe?

Answers

Telescopes use lenses or mirrors to collect and focus waves from the electromagnetic spectrum, including visible light, allowing us to look at celestial objects. By studying the electromagnetic waves given off by objects such as stars, galaxies, and black holes, astronomers can better understand the universe.

Final answer:

The electromagnetic spectrum is a range of all types of electromagnetic radiation used by astronomers to gather detailed information about the universe's components. Different wavelengths carry distinct information, and observing in various electromagnetic bands yields a fuller understanding of celestial objects.

Explanation:

Understanding the Electromagnetic Spectrum

The electromagnetic spectrum is a continuous range of wavelengths that encompasses all forms of electromagnetic radiation, from the longest radio waves to the shortest gamma rays. This spectrum includes visible light, which is only a small portion of the entire range. Each category of radiation within the spectrum carries unique information that can be used to study various components in the universe.

How Astronomers Use the Electromagnetic Spectrum

Astronomers harness different wavelengths of light from the electromagnetic spectrum to extract valuable data about astronomical objects, such as the nature of stars and other celestial bodies. This is done by analyzing the amounts of energy received at different wavelengths. Not only does this hold true for visible light, but radio waves, infrared, ultraviolet, X-rays, and gamma-rays are also extensively used to gather information. Observing the universe in different bands of the electromagnetic spectrum provides a more complete and complex understanding of its components.

Observations at varying wavelengths can yield diverse information about celestial objects, such as the chemical composition, temperature, and motion of stars and galaxies. The different types of light can reveal phenomena that are not detectable in visible light alone, thereby offering a more holistic view of the cosmos.

An object is placed at 0 on a number line. It moves 3 units to the right, then 4 units to the left, and then 6 units to the right.
The displacement of the object is

Answers

The answer is +5 units.

Answer: B. 5

Explanation: the right of 0 on a horizontal number line is positive, and then to the left to 0, is negative. So, 3 units to the right is 3, and then 4 units to the left (3 - 4 = -1), then, 6 units to the right (-1 + 6 = 5).

Hope this helped. :)

Motion is a change in ____.

Answers

Motion is a change in position.

Explanation:

If one object A changes its position with reference to an object B positioned at a fixed place (Reference point), Object A is said to be in motion. This change in position is caused due to different parameters.

The rate at which an object changes its position is termed as speed. Velocity is a vector quantity that measures both the speed of the object and its direction. Acceleration is the rate of change in velocity. Distance is the total path-length of the object performing motion. Displacement is the shortest distance between two points of motion path ( the difference between final position and initial position) and it is a vector quantity. If an object changes its position, it is said to be in motion.

Final answer:

Motion in physics is defined as the change in position of an object with respect to its surroundings in a given period of time. Therefore, when a vehicle moves down a street or a person walks across a room, they are exhibiting motion by changing position.

Explanation:

Motion refers to a change in position of an object with respect to its surroundings in a given period of time. The concept of motion is fundamental in physics and is part of the wider study of physical science. A simple example of motion would an object changing its physical location from point A to point B, thus altering its position.

For instance, if you observe a car moving down the street, you can see that the car's position relative to structures such as buildings and trees changes. This changing displacement over time means the car is in motion.

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Which two conditions must exist in order for radiation to occur?
the presence of a solid, liquid, or gas and a temperature difference
direct contact of molecules and the presence of a solid, liquid, or gas
the presence of electromagnetic waves and direct contact of molecules
a temperature difference and the presence of electromagnetic waves

Answers

Answer:

D

Explanation:

Answer:

(D) A temperature difference and the presence of electromagnetic waves.

Explanation:

In order for radiation to occur, there must be a difference in temperature for the thermal energy to be transferred, and there has to be electromagnetic waves.

Radiation = The transfer of thermal energy via electromagnetic waves

Since we know we need electromagnetic waves, only either option C or D could be correct.

Q: How do we know that radiation needs to have a difference in temperature?

Let's look at an example, such as the Sun and the Earth.

The sun is a star, a burning ball of gas. Because it is gas, it is less dense, and its temperature is way higher than the mainly solid and liquid Earth.

A: Heat from the sun (thermal energy from the sun) is being transferred to the Earth via radiation, and for thermal energy to transfer (or become heat), there has to be a difference in temperature.

More below:

+ In order for thermal energy to transfer in the first place, it has to become heat.

Heat ONLY transfers from warmer objects to cooler objects, meaning that there has to be a warmer object and a cooler object, or a "difference in temperature" in order for something like radiation to occur.

What is one way to make a positive impact on air quality
to reduce air pollution?

Moving to a large city

using public transportation

planting crops in terraces

releasing gases into the air

Answers

Answer:

B

Explanation:

edge 2020

One way to make a positive impact on air quality to reduce air pollution is using public transportation which will reduce air pollution.

What is air quality?

Air quality index is used by government agencies to communicate to the public how polluted the air currently is or how polluted it is forecast to become.

Limited number of diesel cars can be used to improve air quality because there will be limited number of cars to cause air pollution.

Thus, one way to make a positive impact on air quality to reduce air pollution is using public transportation which will reduce air pollution.

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suppose that a new miracle pills allows a person to function with pmly one hour of sleep per night​

Answers

Complete Question: Suppose that a new “miracle pill” is on the market that will allow a person to function with only one hour of sleep each night. However, because a night’s sleep is so short, a person who takes the pill will never dream again. Knowing what you do about the functions of sleep and dreaming, what would be some advantages and drawbacks of such a pill from a personal standpoint? Would you take such a pill?

Answer:

If the miracle pills are available in the drug stores and approachable to anyone who wants to shorten their sleep time and eliminates dreaming during sleep certainly has some consequences upon them. The following are the advantages and disadvantages of those consequences.

Advantages of miracle pills:

Those who take miracle pills are more productive and efficient than other because they take less hours for sleep. As they take less hours for sleep it means they have more hours available for work. And if they have more hours, they certainly do more work.Those who do not dream due to miracle pills have more realistic approach towards life. Those who consume miracle pills will be more focused to the details than those who do not.

Disadvantages of miracle pills:

As human body is designed in the specific way, it is mention that how much amount of sleep is sufficient for certain age group. By going against nature, less sleep due to miracle pills may results in stress in the individuals. Those who take miracles pills have more health issues then those who do not.Due to excessive work body muscles tend to become sore and stretched. which may also cause serious conditions later on.Due to artificial way of taking less sleep mental capability become limited. A person become less creative in ideas because their emotions and actions are forced by external factors and by their own thinking and judgement. No dreaming, makes anyone thoughts bounded as they are unable to predict future and to see their pasts, and they are only limited to face the present situations will make them less aware of the world around them.

My Opinion about miracle pills:

In my opinion, I will surely not be taking those pills which lessen my sleep artificially. As they have some major outfalls on person mental and physical health, I will not use miracle pills to shorten by sleep. Because taking a sufficient amount of sleep is necessary for a healthy body and a sound mind.

You want to prevent charges from moving off of a charged metal sphere.
Which statement accurately describes the material you need?
O
A. It has a low resistance and is a conductor.
O
B. It has a high resistance and is an insulator.
O
C. It has a low resistance and is an insulator.
O
D. It has a high resistance and is a conductor.

Answers

B. It has a high resistance and is an insulator.

Explanation:

To prevent charges from moving off of a charged metal sphere, it is best to use a material with a high resistance and is an insulator.

An insulator is a substance that does not allow electric charges and currents to move through. A material of high resistance retar/ds the flow of electricity. An insulator is therefore a material with a very high resistance. This will not allow electric current to pass through. To prevent movement of charges, we thereby use insulators. Conductors on the other hand are materials that allows electric charges to pass through. They generally have low resistance.

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Answer: it has a high resistance and is an insulator

Explanation:

A toy car is moving along with 0.40 joules of kinetic energy if it’s speed is double then it’s new kinetic energy will be ?

Answers

Answer: .8

Explanation: because .40×2 =.8

If the speed of the toy car is doubled, its new kinetic energy will be 1.6J

Kinetic energy is the energy an object possesses as a result of its motion. It is given by:

Kinetic energy = (1/2) * mass(m) * velocity(v)²

Given a kinetic energy of 0.4 joules, hence:

(1/2)mv² = 0.4

If the speed is doubled:

K.E = (1/2)m(2v)² = 4 * (1/2)mv² = 4 * 0.4 = 1.6J

If the speed of the toy car is doubled, its new kinetic energy will be 1.6J

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how long must a current of 100mA flow so as to transfer a charge of 80 C? ​

Answers

Answer:

800s

Explanation:

Q=It

where,

Q=80c

I =100MA=0.1A

t=?

Q=It

800=0.1×t

t=80×0.1

t=800s

Answer:

800 secs

Explanation:

Q = it

80 = 100 x10^-3 t

t = 80/0.1

= 800secs

Zeta runs across a football field that is close to 100 meters long in 35 seconds . What is her speed?

Answers

Answer:

2.86 m/s

Explanation:

Speed= distance/time

speed= 100m / 35s

100/35= 2.86 (simplified)

2.86m/s= 100m / 35s

Zeta's speed is 2.86 m/s.

To determine Zeta's speed, we need to use the formula for speed:

Speed = Distance / Time

In this case, Zeta runs across a football field that is close to 100 meters long in 35 seconds. Therefore, the speed calculation will be:

Speed = 100 meters / 35 seconds = 2.86 meters per second (m/s)

Therefore, Zeta's speed is approximately 2.86 m/s.

What is another way of saying “getting the smallest possible force”?

Answers

Answer:

MOMENTUM

Explanation:

another way of saying getting the smallest force possible is the word " MOMENTUM".

momentum is the ability to keep maintaining,incresing or itself developing to move at constant speed or to increase the speed.

Explain why squeezing a plastic mustard bottle forces mustard out to top.

Answers

Answer:

because when squeezing you are increasing pressure within the bottle and there is less pressure on the outside

Answer:

Because u r using force to push out the mustard in the bottle.

Explanation:


Two curling stones collide on an ice rink. Stone 1 has a mass of 16 kg
and an initial velocity of 1.5 m/s to the north. Stone 2 was at rest
initially. The stones collide dead center, giving stone 2 a final velocity
of 0.69 m/s to the north.

Answers

Final Answer:

a. The mass of stone 2 is 24 kg. b. The final velocity of stone 1 is 0.82 m/s to the north.

Explanation:

We can solve this problem using the principle of conservation of momentum and the principle of conservation of kinetic energy for elastic collisions.

1. Conservation of momentum:

  Before collision: [tex]\( m_1 v_{1i} + m_2 v_{2i} = m_1 v_{1f} + m_2 v_{2f} \)[/tex]

  After collision: [tex]\( m_1 v_{1f} + m_2 v_{2f} \)[/tex]

2. Conservation of kinetic energy:

  Before collision: [tex]\( \frac{1}{2} m_1 v_{1i}^2 + \frac{1}{2} m_2 v_{2i}^2 = \frac{1}{2} m_1 v_{1f}^2 + \frac{1}{2} m_2 v_{2f}^2 \)[/tex]

Using the given values and the fact that stone 2 was initially at rest [tex](\( v_{2i} = 0 \))[/tex], we can solve for the mass of stone 2 (part a) and the final velocity of stone 1 (part b).

a. Solving for the mass of stone 2:

  From the conservation of momentum equation, we have:

   [tex]\( m_1 v_{1i} = m_1 v_{1f} + m_2 v_{2f} \)[/tex]

  Substituting the given values and solving for [tex]\( m_2 \)[/tex], we find [tex]\( m_2 = 24 \, \text{kg} \)[/tex].

b. Solving for the final velocity of stone 1:

  From the conservation of kinetic energy equation, we have:

    [tex]\( \frac{1}{2} m_1 v_{1i}^2 = \frac{1}{2} m_1 v_{1f}^2 + \frac{1}{2} m_2 v_{2f}^2 \)[/tex]

  Substituting the given values and the calculated mass of stone 2, we can solve for [tex]\( v_{1f} \)[/tex], which is approximately [tex]\( 0.82 \, \text{m/s} \)[/tex].

Therefore, the mass of stone 2 is 24 kg and the final velocity of stone 1 is 0.82 m/s to the north.

The mass of stone 2 and the final velocity of stone 1, obtained using the law of conservation of momentum and the law of conservation of energy are;

Mass of stone 2, m₂ ≈ 53.56

The final velocity of stone 1, v₁' ≈ 0.81 m/s south

The steps used to find the above values are as follows;

The mass of stone 1, m₁ = 16 kg

Initial velocity of stone 1, v₁ = 1.5 m/s

Mass of stone 2, m₂; Required

The law of conservation of linear momentum indicates that we get;

m₁·v₂ + m₂·v₂ = m₁·v₁' + m₂·v₂'

The law of conservation of energy indicates that we get;

m₁·v₁²/2 + m₂·v₂²/2 = m₁·v'₁²/2 + m₂·v'₂²/2

Therefore;

16 × 1.5 = 16·v₁' + 0.69·m₂

24 = 16·v₁' + 0.69·m₂,,,(1)

16 × 1.5²/2 = 16 × v'₁²/2 + m₂·0.69²/2

18 = 8·v'₁² + 0.23805·m₂...(2)

Equation (1) indicates that we get;

v₁' = (24 - 0.69·m₂)/16

Therefore;

18 = 8·v'₁² + 0.23805·m₂

18 = 8·((24 - 0.69·m₂)/16)² + 0.23805·m₂

18 = -0.01488·m₂² + 0.79695·m₂ + 18

-0.01488·m₂² + 0.79695·m₂  = 0

0.79695/0.01488

m₂ = 0 and m₂ ≈ 53.56

v₁' = (24 - 0.69·m₂)/16, therefore;

v₁' = (24 - 0.69 × 54.)/16

(24 - 0.69 × 53.56)/16 ≈ -0.81

The final velocity of ball 1 is v₁² ≈ 0.81 m/s so the south

The complete question obtained from a similar question found through search is as follows;

Two curling stones collide on an ice ringk.Stone 1 has a mass of 16 kg and an initial velocity of 1.5 m/s to the north. Stone 2 was at rest initially. The stones collide dead center giving stone 2 a final velocity of 0.69 m/s to the north. Find the mass of stone 2 and the final velocity of stone 1

A student is studying the fossils of a plant species that lived several million years ago. The fossils of this species are found in Australia and Antarctica.Which statement is the MOST LIKELY explanation for why fossils of this plant are found on these two continents? *

Answers

Answer:

B. Australia and Antarctica were a single landmass in the past.

Explanation:

Just trust me ; )

This graph indicates that the kinetic energy of an object is increasing. What is the most reasonable explanation for this observation?
A) The object's mass has doubled.
B) The object's velocity doubled.
C) The object's velocity has quadrupled.
D) The object's velocity and mass doubled.

Answers

B) The object's velocity doubled.

Explanation:

The graph is missing: find it in attachment.

The kinetic energy of an object is the energy possessed by the object due to its motion. It is calculated as

[tex]K=\frac{1}{2}mv^2[/tex]

where

m is the mass of the object

v is the velocity of the object

We notice that:

The  kinetic energy is directly proportional to the massThe kinetic energy is proportional to the square of the velocity

In the graph, one of the two quantities (either mass or speed) is represented on the x-axis, while the quantity on the y-axis is the kinetic energy.

First of all, we notice that the relationship is not linear: this means that the quantity on the x-axis cannot be the mass, so it must be the velocity.

Moreover, we notice that when the quantity on the x-axis increases from 1 to 2 (so, it doubles), the kinetic energy increases by a factor of 4. This means that the object's velocity has doubled, therefore

B) The object's velocity doubled.

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Final answer:

Kinetic energy is proportional to mass and the square of velocity. A quadrupling of velocity would result in a sixteen-fold increase in kinetic energy, making it the most substantial change among the given scenarios. Option B) The object's velocity doubled is the correct choice.

Explanation:

When observing that the kinetic energy of an object is increasing, it's important to consider the relationship between mass, velocity, and kinetic energy. The kinetic energy (KE) of an object is given by the equation KE = ½ mv², which tells us that kinetic energy is proportional to the mass of the object (m) and to the square of its velocity (v). Therefore, if the velocity doubles, the kinetic energy would not merely double but increase by a factor of four (since ² = 2² = 4). Doubling both mass and velocity would increase the kinetic energy by a factor of eight (since 2 * 4 = 8). Given the options, the object's velocity doubling would certainly increase the kinetic energy, but for the most significant increase, the most reasonable explanation would be that the object's velocity quadrupled, which would directly increase the kinetic energy by a factor of sixteen.² (since 4² = 16).

Which magnesium ion is represented in the model?

Answers

mg 2+ is the correct answer.

.
has
p(x) = 2x3 – 3x2-mx-6
1. The polynomial function has x-2
as one of its factors. What is the value of m?​

Answers

The value of m = - 1.

Explanation:

An expression which contains two or more algebraic terms is called the polynomial. It is made up of two terms namely Poly and Nominal meaning many terms.

P(x) = 2x^3 - 3x^2 - mx - 6

x - 2 is one of the factor of the polynomial.

So x - 2 = 0

    x = 2

Substituting the value of x,

P(2) = 2(2)^3 - 3(2)^2 - m(2) - 6

       2(8) - 3(4) - m(2) - 6 = 0

       16 - 12 - 2m - 6 = 0

        - 2 - 2m = 0

           - 2m = 2

               m = - 1

     

- Even tough she is way ahead of you, Sally switches her car to run on nitrous oxide
fuel. The nitrous oxide allows her car to develop 10,000 N of force. What is Sally's
acceleration if her car has a mass of 500 kg?
F=
m=
a=

Answers

M=500kg
F=10000N
A=2000

The nitrous oxide allows her car to develop 10,000 N of force. Sally's acceleration if her car has a mass of 500 kg are M=500kg, F=10000N, A=2000

what is acceleration ?

Acceleration is the rate of change in velocity with response  to time, it is a vector quantity which is associated with both magnitude and direction.

It is the second derivative of position with response to time or it is the first derivative with respect to time; The SI unit of acceleration is represented as, m/s2.

Two types of Acceleration  can be observed such as Uniform and Non-uniform acceleration,  in a circle where speed remains constant but  the change in direction  followed by velocity changes, and the body is said to be accelerated.

The average acceleration is the total change in velocity in the given interval period of time means the total time taken for the change. For a given interval of time, it is represented as ā.

Instantaneous acceleration type is  referred to  the ratio of change in velocity in a given time interval such that the time interval goes to zero.

For more details  acceleration,  visit

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Engineers have determined that the maximum safe speed around a
particular non-banked curve is 20 m/s. If the coefficient of friction
between the tires and the road is 0.703, what is the radius of the curve?

Answers

Answer:

58.1 m

Explanation:

Draw a free body diagram of the vehicle.  There are three forces: normal force N pushing up, weight force mg pulling down, and friction force Nμ pushing towards the center of the circle.

Sum of forces in the y direction:

∑F = ma

N − mg = 0

N = mg

Sum of forces in the radial direction:

∑F = ma

Nμ = m v² / r

Substitute and solve for r:

mgμ = m v² / r

gμ = v² / r

r = v² / (gμ)

Plug in values:

r = (20 m/s)² / (9.8 m/s² × 0.703)

r = 58.1 m

Final answer:

The radius of the curve is approximately 129.9 meters.

Explanation:

In order to calculate the radius of the curve, we can use the formula for centripetal force:

Fc = μmg

Where Fc is the centripetal force, μm is the coefficient of friction, m is the mass of the vehicle, and g is the acceleration due to gravity.

Since the maximum safe speed is given as 20 m/s, we can calculate the maximum centripetal force using the equation:

Fc = mV2/R

Where V is the velocity and R is the radius.

Equating these two expressions for centripetal force, we get:

mV2/R = μmg

Substituting the given values, we have:

(20)2/R = (0.703)(9.8)

Simplifying, we find:

R = (20)2/((0.703)(9.8))

R ≈ 129.9

1. Compare and contrast heat and temperature.

Answers

HEAT

1.It is a form of energy which gives sensation of warmth.

2.It is measured by calorimeter.

3.Its SI unit is Joule.

Temperature

1.The degree of hotness and coldness of a body is called temperature.

2.It is measured by Thermometer.

3.Its SI unit is Kelvin

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