What new rock formations did you see when the landscape was only exposed to energy from the sun?.

Answers

Answer 1

The rock formations that are visible when the landscape is exposed to energy from the sun are sedimentary rocks.

A landscape is a geomorphological unit that is categorized based on characteristics such as elevation, slope, orientation, stratification, rock exposure, and soil type.

Sedimentary rock or also known as sedimentary rock is a rock that forms on the surface of the earth under conditions of low temperature and pressure. These rocks originate from rocks that were formed earlier, which experience weathering, and erosion, and then weathering is transported by water, air, or ice, which are then deposited and accumulate in depositional basins, forming sediments. These sedimentary materials then compact, harden, undergo lithification, and form sedimentary rocks.

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Related Questions

What happens when the vector dna is digested with ecori? what does this tell you about the number and distribution of ecori sites in the vector?.

Answers

A vector is a DNA can be defined as a molecule which is used as a vehicle to artificially carry foreign genetic material into another cell, where it can be replicated and/or expressed.

What does this tell you about the number and distribution of ecori sites in the vector?

When a vector DNA is digested with restriction endonuclease such as EcoRI, the DNA molecule is cleaved at unique sites. EcoRI recognizes the six-base-pair sequence GAATTC in the vector DNA. On the number of sites this sequence is present in the vector, the DNA molecule is cleaved at those site. For example if this sequence is present at five sites in a vector DNA, then endonuclease EcoRI will digest the DNA molecule  into six fragments ranging from 3.6 to 21.2 kilobases long.

This is how we can tell about the number and distribution of ecori sites in the vector.

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Please help its finals! I’ll give BRAINLIEST

Answers

Answer:

Before the rubber ball moves, it's stationary. Therefore the energy is Potential. As it rolls, the energy is transferred equally between the ball itself and the ramp, making the energy transferred Kinetic Energy.

Explanation:

A car of mass 1000 kg travelling at 8.0 m / s collides with a lorry of mass 3000 kg that is travelling at 2.0 m / s in the same direction. After colliding, the two vehicles stick together. What is their speed after the collision? A 2.0 m / s B 2.5 m / s C 3.5 m / s D 5.0 m / s

Answers

3.5 m / s  is their speed after the collision.

Mass of a car = 1000 kg,

Velocity car = 8 m/s,

Mass  lorry = 3000 kg,

Velocity lorry = 2 m/s.

u = initial velocity,

v = final velocity.

m₁ = 1000 kg, m₂ = 3000 kg, u₁ = 8 m/s, u₂ = 2 m/s

(1000)(8) + (3000)(2) = (1000 + 3000)·v

8000 + 6000 = 4000·v

4000·v = 14000

v = 3.5 m/s

velocity (often abbreviated as "s") is a scalar variable that describes how lots an item's vicinity modifications over time or how plenty it modifications in step with unit of time.

The average speed of an item in a period of time is the distance traveled with the aid of the object divided by way of the length of the length.

Time divided with the aid of distance are the rate-associated metrics.. The meter in keeping with second (m/s) is the SI unit of pace, while the kilometer consistent with hour (kph) is the most usually used unit of speed in each day existence.

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A chunk of ice breaks off a glacier and falls 30. 0 meters before it hits the water. Assuming it falls freely (there is no air resistance), how long does it take to hit the water?.

Answers

The ice chunk that breaks off a glacier and falls 30. 0 meters will take around 2.47 seconds to hit the water.

State the equations of motions?

The fundamentals of an object's motion, such as its position, velocity, or acceleration at different periods, are described by kinematics equations of motion or Newton’s equations of motions. An object's motion in 1D, 2D, and 3D is controlled by these three equations of motion.

First law of equation: v = u + at

Second law of motion: s = ut + / at2

Third law of motion: is v^2=u^2 + 2as

The informations given in the question are

The height from where chunk fell = h = 30.0 m

The initial velocity of the ice chunk that broke off the glacier = u = 0 m/s

Let us assume that the time taken to cover 30.0 m of height is t

Considering the acceleration due to gravity = g =9.8 seconds

With the help of second equation of motion, we find

=> h = ut + 1/2 gt²

=> 30 = 0 + 1/2 × 9.8 × t²

=> t² = 30 x 2/9.8

       = 6.122

=> t = 2.47 second

Hence, The ice chunk that breaks off a glacier and falls 30. 0 meters will take around 2.47 seconds to hit the water.

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What is KE and PE? Please explain me in detail

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KE stands for kinetic energy
Kinetic energy is the energy an object has because of its motion
PE stands for potential energy
Potential energy is stored energy that depends upon the relative position of various parts of a system

a voltmeter pointer is 6 centimeters in length (see figure). find the number of degrees through which it rotates when it moves 2.1 centimeters on the scale. (round your answer to two decimal places.)

Answers

When the voltmeter pointer moves 2.1 centimeters on the scale, it rotates 20.06 degrees. The concept is the measure of an arc equals to the measure of the central angle.

What is arc and central angle of a circle?An arc is a curve or a portion of the circumference of a circle. A central angle is an angle formed by two radii in a circle.

The ratio of an arc length to the circumference equals to the ratio of a central angle to the total degrees of a circle.

[tex]\frac{x}{2 \pi r} = \frac{\alpha }{360}[/tex]

Where

x = arc lengthπ = 3.14r = radiusα = central angle

Given the case a voltmeter pointer is 6 centimeters in length. When it moves 2.1 centimeters on the scale, what is the number of degrees through which it rotates?

Without the figure, we assume that the radius of the circle is 6 cm when the arc length is measured. So, we got:

x = 2.1 cmr = 6 cm

The number of degrees through which it rotates is the central angle.

[tex]\frac{x}{2 \pi r} = \frac{\alpha }{360}[/tex]

[tex]\frac{2.1}{2 \times 3.14 \times 6} = \frac{\alpha }{360}[/tex]

[tex]\frac{2.1}{37.68} = \frac{\alpha }{360}[/tex]

[tex]\alpha = \frac{2.1 \times 360}{37.68}[/tex]

α = 20.06°

Hence, the number of degrees through which it rotates is 20.06 degrees.

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the total number of x-rays emitted from an x-ray tube could be determined by adding together the number of x-rays emitted at each energy over the entire spectrum, a process called integration.

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The statement above is true. Integration is the total number of x-rays emitted from its tube, which is determined by adding together the number of x-rays emitted at each energy over the entire spectrum.

An X-ray is a penetrating form of electromagnetic radiation. It is usually used in the medical world to produce pictures of the body's internal structures. An X-ray tube is a tube that converts electrical input power into X-rays.

In the x-ray machine, the x-ray tube emits x-rays that would be used for certain purposes. To count how many x-rays got emitted by the x-ray tube, one can add all the numbers of emitted x-rays at each energy over the entire spectrum.

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the rings of neptune: the rings of neptune: all lie within neptune's roche limit. often appear as clumpy ring arcs, rather than complete and symmetrical. number five, with three narrow, two more diffuse. were confirmed by the voyager 2 in 1989. all of these are correct.

Answers

All the statements in the question about the rings of Neptune above are correct.

Neptune is the eighth planet in our Solar System. It has a planetary ring system that may consist of ice particles coated with silicates. The first was detected by a team led by Edward Guinan in 1968, with the following hypothesizes solved by Voyager 2's images in 1989.

There are three main rings in Neptune's planetary ring system:

Adams ring, 63000 km from Neptune's center.Le Verrier ring, 53000 km from Neptune's center.Galle ring, 42000 km from Neptune's center.

The picture attached is a combined color and near-infrared image of Nepture created by NASA and ESA.

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A tandem bike is a bike designed for two riders. Rider 1 is pushing on the pedals with a force of 30 N and Rider 2 is pushing on the pedals with a force of 20 N. The total mass of both riders and the tandem bike is 150.0 kg. What is the approximate acceleration of the riders on the bike?

Answers

The approximate acceleration of the riders on the bike is 3 m/sec².

What is acceleration?

The rate at which an item changes its velocity is known as acceleration, a vector quantity. If an object's velocity is changing, it is acceleration.The net acceleration that objects get as a result of the combined action of gravity and centrifugal force is known as the Earth's gravity, or g. It is a vector quantity whose strength or magnitude is determined by the norm and whose direction correlates with a plumb bob.

Given total force applied = 30 + 20 = 50 N

Mass of two riders = 150 Kg

So, the acceleration = 150 /50 = 3 m/sec².

The approximate acceleration of the riders on the bike is 3 m/sec².

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HELP HELP HELP I NEED HELP QUICK PLEASE

Answers

Answer:
In the diagram above, the net force is 320Newtons to the right with an acceleration of 8m/s^2

Help me, please!!!!!!!!

If another object (a can of beans) was dropped from 12 meters in free fall, how long will it take for that object to fall to the ground?

Answers

It  will take the object a total time of 1.564 seconds to fall from a height of 12m.

What is time?

Time is the apparent progression of events from past to future.

To calculate the time it takes the object to fall to the ground, we use the formula below.

Formula:

H = ut+gt²/2

Where:

H ⇒ Heightt ⇒ Timeu ⇒ Initial velocityg ⇒ Acceleration due to gravity

From the question,

Given:

H = 12 mu = 0 (drop from a height)g = Constant = 9.8 m/s²

Substitute these values into equation 1

12 = (0×t)+(9.8t²/2)

Solve for the value of t

t² = (12×2)/9.8t = √(24/9.8)t = 1.564 seconds

Hence, it will take the object 1.564 seconds to fall to the ground.

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When light enters water from air perpendicularly (i.e. along the normal), which of the following happen (may be more than one)

It bends away from the normal
It's speed gets smaller
Its wavelength increases
Its frequency decreases
Its wavelength decreases
Its frequency increases
Its speed increases

Answers

Its speed gets smaller and its wavelength decreases.

As light travels from one medium to another, its wavelength drops, and as a result, its speed also reduces (although the frequency is unaffected). The ratio of the speed of light in a vacuum to that in a second medium with a higher density is the refractive index. It is also known as the index of refraction. In mathematics and descriptive writing, the letter n or n' is most frequently used to represent the refractive index variable. The degree to which a light beam is deflected (or refracted) when it enters or exits a substance varies with its refractive index. The frequency of light travelling through a material affects its refractive index. The highest frequencies have highest values of n. For instance, the refractive index of violet light is roughly 1% higher than that of red light in common glass.

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if you swing a bucket of water fast enough in a vertical circle, at the highest point the water does not spill out. this happens because an outward force balances the pull of gravity on the water. group of answer choices true false

Answers

If you swing a bucket of water fast enough in a vertical circle, at the highest point the water does not spill out. This happens because an outward force balances the pull of gravity on the water - True

What is centripetal force?

It is the force applied to a body that is rotating in a circle and is pointed in the direction of the body's center.Centripetal force formula:

                                             F = mv^2/r

This experiment demonstrates Newton's first law of motion, which states that objects either remain still or move straight ahead. Inertia is the name for this quality. Force is required to cause an object to rotate in a circle.

The water inside the pail pulls on your arm as you swing it back and forth because it wants to keep moving in a straight line while you want it to go in a circle. The water pushes against the bottom of the bucket as you hold on to prevent it from flying away. The water pushes more forcefully against the bottom of the pail as you swing higher and higher. However, gravity tries to remove the water from the bucket when you turn it upside down. Ultimately, whichever force—gravity or centripetal—is stronger wins. The water will remain in the pail as long as you swing the bucket quickly enough for centripetal force—the force of the water pressing against the bottom of the bucket—to outweigh gravity.

Hence, the correct answer is True.

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How many total atoms are in 1.0 moles of H20

Answers

Answer:3 atoms

Explanation:

each molecule of water contains 2 H and 1 O atom = 3 atoms, so there are approximately 1.8 x 10^24 atoms in a mole of water.

The number of atoms that exists in one mole of water (H₂O) is 1.8 x 10²⁴.

What is an atom?

The atom is the smallest unit of matter that may be broken into smaller pieces without generating electrically charged particles. Furthermore, it is the tiniest substance with properties like chemical elements. Consequently, the atom is the fundamental unit of chemistry.

Vacuum space constitutes the majority of an atom. The remaining component consists of a positively charged nucleus consisting of protons and neutrons around a negatively charged electron cloud.

Given:

The mole of water, [tex]m = 1 mole[/tex]

One mole of water contains 6.02 x 10²³  molecules of water.

But each molecule of water has 2 Hydrogen and 1 Oxygen atom.

In H₂O, there are 2 + 1 = 3 atoms.

Thus, there are 3 x 6.02 x 10²³ atoms in 1 mole of water, which is equal to 1.8 x 10²⁴ atoms.

Therefore, the number of atoms present in one mole of  H₂O is 1.8 x 10²⁴.

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if you want a characteristic rl time-constant of 5.00 s, and you have a 100 ohms resistor, what value of self-inductance [in h] is needed:

Answers

The self-inductance of the RL circuit is 500 H.

We need to know about the time constant r-l circuit to solve this problem. The time constant of RL circuit depends on the resistance and inductance of its circuit. It can be written as

T = L / R

where T is the time constant, L is inductance and R is resistance.

From the question above, the given parameters are

T = 5 s

R = 100 Ω

By using the equation, we can calculate the self-inductance

T = L / R

L = T . R

L = 5 . 100

L = 500 H

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Which option is correct and explain why (in detail)? Also, ignore the graph I drew to the right.

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If two balls are projected with initial velocity v and 2v respectively, the ball that is projected with a velocity of 2v would reach the ground first.

What is a projectile?

The term projectile has to do with the kind of motion that uses a parabolic path. The parabolic path is a path that is curved. For instance, if you trough a ball from one point to the other, the ball does not follow a straight path, the path of the ball is curved.

The time that it takes for the ball to reach the ground from the point of projection is dependent on the initial velocity of the ball. Thus, if the ball has been projected with a higher initial velocity then the ball would reach the ground faster and vice versa.

Thus, given that the velocity 2v is twice the velocity v, the ball that is projected at this velocity would reach the ground first.

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A mass m is at a height h above the surface of a planet of mass M and radius R.
The gravitational field strength at height h is g. By considering the gravitational force acting on mass m, derive an equation from Newtor's law of gravitation to express g in terms of M, R, h and the gravitational constant G.

Answers

Answer:

Explanation:

Given:

m - mass

h - height

M - mass of the planet

R - planet radius

G - Gravity constant

_________

g - ? Acceleration of free making

Newton's law of universal gravitation:

F = G·m·M / (R +h)

g = F / m

g = G·M / (R +h)

The international space station has a mass of 1. 8 × 105 kg. A 70. 0-kg astronaut inside the station pushes off one wall of the station so she accelerates at 1. 50 m/s2. What is the magnitude of the acceleration of the space station as the astronaut is pushing off the wall? give your answer relative to an observer who is space walking and therefore does not accelerate with the space station due to the push.

Answers

What is the magnitude of the acceleration of the space station as the astronaut is pushing off the wall?

Question Parameter(s):

The International Space Station has a mass of 1.8 × 105 kg. A 70.0-kg.

The station pushes off one wall of the station so she accelerates at 1.50 m/s2.

Generally, the equation for the  Force is mathematically given as

F = ma

Therefore

F = 70(1.50)

F= 105 N

In conclusion, the space station force

F = ma

105 = 1.8 * 10^5 a

a = 5.83 * 10^{-4} m/s^2

A ball is held at rest at the top of a hill. The ball is then released and starts rolling down the hill. At the bottom, it reaches level ground and keeps rolling along the ground. Consider the level ground at the bottom of the hill as zero height.

Answers

The correct answer is the movement of the ball because of conversation into kinetic energy.

Why here potential energy is changed to Kinetic energy?

The ball's stored potential energy becomes kinetic energy as it begins to move and rolls down the slope. The movement of the objects is caused by this kinetic energy.

Due to its height above the ground, the ball has gravitational potential energy when it is at the top of a hill.

Due to its velocity as it rolls down the hill, the potential energy is changed into kinetic energy.

Hence due to the ball's collision with the wall, it abruptly stops, converting its kinetic energy into internal energy.

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An astronaut is traveling in a spacecraft in outer space in a straight line at a constant speed of 0.500c. Which of the following effects would she experience?

A.Her heart rate would change.

B.Some of the dimensions of her spacecraft would be shorter.

C.None of those answers is correct.

D.She would find it harder to breathe.

E.She would feel heavier.

Answers

If an astronaut is traveling in a spacecraft in outer space in a straight line at a constant speed of 0.500 c, she would feel heavier.

According to relativity, the faster one moves, the more mass they have. If one travels at speed of light, their mass becomes infinite and would have to slow down.

M = Mo / √ [ 1 - ( c² / v² ) ]

M = Mass of body at a given speed

Mo = Mass of body at rest

c = Speed of light

v = Speed of body

Here, v = 0.5 c

M = Mo / √ [ 1 - ( c² / ( 0.5 c )² ) ]

M = Mo / √ - 0.75 / 0.25

M = Mo / √ - 3

M > Mo

Therefore, f an astronaut is traveling in a spacecraft in outer space in a straight line at a constant speed of 0.500c, she would feel heavier.

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a 0:20 cm radius cylinder, 3:0 cm long, is wrapped with wire to form an inductor. at the instant the magnetic field in the interior is 5:0 mt, the energy stored in the field is about:

Answers

The energy stored in the field is 3.75*10-6J.

What is magnetic field?

The area in which magnetism acts, called the magnetic field, is where a magnetic substance or a moving electric charge is located. An illustration of the magnetic field that shows how a magnetic force is dispersed both within and outside of a magnetic substance.

What is inductor?

A wire coil called an inductor is used to store energy in the form of a magnetic field. Inductor energy storage capacity is increased by the coil's typical wrapping of an iron-containing core.

Energy density stored=B2/2?

                                       =5*5*10-6/4*?*10-7

                                        =125/4?

Total energy stored= Energy density stored*Volume

                                  =?r2*h (125/4?)

                                 =3.75*10-6J

Therefore, the energy stored in the field is 3.75*10-6J.

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Describe how the capacitance of a parallel plate capacitor changes with the geometry of the capacitor.

Answers

A parallel capacitor's geometrical characteristics determine its capacitance. the separation of the plates. The capacitance reduces as the distance between the plates grows.

What are capacitance and its measure?

Farad, denoted by the letter F, is the SI unit for electrical capacitance. In large part, the unit bears the name of English physicist Micheal Faraday. The capacity of a body or thing to hold an electrical charge is often referred to as farad. The SI base units used to describe it are s4A2m-2kg-1.

Exactly why are the capacitance used?

They are effective at lessening voltage pulsation. The capacitor is charged in a parallel circuit when a positive voltage is applied, and it discharges when a low voltage is applied. While most electronic circuits use DC, the electricity that comes out is AC.

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what linear speed must a 0.0494-kg hula hoop have if its total kinetic energy is to be 0.111 j? assume the hoop rolls on the ground without slipping.

Answers

If the total kinetic energy of the hoop is to be 0.111 J, then the hoop's linear speed must be 1.24 m/s.

What is kinetic energy ?

kinetic energy is a form of energy that an particle has by reason of it's motion. If we want to accelerate an object then we must apply a force. The average kinetic energy of all the molecule assumed to be directly proportional to the absolute tempreture of the gas.

The Kelvin tempreture of a substance is directly proportional to the average kinetic energy of the particles of the substance.

This is the reason why measure of the average kinetic energy of the molecule of a material called tempreture.

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Two objects of masses 20 kg and 8 kg are hung from the ends of a stick that is 70 cm long and has marks every 10 cm, as shown. ABCDEFG 10 20 30 40 50 60 20 kg 8 kg If the mass of the stick is negligible, at which of the points indicated should a cord be attached if the stick is to remain horizontal when suspended from the cord? 1. E 2. F 3. B 4. G 5. A 6. C 7. D

Answers

Option 3. is the correct answer.

Mass of object 1 at one end = 20 kg

Mass of object 2 at the other end = 8 kg

The total length of a stick = 70 cm  

The mass of the stick is negligible

As we know that x =  m₁x₁+m₂x2/m₁ + m₂  

x = 20(0) + 8(70)/20 + 8  

As the first object is at the start so distance is equal to 0

x = 20 cm

Point B is the point from which the stick remains horizontal when suspended from the cord.  

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A- In the mobile in (Figure 1) , what is the inertia of the giraffe Mgir in terms of the inertia Mm of the monkey?
(Mg/Mm)
B- In the mobile in (Figure 1) , what is the inertia of the elephant Mel in terms of the inertia Mm of the monkey?(Me/Mm)

Answers

The inertia of the elephant Mel in terms of the inertia Mm of the monkey is 2Mm

the moment = 0

from monkey & giraffe

Mm*3d = Mg*d

Mg = 3*Mm

-------------------

for Me  & Mg

(Mg + Mm)*2d = Me*4d

(3Mm+Mm)*2d = Me*4d

4*Mm*2 = 4*Me

Me = 2Mm

Until some force changes the speed or direction of an object, it will continue to move in the same direction. This is known as inertia. The phrase is correctly understood as a shortened form of "the principle of inertia," which is a concept that Newton discussed in his first law of motion. Unless influenced by an unbalanced force, an object at rest stays at rest, and an object in motion stays in motion while maintaining a constant speed and a straight line. An object at rest has a tendency to stay at rest, and an object in motion has a tendency to continue moving in a straight line at a constant speed.

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A 4 kg block is pushed up an incline that makes a 30o angle with the horizontal, as shown in the figure. Once the block is pushed a distance of d=5.0 m up the incline, the block remains at rest. What is the approximate change in the gravitational potential energy of the block-

Answers

Answer: 98 J

Explanation:

The starting GPE is 0 because the block is at h=0 (bottom of the incline).

The block moves 5.0 m up the incline, so you have to figure out its height (h) relative to the bottom of the incline, where h=0.

sin30 = h/5

solve for h:  h = sin30 x 5 = 2.5m  (height of the block, 5 m up the incline)

Now you can solve for GPE = mgh

GPE = (4 kg)(9.8 m/s2)(2.5 m) = 98J

which of the following statements correctly describe the principal quantum number, n? select all that apply
-n can have any positive whole number number
-the value of n determines the shape of an orbital
-the value of n are restricted by the value of l
-the higher the value of n, the lower the energy value
-the lower the value of n, the greater the probability that the electron is closer to the nucleus

Answers

n can have any positive whole number, the lower the value of n, the greater the probability that the electron is closer to the nucleus.

Atomic nuclei include electrically superb protons and electrically neutral neutrons. those are held together with the aid of the strongest regarded fundamental pressure, called the robust force. The nucleus makes up lots much less than. 01% of the volume of the atom, but commonly contains more than 99.9% of the mass of the atom.

A nucleus is a group of debris referred to as protons, which are undoubtedly charged, and neutrons, which can be electrically neutral. Protons and neutrons are in flip made from particles referred to as quarks.

The nucleus controls and regulates the sports of the cellular (e.g., growth and metabolism) and consists of the genes, and systems that comprise the hereditary facts. Nucleoli are small in our bodies and are regularly seen inside the nucleus. The gel-like matrix wherein the nuclear components are suspended is the nucleoplasm.

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what is the maximum speed vmax that the cylinder can move along its circular path without slipping off the turntable?

Answers

The cylinder may move along its round path at the maximum speed vmax without falling off the turntable, which is 0.343 m/s. For a mass m body  at speed v in a circular of radius r, the centripetal force Fc is Fc| = m v 2/r.

How quickly can you go?

The fastest a person can go is considered to be at maximum speed. Velocity is what is meant by the term "acceleration," and since velocity has both a greater acceleration, athletes' acceleration can fluctuate depending on whether they are accelerating in one direction or both.

What is the best way to determine a wave's maximum speed?

Equation Speed = Wavelength x Frequency describes how wave speed relates to wave wavelength and wave frequency. Given the wavelength and frequency, this equation could be used to determine the wave speed.

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Which of the following changes would result in a clockwise emf in the loop? When you consider each option, assume that no other changes occur.
Check all that apply.
a) The magnitude of B increases.
b) The magnitude of B decreases.
c) The loop rotates through 45 degrees about the vertical axis (vertical dotted line) shown in the diagram.
d) The loop rotates through 45 degrees about the horizontal axis (horizontal dotted line) shown in the diagram.
e) The loop moves to the right while remaining in the plane of the page.
f) The loop moves toward you, out of the page, while remaining parallel to itself.

Answers

The conditions which would result in clockwise emf in loop are

a) The magnitude of B increases

c)The loop Rotates through 45 degrees about vertical axis

This all happens according to the right-hand thumb rule of electromagnetics. The EMF (Electro Motive Force) changes according to the movement of Loop as it is dependent on the motion which further connects to the right hand thumb rule as shown in the figure attached.

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Students are going to conduct an experiment to study the effect of a net force applied to an object on the object’s motion. In each trial of the experiment, the students will apply a net force on the object. They also need to take two other measurements. What are the other quantities they should measure in each trial of the experiment?.

Answers

Students are going to conduct an experiment to study the effect of a net force applied to an object on the object’s motion. In each trial of the experiment, the students will apply a net force on the object. They also need to take two other measurements. The other quantities they should measure in each trial of the experiment will be mass and acceleration

As we know that Force depend upon mass as well as acceleration , hence it is important to take measurements of mass and acceleration . Since ,

according to newton's third law

F = ma

where

m = mass

a = acceleration

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