1. find the correlation between the eeg signal and a 15 hz sinusoid and a 25 hz sinusoid. is the eeg signal more similar to a 15 hz sinusoid or a 25 hz sinusoid?

Answers

Answer 1

The correlation between an EEG signal and a 15 Hz sinusoid and a 25 Hz sinusoid can be determined by calculating the cross-correlation of the signals.

What is correlation?
Any statistical relation between different random variables as well as bivariate data, whether causal or not, is referred to in statistics as correlation or dependence. Although "correlation" can mean any kind of association inside the broadest sense, in statistics it typically refers to the strength of a pair of variables' linear relationships. Examples of common dependent phenomena also include relationship between parent and child height and the relationship between a good's price and the number of units consumers seem to be willing to buy, as shown in the as such demand curve.

The higher the correlation, the more similar the signals are. Therefore, the EEG signal is more similar to the sinusoid with the highest correlation.

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Related Questions

What is Law of Conservation of Matter explain using an example?.

Answers

The law of conservation of matter and the law of conservation of energy essentially state that neither type of energy can be created nor destroyed, only transformed. The process by which grapes ferment to produce wine is an illustration of the law of conservation of matter. The amount of matter in the reactants in the bottle doesn't change, but its chemical form does.

It is a fundamental tenet of classical physics that matter cannot be created or destroyed in an isolated system; rather, it can only be changed from one form to another. This means that despite the apparent changes that are seen, no matter is lost during any chemical or physical change that may occur with any substance.

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The illustration below shows three toy ducks floating on water, moving up and down as a wave travels to the right with a velocity of 3 m/s.Which of the following is the frequency of the wave?A. 0.75 Hz
B. 1.33 Hz
C. 1.5 Hz
D. 6.0 Hz

Answers

The illustration below shows three toy ducks floating on water, moving up and down as a wave travel to the right with a velocity of 3 m/s, the wave frequency is 0.75Hz

Wave frequency is the number of waves that travel through a fixed location in a specific amount of time. The hertz (Hz) is the SI unit for wave frequency, with 1 hertz equaling 1 wave passing a fixed point in 1 second. A greater wave has much more energy than a lower-frequency wave that has the same amplitude. Because higher frequency waves have closer crests, they have shorter wavelengths.

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What happens to the gravitational force between two objects when the distance between them is halved class 9?.

Answers

If the distance between the two objects is reduced to half, the force between them will rise by four times.

The initial distance between two objects is denoted by "r," the final distance is denoted by "r/2," the masses of the two things are denoted by m1, m2, and G is the universal gravitational constant.

Initial force F1 is defined by Newton's law of gravitation,

F1 = G × m₁m₂/ r²

The final force F' = G × m₁m₂/ (r/2)²

= 4G × m₁m₂/ r²

= 4F

As a result, the force will increase four times when the distance between two objects is halved.

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Shrinking Loop. A circular loop of flexible iron wire has an initial circumference of 160cm , but its circumference is decreasing at a constant rate of 15.0cm/s due to a tangential pull on the wire. The loop is in a constant uniform magnetic field of magnitude 0.800T , which is oriented perpendicular to the plane of the loop. Assume that you are facing the loop and that the magnetic field points into the loop.Part AFind the magnitude of the emf E induced in the loop after exactly time 9.00s has passed since the circumference of the loop started to decrease.Express your answer numerically in volts to three significant figures.Part BFind the direction of the induced current in the loop as viewed looking along the direction of the magnetic field.

Answers

The magnitude of the emf E is 0.0047 V, The Direction of the induced current is clockwise.

What is Emf and current?

In electromagnetism and electronics, an electromotive force is an energy transfer to an electric circuit per unit of electric charge, measured in volts. Devices called electrical transducers to provide an emf by converting other forms of energy into electrical energy.

An electric current is a stream of charged particles, such as electrons or ions, moving through an electrical conductor or space. It is measured as the net rate of flow of electric charge through a surface or into a control volume.

induced emf e = dphi /dt

so we need an expression for phi = BA = Bpi r^2

and since circumference C = 2 pi r,

we can write that as phi = BA = B* pi (C^22/4 pi^2 2)

phi   = BC^2/ 4p

Therefore d phi /dt = (BC/2pi ) (dC/dt)

since we know C is a function of t.

after 8 seconds, the circumference is 160 - 9*15 = 25 cm.

= (0.8)(0.25/2*3.14) )(0.15)

Emf= 0.00477 V   or 4.77 mV

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

induced current I = emf/R (direction is clockwise)

Hence, the magnitude of the emf E is 0.0047 V and the Direction of the induced current is clockwise.

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A was of sticky clay of mass m is hurled horizontally at a wooden block of mass M initially at rest on a horizontal surface. The clay sticks to the block. After impact, the block slides a distance d before coming to rest. If the coefficient of friction between the block and the surface is μ. what was the speed of the clay immediately before impact?

Answers

If the coefficient of friction between the block and the surface is μ. what was the speed of the clay immediately before impact:

solution:-

1st conservation of momentum

(m1 * v1i) + (m2 * v2i) = (m1 +m2) * vf

v2i = 0 m/s because the wooden block is at rest

(m1 * v1i) + (m2 * 0) = (m1 +m2) * vf

(m1 * v1i) = (m1 +m2) * vf

Equation #1

vf = (m1 * v1i) ÷ (m1 +m2)

vf is the velocity of the clay and block as they slide a distance d before coming to rest.

2nd conservation of energy.

The work of friction will reduce the kinetic energy of the clay and block to 0 Joules as the clay and block slide across the horizontal surface.

Initial Kinetic energy of the clay and block = ½ * (m1 +m2) * vf^2

Work of friction = µ * (m1 +m2) * g * d

Final KE = 0

Initial Kinetic energy of the clay and block – Work of friction = 0

[½ * (m1 +m2) * vf^2] – [µ * (m1 +m2) * g * d] = 0

[½ * (m1 +m2) * vf^2] = [ µ * (m1 +m2) * g * d]

Divide both sides by (m1 +m2)

[½ * vf^2] = [ µ * g * d]

vf^2 = [2 * µ * g * d]

Equation #2

vf = [2 * µ * g * d]^0.5

Equation #1

vf = (m1 * v1i) ÷ (m1 +m2)

set Equation #1 = Equation #2

(m1 * v1i) ÷ (m1 +m2) = [2 * µ * g * d]^0.5

Multiply both sides by (m1 +m2)

(m1 * v1i) = (m1 +m2) * [2 * µ * g * d]^0.5

Divide both sides by m1

v1i = (m1 +m2)/m1 * [2 * µ * g * d]^0.5

Speed is the gap traveled in step with unit of time.

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calculate the recoil velocity in the horizontal direction, in meters per second, of a 0.95-kg plunger that directly interacts with a 0.0205-kg bullet fired at 615 m/s from the gun. take the firing direction to be the positive direction.

Answers

The recoil velocity in the horizontal direction of the plunger is 13.27 m/s

What is recoil in physics?

Recoil is the backward force or momentum produced by an object such as a gun while discharging at a very high rate of velocity.

This can be understood by the famous Newton’s third law of motion in physics.

What are Newton's laws of motion?

The three fundamental laws of classical mechanics known as Newton's laws of motion describe how an object's motion and the forces acting on it interact.

Newton's first law states that unless a net external force acts on an object, it will either remain at rest or continue moving at a constant speed.

According to the second law, an object's force is determined by multiplying its mass by its acceleration.

The third law of motion by Newton states that equal but diametrically opposed forces always act in pairs. There is an equal but opposite reaction to every action, to put it another way.

Given Data:

mass of bullet, m1=0.0205kg

velocity of bullet before firing, u1=0 m/s

velocity of bullet after firing, v1=615 m/s

mass of plunger,m2=0.95kg

velocity of gun before firing,u2=0 m/s

Let velocity of gun after firing be, v2

From law of conservation of momentum,

m1u1+ m2u2= m1v1+ m2v2

m1×0+ m2×0=0.0205×615 + 0.95×v2

⟹0=12.60+0.95v2

⟹ v2=−13.27 m/s

This means gun moves in opposite direction to bullet, which is called recoil.

Thus, recoil velocity of plunger is equal to

13.27 m/s

Here, the negative(- ve) sign shows that plunger moves in the opposite direction of bullet.

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a vehicle with headlights separated by 1.80 m approaches an observer holding an infrared detector sensitive to radiation of wavelength 885 nm. what aperture diameter is required in the detector if the two headlights are to be resolved at a distance of 20.0 km?

Answers

The aperture diameter required in the detector if the two headlights are to be resolved at a distance of 20.0 km is 1.2 cm.

When a vehicle approaches with separated headlights S = 1.80 m and resolved at a distance of r = 20.0 km = 2 × 10⁴ m. The angle for the headlights is
S = θr

θ = S ÷ r

θ = 1.8 ÷ (2 × 10⁴)

θ = 9 × 10⁻⁵ radians

The Rayleigh criterion for the diffraction limit is the formula to calculate the aperture and limited angle with the radiation wavelength = λ = 885 nm = 885 × 10⁻⁹ m

θ = 1.22 × (λ ÷ D)

θD = 1.22 × λ

9 × 10⁻⁵ × D = 1.22 × 885 × 10⁻⁹

D = 1.0797 × 10⁻⁶ ÷ (9 × 10⁻⁵)

D = 0.012 m

D = 1.2 cm

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two children of mass 23 kg and 37 kg sit balanced on a seesaw with the pivot point located at the center of the seesaw. if the larger child sits a distance of 3.8 m from the pivot, then at what distance from the pivot point is the small child sitting in order to maintain the balance?

Answers

2.3 m is distance from the pivot point is the small child sitting in order to maintain the balance.

M1R1=M2R2

R2=M1R1/M2

R2=23×3.8÷37

R2=2.3 m

Distance is the length between two points or things, and it is directionless. Since distance is a scalar property, it only takes into account the total magnitude and ignores the start and finish locations. Being a scalar attribute, distance can only be positive or zero; it cannot be the opposite.

Although kilometers (km) and centimeters (cm) or millimeters (mm) can also be used to express shorter distances, the meter (m) is the most common unit of measurement for distance (mm). When calculating distance, the letter D is frequently used to denote the distance traveled.

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if you see a lightning bolt in the distance and 15 seconds elapse before you hear the corresponding thunder, how far away was the lightning bolt?

Answers

The distance of the lightning bolt from the point is 850m

What is speed of sound in air?

The speed of sound is defined as the distance through which a sound wave’s point, such as a compression travels per unit of time. The speed of sound remains the same for all frequencies in a given medium under the same physical conditions.

We can use echo formula to calculate the distance at which the sound in air travels. it is given by v= 2x/t

where v is the speed of sound in air which is 340m/s and x is the distance traveled and t is the time.

therefore,

340= 2x/5

2x= 1700

x= 1700/2

x= 850m.

Therefore the distance of the lightning bolt to the point of staying is 850m.

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which type of hose stream is created by specialized nozzles such as cellar nozzles, piercing nozzles, or chimney nozzles?

Answers

Answer:broken stream

Explanation:

 A large pendulum with a 200-lb gold-plated bob 12 inches in diameter is on display in the lobby of the United Nations building. The pendulum has a length of 75 ft. It is used to show the rotation of the Earth-for this reason it is referred to as a Foucault pendulum.What is the least amount of time it takes for the bob to swing from a position of maximum displacement to the equilibrium position of the pendulum? (Assume that the acceleration due to gravity is g=9.81m/s2 at the UN building.)t=________s

Answers

The bob swings from a position of greatest displacement to the pendulum's equilibrium position in the least period of time possible is 2.4 seconds.

How does the time period change when the bob's displacement increases?

As a result, the mass of the bob has no effect on the basic pendulum's time period. As a result, the pendulum's period is unaffected if the bob's mass rises.

when the mean position of a simple pendulum's bob is altered?

A simple pendulum's bob is moved from its equilibrium position O to a position Q that is h heights above O, and then it is let go. assuming the bob's mass to be m and time period of oscillations to be 2 s, the tension in the string, when the bob passes through O

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calculate the amount of charge incoloumbs that flows through an electric heater in 20 mins when the ucrrent is 8 amps

Answers

Q is the energy in coloumbs that passes through with an current heater in 20 minutes at an 8 amp current.

What's current?

Charge moves across a point on the a circuit at a rate known as current. When numerous coulombs of charge pass over a wire's cross section in a circuit, a large current is the result. if the wire is tightly packed with charge carriers.

What is the current recipe?

The electric current equation is I=V/R, and it can be used to determine electric current. This equation, which is based on Ohm's Law, is also referred to as the "current equation." The variables "I" and "V" stand for current, voltage, and resistance, respectively.

Briefing:

I=8Amph,

T=1hr=3600sec,

Charge flow Q=it

=8*3600

Q=28800C

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archimedes' principle can be used to calculate the density of a fluid as well as that of a solid. suppose a chunk of copper with a mass of 467.5 g in air is found to have an apparent mass of 431.4 g when completely submerged in an unknown liquid. (a) what mass (in g) of fluid does the copper displace? webassign will check your answer for the correct number of significant figures. g (b) what is the volume of copper (in cm3), using its density as given in this table? webassign will check your answer for the correct number of significant figures. cm3 (c) calculate the fluid's density and identify it. water

Answers

Archimedes' principle can be used to calculate the density of a fluid as well as that of a solid. If a chunk of copper with a mass of 467.5 g in air is found to have an apparent mass of 431.4 g when completely submerged in an unknown liquid. (a) The mass (in g) of fluid does the copper displace will be36.1 g (b) The volume of copper (in cm3), using its density will be 51.944 [tex]cm^{3}[/tex] (c) The fluid's density will comes out to be 0.694 g/[tex]cm^{3}[/tex].

Given,

The mass of the copper chunk, M = 467.5 g

Apparent mass of the copper chunk, m = 431.4 g

According to the Archimedes' principle

(a) The mass of fluid does the copper displaces = M - m

= 467.5 g - 431.4 g

=36.1 g

(b) To calculate the density of the copper chunk we must know its density, which is 9 g/[tex]cm^{3}[/tex],

So, volume of the copper = Mass (M)/density

= 467.5/9

= 51.944 [tex]cm^{3}[/tex]

(c) The density of the fluid will be the mass of the fluid divided by the volume, which can be represented as;

Density = Mass/ volume

= 36.1/51.944

= 0.694 g/[tex]cm^{3}[/tex]

Hence, the mass of fluid does the copper displaces will be 36.1 g, volume of the copper chunk will be 51.944 [tex]cm^{3}[/tex] and density of the fluid will be 0.694 g/[tex]cm^{3}[/tex].

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Calculate the angular momentum of a olid uniform phere with a radiu of 0. 115 m and a ma of 15. 0 kg if it i rotating at 5. 70 rad/ about an axi through it center

Answers

The angular momentum of a solid uniform sphere of radius 0.115 m and mass 15.0 kg if it rotates about an axis at its center at 5.70 rad/s

A uniform solid sphere of radius (r) = 0.115m

Mass of sphere (m)= 15kg

Rotation speed = 5.70 rad/s about an axis at its center

To find the angular momentum about its axis L =IW

I = moment of inertia = 2/5mr^2

W= speed of rotation

L= (2/5)*15*0.115*0.115*5.70

L = 0.452295kgm2/s

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What would be the orbital speed and period of a satellite in orbit 1.22 ✕ 10^8 m above the Earth?

Answers

The orbital speed and orbital period of a satellite are 1765 m/s and 4.56 ×10⁵s.

What is orbital speed?

The orbital speed can be described as the speed at which it orbits around either the barycenter or its speed relative to the center of mass of the most massive body.

Given the distance of the satellite from Earth's surface = 1.22 ×10⁸ m

The distance of the satellite from the center of the earth:

r = 1.22 ×10⁸ m + 6.38 ×10⁶

r = 1.284 ×10⁸ m

The orbital speed of the satellite : [tex]V = \sqrt{\frac{GM}{r} }[/tex]

The mass of the earth, [tex]M = 6 \times 10^{24} Kg[/tex]

[tex]V=\sqrt{\frac{6\times 10^{24}\times 6.67 \times 10^{-11}}{1.284 \times 10^{8}} }[/tex]

V = 1765 m/s

The orbital period of the satellite:

[tex]T =\frac{2\pi r}{V}[/tex]

[tex]T=\frac{2\times 3.14\times 1.284 \times 10^8}{1765}[/tex]

T = 4.56 ×10⁵ s

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what height does a frictionless playground slide need so that a 35 kg child reaches the bottom at a speed of 6.3 m/s ?

Answers

The height of the frictionless playground slide is 2.155 meters

What is kinetic and potential energy ?

An object possesses kinetic energy when it is in motion. A force needs to be applied if we want to accelerate an object. We must use effort to apply a force. The object will be moving at a new constant speed once the operation is finished and energy has been transferred to it.

Potential energy is a form of stored energy that is dependent on the arrangement of a system's components. When stretched or squeezed, a spring has higher potential energy. When lifted above the ground, a steel ball has more potential energy than when it is brought to rest on the ground.

Kinetic energy = Potential energy

K. E = 0.5m v² ; P.E = mgh

0.5mv² = mgh

Dividing both sides by m, we get ;

gh = 0.5v²

h = [(0.5v²) ÷ g]

h = (0.5 × 6.5²) ÷ 9.8

height = 2.155 m

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A student is conducting an experiment to analyze the mechanical energy of a block-spring system. The student places a block of mass 2kg on a horizontal surface and attaches the block to a horizontal spring of negligible mass and spring constant 100N/m, as shown in the figure. There is negligible friction between the block and the horizontal surface. The other end of the spring is attached to a wall. The block-spring system is initially at the spring's equilibrium position.
The student wants to collect data of the block-spring system that can be used to determine the work done on the spring by the block when the spring is compressed. Which of the following includes only the measuring devices that the student will need in order to collect the data?
Force probe and meterstick

Answers

Out of the given options, the measuring devices that the student will need in order to collect the data to determine the work done on the spring by the block are Force probe and meterstick.

W = F d cos θ

W = Work done

F = Force

d = Distance

θ = Angle between force and displacement vector

Here θ = 0°. So,

W = F d

The force applied on the block can be measured using a force probe. The force sensors essentially measure the deformation of an elastic support subject to the force. The distance that the block moves can be measured using a meter stick.

Therefore, in order to collect the data the student will need Force probe and meterstick.

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The block moves up an incline with constant speed. What is the total work W. Total done on the block by all forces as the block moves a distance L = 3.40 m up the incline? Include only the work done after the block has started moving at constant speed, not the work needed to start the block moving from rest.
Since the block is moving at a constant speed there is no change in kinetic energy. Since work is the change in kinetic energy and there is no change, the net work on the block is zero.

Answers

There is no change in kinetic energy because the block is travelling at a steady pace. The net work on the block is 0 since work is the change in kinetic energy, and there is none.

.kinetic energy. is the ONE of the  energy. that an object has as a result of motion. It is defined as the effort necessary to move a mass-based body from rest to the given velocity. In the absence of a change in speed, the body retains the kinetic energy it acquired during acceleration. Kinetic energy is the energy that is present in a moving object. You strolling down the street, molecules moving in space, and the planet rotating around the sun all have kinetic energy. The relationship between an object's kinetic energy and mass and square of its velocity is direct. A particle, an object, or a collection of particles can move because of kinetic energy, which is the force that drives motion.

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a 60-lb uniform thin panel is placed in a truck with end a resting on a rough horizontal surface and end b supported by a smooth vertical surface. knowing that the panel remains in the position shown, determine (a) the maximum allowable acceleration of the truck, (b) the corresponding minimum required coefficient of static friction at end a.

Answers

The maximum allowable acceleration of the truck is 0.544, the corresponding minimum required coefficient of static friction at end is 34.64.

What is acceleration?

Acceleration describes the speed and direction changes in velocity over time. Acceleration refers to the change in speed or direction of an item or point traveling straight forward. Due to the constant change in direction, motion on a circle accelerates even while the speed is constant.

What is static friction force?

Static friction occurs when an object is subjected to a force that is opposed by the frictional force; as a result, the object is kept at rest until the static friction force is removed. When there is kinetic friction, an object is not allowed to move.

Free body diagram

When the acceleration of the truck is maximum there is no contact between the parallels and the waves therefore, the reaction force at point "B" will be zero.

Mₐ= (ma) d

= (w* 2.5 cos 60°) = (ma 2.5 sin 60°)

=( 60*2.5 cos 60°)= (60/32.2 *a*2.5  sin 60°)

a= 15.89 ft/ s²

Equation of equilibrium in y- direction

Fy=0, Nₐ=w=60lb

Equation of equilibrium in x direction

Fₓ= max

F= mₐ (60/32.2*18.59)

f= 34.64

and as frictional force in μN

34.64=  μ*60

μ= 0.544

Therefore, the maximum allowable acceleration of the truck is 0.544, the corresponding minimum required coefficient of static friction at end is 34.64.

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Compared to an electron in the first electron shell of an atom an electron in the third shell.

Answers

They have more energy. One 1s orbital and two electrons are contained within the first shell. 8 electrons are located in the second shell, with 2 in a 2s orbital and 6 in three 2p orbitals.

What is a electron in an atom?The elementary electric charge of the electron is a negative one, making it a subatomic particle. Due to their lack of components or substructure, electrons, which are part of the lepton particle family's first generation, are typically regarded to be elementary particles.Electrons are fundamental to many physical processes, including gravity, electromagnetic interactions, weak interactions, electricity, magnetism, chemistry, and thermal conductivity.For neutrally charged species, the number of electrons in an atom is equal to the atomic number of an element. This indicates that an element has an equal amount of protons and electrons. Consequently, there are 8 electrons in oxygen.Three basic characteristics of an electron in an atom are charge, spin, and orbital angular momentum, the latter of which describes the electron's orbital motion around the nucleus.

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How is risk of collision calculated?.

Answers

Taking compass bearings is one of the maximum important ways of figuring out the danger of collision. good visibility is wanted to use this technique and a series or quantity of bearings need to be taken.

On smaller vessels bearings may be taken the use of a hand-bearing compass, on large vessels, a bearing or azimuth ring is used.

As soon as you perceive a danger of collision, you should perceive an appropriate movement to avoid collision to make sure the vessels will pass at a safe distance. You should then take that action to avoid collision as quickly as it's miles appropriate to accomplish that. digital Bearing lines are used to take the bearing of goals. The EBL extends from its own delivery role to the circumference of the radar display. If the bearing remains steady with decreasing variety, the chance of collision exists.

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What are the 10 conjunctive adverbs?.

Answers

Accordingly, also, additionally, similarly, likewise, therefore, specifically, yet, although, still, then, additionally, incidentally, next, subsequently, unquestionably, unquestionably, yet, nevertheless, therefore.

Conjunctive words: What are they?

Words that link other words or word groupings together are called conjunctions. Words, phrases, and sentences of equal significance are joined by a coordinating conjunction. There are three basic coordinating conjunctions: and, or, and but.

Which words that are conjunctions are some examples?

The term used to join words, phrases, and clauses is called a conjunction. Conjunctions come in many shapes and sizes in English, but some of the more popular ones include and, or, but, because, for, if, and when.

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identify the true statement from the following. laminar flow is characterized by the smooth flow of the fluid in layers that do not mix. turbulent flow is characterized by eddies and swirls that mix layers of fluid together.

Answers

Both of the statements, laminar flow is characterized by the smooth flow of the fluid in layers that do not mix and turbulent flow is characterized by eddies and swirls that mix layers of fluid together are true.

In fluid dynamics, laminar flow is shown by fluidic particles flowing smoothly in layers, with each layer moving smoothly past the adjacent layers with very less or no mixing. At low rate of displacements, the fluid starts to flow without any mixing, and adjacent layers slide past upon one another. And a turbulent flow is type of fluid flow where the fluid undergoes irregular fluctuations, or mixing with different layers.

Hence, both the statements are true.

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in which situation should you use high beams? in the fog or heavy snow when you're alone on a poorly lit road within 500 feet of an approaching vehicle within 300 feet behind a vehicle submit answer

Answers

Only use high beam lights in low traffic areas or on highways, especially if there are no other vehicles within 200 metres of them. High beam lights provide brilliant illumination.

In which of the following situations are high beams necessary?

High beam headlights should be used when it is too dark to see the road ahead well enough to drive safely. Even the most seasoned drivers may find nighttime low visibility unnerving.

Which situations need the use of low beams?

Low beams are the perfect choice if you don't want to blind other motorists while driving in traffic with your blazing high beams. Driving in heavy rain, snow, or fog requires the use of your low beam lights.

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The capacitors in each circuit are fully charged before the switch is closed. Rank, from longest to shortest, the length of time the bulbs (resistors) stay lit in each circuit.
(picture)

Answers

The idea here is to simplify circuit analysis by using resistors and capacitors. Using the time constant for every circuit, rank the circuits from longest to shortest. The circuit's time constant is ranked as follows: C > A = E > B > DC > A = E > B > D.

A capacitor is a device that stores electrical energy in an electric field by building up electric charges on two nearby surfaces that are isolated from one another. It has two terminals and is a passive electronic part.

Capacitance is the name for a capacitor's effect. While there is some capacitance between any two electrical conductors that are close to one another in a circuit, a capacitor is a component made to increase capacitance. Condenser is still used in a few compound names for the capacitor, like condenser microphone. Capacitors are made from a wide range of materials and come in a wide variety of shapes, sizes, and designs. They all have at least two electrical conductors, known as plates, separated by an insulating layer (dielectric).

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When a comet is within the inner solar system, its visible tails point __________.

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When a comet is within the inner solar system, its visible tails point away from the Sun.

What is the Sun?

The Sun can be defined as an astronomical (celestial) body that is typically found within the solar system around which planetary (astronomical) bodies orbit, and whose light shines on planet Earth to differentiate day and night.

What is a comet?

In Astronomy, a comet can be defined as the cosmic, small snowballs of volatile frozen gases, dust, and rock that are orbiting the Sun. This ultimately implies that, comets comprises a small body of volatile ices that are in orbit around the Sun.

Based on astronomical records and information, the visible tail of a comet points way from the Sun when it is within the inner solar system.

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Light is emitted when an electron:
makes a transition to a lower energy level.
The electron in an atom is boosted to a higher orbit and excited. When the electron returns to its original state, it de-excites and emits a photon of light.

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When the electron changes levels, it decreases energy and the atom emits photons. The photon is emitted with the electron moving from a higher energy level to a lower energy level.

The electron absorbs the energy and jumps to a higher energy level. In the reverse process, emission, the electron returns to the ground state by releasing the extra energy it absorbed. Recall that the electrons must occupy one of the energy levels.

The electrons in an atom exist in various energy levels. When an electron moves from a lower energy level to a higher energy level, energy is absorbed by the atom. When an electron moves from a higher to a lower energy level, energy is released.

When an electron falls from a higher energy to a lower energy level, it accelerates. We know accelerating charged particle radiates energy in the form of electromagnetic radiation.

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q7. a rod is free to slide on a frictionless sheet of ice. one end of the rod is lifted by a string. what would be the angle of the string to maintain the rod at rest? (acute angle, right angle, obtuse angle) explain your choice.

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If a rod is free to slide on a frictionless sheet of ice and one end is lifted by a string, the angle of the string would be a right angle in order to maintain the rod at rest.

This is because in order for an object to be at rest, the forces acting on it must be balanced. In this case, the only forces acting on the rod are the force of gravity pulling the rod down and the force of the string pulling the rod up. If the string is at a right angle to the rod, the forces will be balanced and the rod will remain at rest.

If the string were at an acute angle (less than 90 degrees), the force of the string would not be strong enough to balance the force of gravity, and the rod would slide down. If the string were at an obtuse angle (greater than 90 degrees), the force of the string would be too strong and the rod would be pulled off the sheet of ice.

Therefore, the angle of the string must be a right angle in order to maintain the rod at rest on the frictionless sheet of ice.

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a resonant tank circuit consists of a 20 mh coil operating at a frequency of 950 khz. what is the inductive reactance of the coil?

Answers

Answer:

Inductive resistance of the coil 120 kΩ

Explanation:

Given:

L = 20 mH = 0.020 H  - Coil inductance

f = 950 kHz = 950 000 Hz - Frequency

______________

XL - ?  Inductive resistance of the coil

XL = 2·π·f·L

XL = 2·3.14·950000·0.020 ≈ 120 000 Ω    or  XL = 120 kΩ

TRUE/FALSE. cross-sectional surveys can be used to establish baseline data prior to the initiation of longitudinal studies.

Answers

Answer: true

Explanation:

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