q5: suppose the air track was tilted during the experiment. would momentum be conserved in the collision? why or why not?

Answers

Answer 1

According to the given statement No, momentum is not conserved on a tilted track.

What does the word "momentum" mean?

Momentum can be viewed as a body's "power" while it is moving, or the amount of force it can exert on another body. For instance, a baseball (small mass) thrown quickly can have the same momentum as a bowling ball (big mass) going extremely slowly (low velocity) (high velocity).

What is the momentum unit?

Therefore, the Newton-second can be used as the unit measuring momentum (Ns). In the CGS system, the unit of momentum is the gram-centimeters per second (gcm/s), where the mass is measured in grams and the speed in centimeters per second.

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Related Questions

A rocket has a mass of 80,000 kg and accelerates at a rate of 35 m/s2. Calculate the force that provides this acceleration. Give your answer in newtons.

Answers

The force that causes an acceleration of 35 m/s² with a mass of 80,000 kg is 2,800,000 N.

Solution:

Force (N) = mass (kg) × acceleration (m/s²)

According to this question, a rocket has a mass of 80,000 kg and accelerates at a rate of 35 m/s². The force can be calculated as follows:

F = 80,000kg × 35m/s²

F = 2,800,000N

The force is equal to the outlet mass flow rate times the outlet velocity times the free stream mass flow rate minus the free stream velocity. Acceleration is the rate of change of velocity over a specified time. Calculate acceleration by dividing the change in velocity by the change in time.

This characteristic is known as the velocity ratio  and is calculated by dividing the distance traveled by the force by the distance traveled by the load. Force is push or pull. Shear is the component of force acting perpendicular to a plane. Push is force, but not all force counts as push. So they are not exactly the same and the given statement is incorrect.

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The right answer is "2800000 N"

Answer explanation:

Force = mass × acceleration

= 80,000 kg × 35 m/s2

= 2,800,000 N.

Hope it helps ✨✨

Decribe the 2 main tep in protein ynthei, along with the key molecule involved in the proce

Answers

The two main steps of protein synthesis and the key molecules involved in the process are:

Transcription - DNA is converted into mRNATranslation - mRNA is converted into protein.

The second step in protein synthesis is translation. Translation takes place in organelles called ribosomes. Messenger RNA reaches and attaches to ribosomes under the influence of ribosomal RNA and enzymes. The information encoded in DNA is copied into messenger RNA sequences and crosses the nuclear membrane to ribosomes in the cytoplasm.

Protein synthesis is a two-step process that reduces the complexity of the processes involved in protein synthesis. Description Transcription is the process by which RNA molecules are produced using double-stranded DNA molecules. The first step in protein synthesis is transcription the unfolding of DNA, and the generation of messenger RNA chains.

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A lamp uses a 230v mains supply and transfers 96j of energy every second. Work out the current through the lamp. Give your answer to 1 decimal place.

Answers

The current through the lamp is 0.4A.

Calculation:-

electric powered strength = Voltage×modern-day

P = VI................Equation 1

Make I the problem of the equation

I = P/V.............Equation 2

Given: P = ninety six J/s, V = 230 V.

alternative into equation 2

I = 96/230

I = 0.4A.

His 3 predominant classes of electric lights are incandescent bulbs which produce mild through a filament this is heated to incandescence by using an electric powered current. relying on length and sort bulbs eat between 2 and 100 watts of power. traditional incandescent bulbs use 25-100W and LED bulbs use 2-18W. An incandescent bulb attracts about one hundred ten volts typically much less than 1 amp.

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arthur is 4 years old and can clearly indicate that two containers of the same size, filled to the same level, hold the same amount of liquid. however, when the liquid from one of the containers is poured into another that is skinnier and taller, arthur indicates that this new container now holds more liquid than the other. what principle has he failed to understand? group of answer choices object permanence accomodation physics conservation

Answers

Arthur has failed to understand the Conservation concept. In general, children learn the seven Piagetian tasks in this order: number (typically mastered by age 6), length, liquid, mass, area, weight, and volume (usually acquired by age 10).

Studies that are cross-sectional gather information from many people of the same age and compare it to data from participants who are older or younger and, consequently, at different stages of development.

This calls for protecting the environment's natural resources so that future generations will still be able to use them, for example by halting habitat destruction and overexploitation. Conservation boosts environmental diversity by preventing the extinction or extinction of organisms. Therefore, scientists are worried about conservation.

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a 6.30-g lead bullet traveling at 500 m/s is stopped by a large tree. if half the kinetic energy of the bullet is transformed into internal energy and remains with the bullet while the other half is transmitted to the tree, what is the increase in temperature of the bullet?

Answers

The conservation of energy allows to find the result for the change in temperature of the bullet is ΔT = 195ºC.

What is temperature?
Temperature
is the measure of the average kinetic energy of the particles that make up a substance. It is measured in various units, such as Celsius, Fahrenheit, Kelvin, and Rankine. Temperature is related to the amount of energy in a system, and it can be increased or decreased by adding or removing energy. In the absence of energy, the temperature of a system will remain constant. Temperature is an important factor in many physical and chemical processes, such as the rate of chemical reactions, the movement of particles, and the rate of evaporation. It also affects the properties of many materials, such as the hardness of metals and the melting and boiling points of liquids. Temperature is an important part of the Earth's climate, as it affects air pressure, wind patterns, and other atmospheric conditions. In addition, temperature plays an important role in biology, as it affects the growth and development of living organisms.

Given parameters

Mass of the bullet m = 5 g = 5 10-3 kg

Bullet velocity v = 300 m / s

Half of the energy is transformed into internal energy in the bullet.

Specific heat lead ce = 128 J / kg ºC

To find

Bullet temperature change.

The conservation of energy is an important law of conservation of physics, stable that energy cannot be created, not destroyed only transformed.

Let's look for the mechanical energy of the bullet that is totally kinetic.

 Em = K = ½ m v²

Em = ½ 5 10-3 (300) ²

Em = 2.25 10² J

They indicate that half is transformed into internal energy.

U = Em / 2

U = 2.25 10² / 2

U = 1.25 10² J

The energy is

 U = Q = ΔT=    

Let's calculate.

 ΔT = 1.95 10²

 ΔT = 195ºc

In conclusion using the conservation of energy we can find the result for the change in temperature of the bullet is:

  ΔT = 195ºC

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The change in temperature is 480.76 173.077 degree C

What is specific heat capacity?

The amount of heat (J) absorbed by a substance per unit mass (kg) as its temperature rises by 1 K (or 1 °C) is known as the specific heat capacity.

The kinetic energy of the bullet, KE = (1/2) m v^2

                                        = (1/2) * 6.3 * 10^(-3) * (500)^2

                                         =787.5 J

The amount of heat, Q, available  = (1/2) KE

                                                        =393.75 J

If c is the specific heat capacity and dT is change in temperature then, Q = msdT

dT = Q/(m s)

   = 393.75 / (6.3* 10^-3   * 0.13*10^3*)

   = 480.76 173.077 degree C

Therefore, the change in temperature is 480.76 173.077 degree C

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a chemist makes 100. ml of sodium thiosulfate working solution by adding distilled water to 30.0 ml of a 0.662 mol/l stock solution of sodium thiosulfate in water

Answers

By adding solvent, a stock solution is transformed into a diluted solution. Therefore, 80.9 mL of Na2S2O3 stock solution are required.

What are the features of sodium thiosulfate?It is odourless and appears white and crystalline when solidified. 1.667 grammes per cubic centimetre is the density of sodium thiosulfate. This salt has a melting point of 321.4 K and a boiling point of 373 K in its pentahydrate form. Crystals of Na2S2O3 have a monoclinic crystal structure.A 2:1 ratio of sodium and thiosulfate ions make up sodium thiosulfate, an inorganic sodium salt. It functions as a nephroprotective agent, a cyanide poisoning antidote, and an antifungal medication.An invisible chemical substance is sodium thiosulfate 30% Solution. An invisible chemical substance is sodium thiosulfate 30% solution (Na2S2O3). Our ultra pure SO2, which enables a specific specification and a range of options, is the source of our on-purpose STS.

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What is the estimated effective nuclear charge, zeff, experienced by an electron in a 3p orbital of a chlorine atom?.

Answers

estimated effective nuclear charge experienced by a 3 p electron of chlorine is 6.1.

What is nuclear charge ?

In atomic physics, the net nuclear charge is the actual amount of positive (nuclear) charge experienced by electrons in a multi-electron atom. The term "effective" is used because the shielding effect of negatively charged electrons prevents higher energy electrons from experiencing the full nuclear charge of the nucleus due to inner layer repulsive effects. The net nuclear charge experienced by an electron is also called the nuclear charge. The strength of the nuclear charge can be determined by the oxidation number of the atom. Most of the physical and chemical properties of elements can be described in terms of their electronic configurations. . It is known that the magnitude of the ionization potential depends on the following factors:

atomic size;

nuclear charge;

Inner shell shielding effect u

The extent to which the outermost electrons penetrate the charge cloud created by the inner electrons.

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How much work is done if a 50.0N force is applied on an object opposite to the direction of motion while the object slides 3.00 m across the floor?

A) 150.J

B) -16.7J

C) 16.7J

D) -150.J

Answers

The work done by the force of 50 N  on an object opposite to the direction of motion is equal to  -150 J. Therefore, option (D) is correct.

What is the work?

Work done on an object can be defined as the energy utilized when a force is applied in order to move the object through a definite displacement.

When the 'F' is the applied force and 'd' is the displacement by an object and W is work done will be equal to:

W= F × d

If the body is moving in the opposite direction of the applied force then the work done will be negative.

Given, the applied force, F = 50 N

The displacement of the object, d = 3.0 m

The work done is equal to W = F.d

W = 50 × 3

W = 150 J

As the object is moving in the opposite direction of the applied force so the work done will be - 150 J.

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The basic requirement for a cloud to collapse to form a star is that __________.

Answers

Answer:

Explanation:

The interstellar gas cloud will remain in hydrostatic equilibrium as long as the kinetic energy of the gas pressure is in equilibrium with the potential energy of the internal gravitational force.

To maintain equilibrium, the potential gravitational energy must be twice the internal thermal energy. If the cloud is so massive that the gas pressure is insufficient to maintain it, the cloud undergoes gravitational collapse.

A ball is dropped from a height of 20m and rebounds with a velocity, which is 3/4 of the velocity with which it hits the ground. What is the time interval between the first and the second bounces?​

Answers

Answer:

H = 1/2 g t^2        calculate time to reach ground

t = (2 H / g)^1/2 = (2 * 20 / 9.8)^1/2 = 2.02 sec

V1 = a t = 9.8 m/s^2 * 2.02 sec = 19.8 m/s      original speed

V2 = 19.8 * .75 = 14.85 m/s     speed of rebound

t2 = V2 / g = 14.85 / 9.8 = 1.51 sec     time to get back to top

T = 2 * t2 = 3.02 sec     time in air after 1st bounce

024 (part 1 of 3) 10.0 points
A 1.0 kg block is pushed 3.0 m at a constant
velocity up a vertical wall by a constant force
applied at an angle of 29.0° with the horizon-
tal, as shown in the figure.
The acceleration of gravity is 9.81 m/s².
1 kg
3 m
29°
Drawing not to scale.
If the coefficient of kinetic friction between
the block and the wall is 0.40, find
a) the work done by the force on the block.
Answer in units of J.
025 (part 2 of 3) 10.0 points
b) the work done by gravity on the block.
Answer in units of J.
026 (part 3 of 3) 10.0 points
c) the magnitude of the normal force between
the block and the wall.
Answer in units of N.

Answers

The work done by the applied force is 21.23 J.

The work done by the gravity is 29.4 J.

The magnitude of the normal force between the block and the wall is 9.8 N.

What is the work done by the applied force on the block?

The work done by the applied force on the block is calculated by applying the following equation for work done.

W = Fd cosθ

where;

F is the applied forced is the distance in which the block is moveθ is the angle of inclination of the block

The applied force on the block is calculated as follows;

Fsinθ - μmgsin(90) = ma

at a constant velocity, the acceleration of the block = 0

Fsinθ - μmg = 0

Fsinθ = μmgsinθ

F =  μmg/sinθ

F = (0.4 x 1 x 9.8)/sin(29)

F = 8.09 N

The work done by the applied force is calculated as;

W = Fcosθ x d

W = (8.09 x cos29) x 3

W = 21.23 J

The work done by the gravity is calculated as follows;

W = Fn cosθ x d

where;

θ is the angle between the normal force and the block = 0

W = mg cosθ x d

W = 1 x 9.8 x cos(0) x 3

W = 29.4 J

The magnitude of the normal force between the block and the wall is calculated as follows;

Fn = mg cosθ

where;

θ is the angle between the normal force and the block = 0

Fn = 1 x 9.8 x cos(0)

Fn = 9.8 N

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you are trying to push your stalled car. although you apply a horizontal force of 400 n to the car, it doesn't budge, and neither do you. which force(s) must also have a magnitude of 400 n?

Answers

Static friction forces the car forward. The engine provides the power to rotate the tires, which push the road backwards.

Friction is a common physics term, but vehicle traction can be defined as the friction between the drive wheels and the road surface. “Traction is the friction between the drive wheels and the road. If you lose traction, you lose traction.

As the car accelerates, it exerts a forward horizontal force on the car and a corresponding rearward horizontal force on the ground. As the car accelerates, air resistance creates a backward force.

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What is special about the Midsegments of a triangle?.

Answers

A triangle's midsegment is the section of a line joining the midpoints of its two sides. The midsegment of a triangle is half as long and parallel to the third side.

The midpoints of the triangle's two sides must first be located in order to determine the triangle's midsegment. Divide each side by 2 to achieve this. Then draw a straight line to join the two midpoints. The midpoint of a triangle has a number of characteristics, including being parallel to the third side and being half as long. The midsegment can also be used to determine other measurements, such as altitudes and areas, and it also aids in our understanding of triangles.The line segment connecting the midpoints of two triangle sides is parallel to the third side and is half as long, according to the Midsegment Theorem.

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A 1. 0 newton metal disk rests on an index card that is balanced on top of a glass. What is the net force acting on the disk?.

Answers

The net force acting on the metal disk is equal to 1 Newton.

According to the third law of motion proposed by newton,

Each and every action of force has an equal and opposite reaction force.

This reaction force will be equal in magnitude of the action force but will be in the opposite direction.

So, here in this case, the metal disk is balanced on the top of the glass.

The metal disk is applying a force of one Newton on the glass. So, the glass will also apply an equal force on the metal disk,

This net force working on the disk is called the normal force, so the net force on the metal disk is 1 Newton.

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In order to make the loop successfully (and not
lose any passengers), a rollercoaster has to hit a
critical speed before the loop. What is the velocity
of a rollercoaster car if it has a mass of 7,600 kg
and 4,750,000 Joules of kinetic energy?

Answers

The velocity of a rollercoaster car is 35.36 m/s.

What is velocity?

The rate at which a body's displacement changes in relation to time is known as its velocity. Velocity is a vector quantity with both magnitude and direction. SI unit of velocity is meter/second.

Given parameters:

Mass of the rollercoaster; M = 7600 kg.

Kinetic energy of the rollercoaster; E = 4750000 Joules.

We have to find, the velocity of the rollercoaster; v = ?

We know that, Kinetic energy = 1/2× mass × velocity²

⇒ E = 1/2 × mv²

⇒ 4750000 = 1/2 × 7600 × v²

⇒ v = √(2×4750000/7600)

⇒ v =  35.36 m/s.

Hence, the velocity of the rollercoaster is 35.36 m/s.

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9.24 a design error has resulted in a gross mismatch in the circuit of fig. p9.24. specifically, q2 has twice the w/l ratio of q1. if vid is a small sine-wave signal, find:

Answers

Drain current for Q1, [tex]i_{D1}[/tex] = I / 3

Drain current for Q2, [tex]i_{D2}[/tex] = 2 I / 3

Drain current for Q1 is,

[tex]i_{D1}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( W / L ) ( [tex]v_{GS1}[/tex] - [tex]V_{t}[/tex]

Drain current for Q2 is,

[tex]i_{D2}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( 2 W / L ) ( [tex]v_{GS2}[/tex] - [tex]V_{t}[/tex] )²

From the circuit, for both Q1 and Q2 transistors,

Gate voltage = Source voltage = Threshold voltage

So,

[tex]v_{GS1}[/tex] - [tex]V_{t}[/tex] = [tex]v_{GS2}[/tex] - [tex]V_{t}[/tex]

[tex]i_{D2}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( 2 W / L ) ( [tex]v_{GS2}[/tex] - [tex]V_{t}[/tex] )²

( [tex]v_{GS2}[/tex] - [tex]V_{t}[/tex] )² =[tex]i_{D2}[/tex]  / [ 1 / 2 [tex]k'_{n}[/tex] ( 2 W / L ) ]

[tex]i_{D1}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( W / L ) ( [tex]v_{GS1}[/tex] - [tex]V_{t}[/tex] )²

[tex]i_{D1}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( W / L ) ( [tex]v_{GS2}[/tex] - [tex]V_{t}[/tex] )²

[tex]i_{D1}[/tex] = 1 / 2 [tex]k'_{n}[/tex] ( W / L ) [tex]i_{D2}[/tex]  / [ 1 / 2 [tex]k'_{n}[/tex] ( 2 W / L ) ]

[tex]i_{D1}[/tex] = [tex]i_{D2}[/tex] / 2

[tex]i_{D1}[/tex] / [tex]i_{D2}[/tex] = 1 / 2

In the circuit, constant bias current imposes the constraint.

[tex]i_{D1}[/tex] + [tex]i_{D2}[/tex] = I

[tex]i_{D2}[/tex] = I - [tex]i_{D1}[/tex]

[tex]i_{D1}[/tex] / [tex]i_{D2}[/tex] = 1 / 2

[tex]i_{D1}[/tex] / ( I - [tex]i_{D1}[/tex] ) = 1 / 2

[tex]i_{D1}[/tex] = I / 2 - [tex]i_{D1}[/tex] / 2

[tex]i_{D1}[/tex] + [tex]i_{D1}[/tex] / 2 = I / 2

3 [tex]i_{D1}[/tex] / 2 = I / 2

[tex]i_{D1}[/tex] = I / 3

[tex]i_{D1}[/tex] / [tex]i_{D2}[/tex] = 1 / 2

I / 3 = [tex]i_{D2}[/tex] / 2

[tex]i_{D2}[/tex] = 2 I / 3

Therefore,

Drain current for Q1, [tex]i_{D1}[/tex] = I / 3

Drain current for Q2, [tex]i_{D2}[/tex] = 2 I / 3

The given question is incomplete. The complete question is :

A design error has resulted in a gross mismatch in the circuit of Fig. P9.24. Specifically, Q2 has twice the W/L ratio of Q1. if [tex]v_{id}[/tex] is a small sine-wave signal, find [tex]i_{D1}[/tex] and [tex]i_{D2}[/tex]. Fig. P9.24. is shown in the image attached.

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which produces the greater changes in kinetic energy: exerting a 10n force for a distance of 5 m or exerting a 20 n force over a distance of 2 m? (assume that all of the work goes into ke)

Answers

A 10N force for a distance of 5 m will produce the greater change in kinetic energy of the body.

According to the work energy theorem, the change in kinetic energy of the body is equal to the work done by the forces on the body.

So, we can write,

W = ΔK

ΔK in kinetic energy change,

W is the work done.

Now, the force is 10N exerted over a distance of 5m. so,

10 x 5 = ΔK

ΔK = 50J.

Now, the exerted force is 20N over a distance of 2m, so,

20 x 2 = ΔK

ΔK = 40J.

Hence, the 20N force is producing more change in kinetic energy of the body.

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a glass sphere is dropped into a container of water. the sphere weighs 13.1 n and displaces 5.1 n of water. what is the net force on the sphere?

Answers

The net force on the sphere that weighs 13.1 N and displaces 5.1 N of water if it is dropped into a container of water is 8 N

Net force = Fg - Fb

Fg = Force of gravity

Fb = Buoyant force

Fg = 13.1 N

Fb = 5.1 N

Net force = 13.1 - 5.1

Net force = 8 N

The direction is towards the force of gravity since Fg > Fb

Buoyant force is the upward thrust provided by the water on an object that is either floating or submerged in water. Force of gravity is the force acting on a mass due to the presence of gravity. It is also called as weight.

Therefore, the net force on the sphere is 8 N downwards

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light of 550 nm wavelength shining on a specific metal surface causes an electron to be ejected from that metal surface, but light of 560 nm wavelength does not cause an electron to be ejected. what can truthfully be said based on these facts?

Answers

When light with a wavelength of 550 nm shines on the provided metal, an electron is released from it, but not when light with a wavelength of 560 nm does so.

What is wavelength?

Whether a waveform signal travels over space or along a wire depends on its wavelength, which is the separation between two identical spots (adjacent crests) in subsequent cycles.

We know that;

Energy of electron e=hμ

∵ μ= c/λ

So ; e= hc/λ

Here h and c are constant so;

e ∝ 1/λ

Based on this ratio, we may conclude that:;

Less energy is released when the wavelength is larger, or vice versa.

Therefore, when light with a wavelength of 550 nm shines on the specified metal, an electron is released from it, but not when light with a wavelength of 560 nm does.

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Not Physics : What happens to infrared radiation released by the Earth if there is an increased level of carbon dioxide in the atmosphere? A.It is absorbed and heats the atmosphere.
B.It is converted to solar energy. C.It is converted to carbon dioxide.
D.It escapes and cools the atmosphere.
Give an Honest answer?!

Answers

If infrared radiation is released by the Earth and there is an increased level of carbon dioxide in the atmosphere, then it is absorbed and heats the atmosphere (option A).

What are greenhouse gases?

Greenhouse gases such as carbon dioxide and methane are well known to increase global warming because they trap the radiation that otherwise will be dissipated from the atmosphere to space.

Therefore, with this data, we can see that greenhouse gases are associated with global warming and it is the reason for which the dramatic increase in carbon dioxide levels may be dangerous.

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Four students differentiated between 2 celestial terms. Which student's example is NOT true?
1."A comet is mainly composed of ice and dust, and a meteoroid is composed of debris of comets and sometimes debris of asteroids."
2."A comet can generate a tail of gas and dust, and a meteor has a bright tail of light caused by a meteoroid during its atmospheric flight."
3."A moon is a celestial body that makes an orbit around a planet, and an asteroid orbits the sun."
4."A meteoroid is the part of a meteorite that survives the passage through our atmosphere and reaches the Earth's surface; and a meteorite is similar to an asteroid, but smaller."

Answers

Answer:

Explanation:

A meteoroid is an inevitably solid object ranging in size from 10 microns to 1 meter moving in interplanetary space. Meteoroids can be primary objects, as well as derivative fragments of larger celestial bodies (not only asteroids).

The example of the first student does NOT correspond to reality:

1. "A comet is mainly composed of ice and dust, and a meteoroid is composed of debris of comets and sometimes debris of asteroids."

A plan traveled 3000 km north in 2.5 hours? What is the velocity of the plane?​

Answers

In 2.5 hours, a plan covered 3000 miles in the north. The plane is moving at a 1200 km/ hr speed.

What formula is employed?

Distance = speed time is the formula used to solve the distance problem.

What exactly is meant by velocity?

It measures how far an object travels in a certain amount of time.. Velocity is defined as the distance an object travels in one unit of time.

Given,

2 and a half hours

1200 kilometer.

Distance/Time = Velocity

= 3000/2.5

= 1200km/ hr

How can I determine the velocity?

By dividing the amount of time it took the object to go a certain distance by the overall distance, one can calculate the object's initial velocity. V is the velocity, d is the distance, and t is the time in the equation V = d/t.

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The horizontal motion of a projectile does not influence its
free fall.
TRUE
FALSE

Answers

True because an object’s horizontal position, velocity, or acceleration does not affect its vertical position, velocity, or acceleration.

two narrow and parallel slits 0.08 cm apart are illuminated by a light of frequency 8 x 1011 khz. at what distance from the slits should the screen be placed to obtain a central bright fringe of width of 0.6 mm?

Answers

Distance from the slits should the screen be placed to obtain a central bright fringe of width of 0.6mm is 60mm.

d = 8 × [tex]10^{-4}[/tex]

λ = 8 × [tex]10^{-11}[/tex]

β = 6 × [tex]10^{-4}[/tex]

β = λD/d

Distance = βd/λ =  6 × [tex]10^{-4}[/tex] *  8 × [tex]10^{-4}[/tex]/  8 × [tex]10^{11}[/tex]

Distance = 60 mm

Regardless of an object's beginning or finishing position, distance may be defined as the amount of ground it has traveled. Distance is the distance that an item travels as it moves in any direction or even when it changes direction. Position describes where a thing is with relation to another object. Positions can be shown using a number line for straight-line motion. Displacement is the distance between the starting point and the finished position.

The whole path an item has taken can be used to define the distance of an object. an illustration The total distance covered by an automobile if it drives east for 5 km and then turns to head north for another 8 km.

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for most double-stranded dna eukaryal viruses, dna replication occurs in the and translation occurs in the .

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For most double stranded DNA eukaryotic viruses, DNA replication occurs in nucleus and translation occurs in the cytoplasm.

Viruses must rely on host cells for metabolic and reproductive functions since they are obligate intracellular parasites.

Although each virus type and species has a unique life cycle, all viruses replicate through the same fundamental steps. The attachment, entry, uncoating, replication, maturity, and release phases can be used to categorise the many stages of the viral life cycle.

DNA viruses only need to produce mRNA, therefore replication utilises techniques that are well-known in cell biology, including transcription of mRNA from dsDNA and replication of dsDNA inside the cell nucleus. Some larger viruses code for their own enzymes, while the majority utilise host enzymes for these operations.

However, ssDNA viruses first use the DNA enzymes of the host cell to convert their ssDNA to intermediate dsDNA, which is then translated into mRNA.

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what is the answer to Alfredo, who has a mass of 60kg, jumped off a retaining wall. His kinetic energy when he landed on the ground was 882 joules. What was his gravitational potential energy when he was sitting on the wall?

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Answer:

1.5m

Explanation:

i hope this helps

a professional quarterback needs to be able to throw a football the entire length of the field. what is the minimum initial velocity needed to get the ball 91 m down field? assume that air resistance is negligible. recall that the time of flight for projectile motion when the object lands at the height it is launched from is?

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the minimum initial velocity needed is 30.17 m/s and  time of flight for projectile motion is 4.27 seconds.

Given parameters:

Horizontal range of the projectile; H = 91 m.

Let, acceleration due to gravity = 10 m/s².

Then minimum initial velocity required is = √gR = √(10×91) m/s = 30.17 m/s.

And, Time of flight in this case: T = √2×u/g = √2×30.17/10 = 4.27 seconds.

Hence, the minimum initial velocity needed is 30.17 m/s and  time of flight for projectile motion is 4.27 seconds.

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Which form of energy travels in waves through matter?

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Sound energy is what travels in waves through matter.

Sound Energy is basically the result of a substance's vibration whenever movement of it's constituent particles is induced. It arises when a force, either sound or pressure, makes an object vibrate and the vibrations moving through something is what it is. The energy moves through the substance in waves.

In these waves, the particles move up and down which means that the kinetic energy has been transferred to them. Such waves that travel in the world around us are called mechanical waves and sound waves are a good example of how these propagate.

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The kind of energy that propagates through matter in waves is known as sound energy.

When a force, such as sound or pressure, causes an item or material to vibrate, the outcome is sound energy. Waves of that energy pass through the material. The sound waves are referred to as kinetic mechanical energy.

The propagation of vibrations through material is referred to as the sound energy. Noise is created when an item vibrates, which releases sound energy. Pressure waves are created by the sound vibrations and move through a material like air, water, wood, or metal.

Some of the examples of sound energy are:

an air-conditioning fana balloon poppinga car horn honkingbaby cryingsnapping your fingers

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alice is running from city college to lake merced and back. the distance she ran is the same as her displacement. true or false?

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Alice is running from city college to lake merced and back. the distance she ran is the same as her displacement is a False statement.

Distance is all covered distance but displacement is shortest distance. Being a vector quantity, displacement has both a magnitude and a direction. The vector (or straight line) distance between an initial and final position is what is meant by this term. Knowing these two places is consequently all that is necessary to determine the resultant displacement.

Calculate the inverse tangent of the ratio of the displacement components in the y- and x-directions to determine the direction of the displacement vector.

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Measurements from orbiting spacecraft suggests that mars had a magnetic field in its past. How could mars lose its magnetic field?.

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Bohr atomic model can not predict spectra for multielectron atom.

What is Bohr atomic model?

The Bohr model postulates  that  the electrons are orbit the nucleus at fixed energy if levels. Orbits further from to the nucleus to exist at highest energy levels.

Sol-

Bohr’s theory was unable to  explained the followings observations :

i) Bohr’s model could not explain the spectra of atoms containing more than one of  electron.

ii) It never not explain the Zeeman effect.

   In presence of the magnetic of field, each of  spectral line gets split up to into fine lines, the phenomenon is known as Zeeman effect.

iii) It could not explain the to Stark effect.

   In presence of the electric of field, each spectral line gets split up into fine lines, the phenomenon is known as as the Stark effect.

iv) The main objection to the Bohr’s model was raised by Heisenberg’s uncertainty principle.

    According to the  Heisenberg’s uncertainty principle, it is impossible to determine the simultaneously the exact position and the momentum of a small moving particle like an electron.

    But, according to Bohr’s model electron moves in well-defined orbits around the nucleus, and hence its position, as well as momentum, can be determined simultaneously, which is against the of  uncertainty principle.

    So, electron moves in well-defined orbits around to the nucleus is impossible.

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