in a pulse waveform, the on-time is 200 micro-seconds and off-time is 400 micro-seconds. calculate the duty cycle of this waveform.

Answers

Answer 1

The duty cycle of this pulse waveform is 33.33%.

The duty cycle of a pulse waveform with an on-time of 200 microseconds and an off-time of 400 microseconds, follow these steps:

Calculate the total time period (T) by adding the on-time (T_on) and off-time (T_off):
  T = T_on + T_off
  T = 200 microseconds + 400 microseconds
  T = 600 microseconds

Calculate the duty cycle (D) as the ratio of the on-time (T_on) to the total time period (T) and express it as a percentage:
  D = (T_on / T) * 100%
  D = (200 microseconds / 600 microseconds) * 100%
  D = 1/3 * 100%
  D = 33.33%

The duty cycle of this pulse waveform is 33.33%.

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Related Questions

Engine and brake traction control systems keep you from having to replace the _______ as often.

Answers

Engine and brake traction control systems keep you from having to replace the brakes as often.

The traction  control  uses the brakes and the torque of the engine to control the spin of the driving wheels.

As maximum of the burden is pulled up by the engine and brake traction control systems, this helps in keeping the brakes of the car protected.

The engine and the brake traction control systems provide stability as well as maximum traction due to which the brakes do not have to be replaced as often.

Brake traction control detects braking force to the wheels that need it hence increasing the torque on that particular wheel.

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pls help if u do it 100 points

pls help if u do it 100 points

Answers

Answer:

hhuuufuhrhuuuryheu7uhhehfu

What does mass of an object depend on

Answers

Answer:

the inertia of an object

Mass is that quantity that is solely dependent upon the inertia of an object. The more inertia that an object has, the more mass that it has

a force is continuously applied to an object, causing it to accelerate. after a period of time, however, the object stops accelerating. what conclusion can be drawn?

Answers

The conclusion that can be drawn after a period of time, however, the object stops accelerating when a force is continuously applied to an object is that the object has reached its maximum velocity and has stopped accelerating in most cases.

Acceleration refers to the rate of change of velocity with respect to time.

The velocity of an object is changing when it accelerates, either by speeding up, slowing down, or changing direction.

The acceleration of an object may be computed using the following formula:a = (v₂ - v₁) / (t₂ - t₁)Where:a = accelerationv₁ = initial velocityv₂ = final velocityt₁ = initial timet₂ = final time

An object will no longer accelerate when it has reached its maximum velocity.

This can happen when an external force is applied to the object, causing it to accelerate until it reaches its maximum velocity

.The object will no longer accelerate when it reaches its maximum velocity because the force and resistance are now balanced. When the net force on an object is zero, it is in a state of equilibrium, and its motion is no longer influenced by external forces.

Therefore, if a force is continuously applied to an object, causing it to accelerate and then stop after a period of time, it can be concluded that the object has reached its maximum velocity and has stopped accelerating in most cases.

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True or False finding an eigenvector of a might be difficult, but checking whether a given vector is in fact an eigenvector is easy?

Answers

True. Finding an eigenvector of a matrix can involve solving systems of equations and can be a difficult task, but once a potential eigenvector is found,

checking whether it is indeed an eigenvector only involves performing a scalar multiplication and a matrix multiplication, which is relatively easy.

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Comic-strip hero Superman meets an asteroid in outer space and hurls it at 800 m/s, as fast as a bullet. The asteroid is a thousand times more massive than Superman. In the strip, Superman is seen at rest after the throw. Taking physics into account, what would be his recoil speed (in km/s)?

Answers

Answer:

800km/s

Explanation:

Initial momentum = final momentum

the total momentum is zero, Before the release of the asteroid , but Superman and the asteroid are not moving.

So, according to the Conservation of momentum the total momentum when the astronaut is been thrown will equals to zero . Then we can say

Initial momentum = final momentum

Because the momentum of the Superman immediately the asteroid is been thrown is equal to the momentum of the asteroid

Momentum =(mass ×velocity)

the mass of the asteroid i= 1000M

Given velocity = 800 m/s,

momentum =(1000M)(800 m/s)

= 800,000M m/s.

to get the answer, we need to divide by Superman's mass, M, which gives his recoil velocity of 800,000 m/s.

But we're told to convert to km/ s

We know that 1m/s=0.001km/s

=(800,000M m/s)× (0.001km/s)

=800km/s

Therefore, his recoil speed (in km/s) is 800km/s

After running, your friend lies down on a tile floor because he says the "coolness" of the tile transfers to his body. Is this statement true or false?

This is true because the coolness of the tile will transfer to his body.


This is false because the warmth of his body will transfer to the cool tiles.

Answers

Answer:

oh this is tricky

Explanation:

this is false because the warmth of his body will transfer to the cool tiles

Explain why two objects with the same mass, when dropped from the same height, may not reach the ground at the same time

Answers

This is because the Earth gives the same acceleration to everything, objects with different masses will still hit the ground at the same time if they are dropped from the same height.

What is Acceleration?

Acceleration is defined as the rate of change of velocity of an object, which is a vector quantity as well as direction, with respect to time. The orientation of an object's acceleration is given by the orientation of the net force acting on that object.

Two objects of equal mass cannot reach the ground at the same time when they have different sizes, shapes or densities, as these factors can affect their air resistance and terminal velocity so that they travel at different speeds.

Thus, this is because the Earth gives the same acceleration to everything, objects with different masses will still hit the ground at the same time if they are dropped from the same height.

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Which option lists a form of potential energy followed by a form of kinetic energy?
A. Sound energy | nuclear energy
B. Magnetic energy electromagnetic energy
C. Gravitational energy | elastic energy
D. Electromagnetic energy | electrical energy

Answers

Answer:

Magnetic energy and electromagnetic energy form of potential energy followed by a form of kinetic energy.

(B) is correct option.

Explanation:

Given that,

Lists a form of potential energy followed by a form of kinetic energy

We know that,

Sound energy :

The movement of energy through object it is called sound energy. When a object produced vibration by force then it moves in wave.

Sound wave is example of kinetic energy.

Nuclear energy :

The store energy in the nucleus of the atom it is called nuclear energy. This energy released when occurs fusion and fission.

Nuclear energy is the example of potential energy

Magnetic energy :

Magnetic energy is a type of potential energy which is depend on distance and position in the magnetic field.

Electromagnetic energy :

Electromagnetic energy is light energy. it is type of kinetic energy.

Gravitational energy :

Gravitational energy is a type of potential energy. It is an energy related with gravity or gravitational force.

Elastic energy :

The store energy in elastic object it is called elastic energy. This energy is a type of potential energy.

Electrical energy :

The movement of electrons is called electrical energy. When electrons move through a wire then it is are called electricity. Electrical energy is type of kinetic energy.

Hence, Magnetic energy and electromagnetic energy form of potential energy followed by a form of kinetic energy.

(B) is correct option.

Answer:

its B

Explanation:

answer if you want to

answer if you want to

Answers

Answer

I can’t see the question, the image won’t load can you tell me it in the comments I will answer there

Answer:

C

Explanation:

think of a diffuser

The diameter of a copper wire is 3mm. Express this diameter in meters.

Answers

Answer:

0.003 meters

Explanation:

\(d=3mm(\frac{1m}{1000mm} )=\frac{(3)(1)}{1000} =\frac{3}{1000} =0.003m\)

Hope this helps

Answer:

3× 10^ {-3}m  

Explanation:

3mm=0.003m

0.003= 3× 10^ {-3}

how does the presence of an active galactic nucleus in a starburst galaxy affect the starburst process?

Answers

The availability of the a galactic nucleus inside a galaxy experiencing starbursts can slow or stop the starburst process.

Why did Coles and Woolworths stop selling Starburst?

Due to "increasing financial concerns," Mars Wrigley quietly pulls Starburst candies from grocery shelves throughout Australia. An popular Australian lollipop brand got dropped by a US confectionery business after one social media user noticed her favorite delicacy was inexplicably gone while looking for it.

What are Starburst called now?

22 years after being renamed, Starburst will become Opal Fruit, according to a statement from the candy's manufacturer, Mars. Stores including Poundland, B&M, Home Bargains, Iceland, Savers, and others will sell the goods for fans to purchase.

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What is the best book about Mars?

Answers

Answer: The case of mars

Explanation: i would like you to read the case of mars as it explains everything about the planet and their livelihood and if humans can live there

Answer:

Mars: Our Future on the Red Planet

Explanation:

good book should read

A box of mass m is initially at rest at the top of a ramp that is at an angle with the horizontal. The block is at a height h and length L

from the bottom of the ramp. The block is released and slides down the ramp. The coefficient of kinetic friction between the block and

the ramp is u. What is the kinetic energy of the box at the bottom of the ramp?

Answers

Hi there!

We can use the work-energy theorem to solve.

Recall that:
\(E_i = E_f\)

The initial energy equals the final energy (Conservation of Energy). However, we must take into account energy dissipated due to friction in this instance.

The energy lost due to friction is equivalent to the work done by friction. Recall the following:

Normal force on an incline: \(N = Mgcos\theta\)Force due to friction: \(F_f = \mu N = \mu mgcos\theta\)

The work due to a force is:
\(W = F \cdot d \\\)

Since the displacement is in the same direction as the force, the dot-product becomes Fd.

The work due to friction then becomes:

\(W_f = \mu mgdcos\theta\)
The work due to friction is SUBTRACTED from the initial potential energy.

Initial energy = GPE = mgh

Final energy = KE

Therefore:

\(\boxed{mgh - \mu mgdcos\theta = KE}\)


You traveled 150.meters south at a speed of 1.50m/s, and then traveled 600. Meters north at a rate of 2.00 m/s.
1. Wha is the total time of the trip ?
2. What was your average speed ?
3. What was your average velocity ?

Answers

Answer:

1.) 400s

2.) 1.875 m/s

3.) 1.125 m/s

Explanation:

Given that you traveled 150.meters south at a speed of 1.50m/s,

Time = distance/ speed

Substitute speed and distance into the formula

Time = 150/1.5

Time = 100 s

and then traveled 600. Meters north at a rate of 2.00 m/s.

Time = 600 / 2

Time = 300 s

1.) Total time = 100 + 300

Total time = 400 s

2.) The average speed will be total distance travelled over total time.

Total distance travelled = 150 + 600

Total distance travelled = 750 m

Substitute all the parameters into the formula

Average speed = 750/400

Average speed = 1.875 m/s

3.) Average velocity will be displacement over total time

Displacement = 600 - 150

Displacement = 450 m

Average velocity = 450/400

Average velocity = 1.125 m/s

The speed is represented by

Answers

Speed is defined as the pace of the distance traveled. It is represented by v

What is speed ?

Speed is defined as the rate of change of the distance or the height attained. it is a time-based quantity.

it is denoted by u for the initial speed while v for the final speed. its SI unit is m/sec.

Hence, speed is represented by v.

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What can occur when air rises in a low pressure system?

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When air rises in a low-pressure system, it can lead to the formation of clouds and precipitation, such as rain or snow. The rising air also cools and condenses, releasing latent heat, which can further contribute to the development of the storm.

What happens in a low-pressure system?

A low-pressure system is a weather pattern characterized by a region of lower atmospheric pressure compared to the surrounding areas. It is often associated with unsettled and stormy weather.

How are clouds formed?

Clouds are formed when moist air rises and cools, causing water vapour to condense into tiny water droplets or ice crystals. This process occurs when the temperature of the air decreases, either because it is rising, or because it is mixing with cooler air.

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what would be the acceleration of the first speck of dust if the disk's angular velocity was doubled?

Answers

80 m/s² would be the acceleration of the first speck of dust if the disk's angular velocity was doubled.

What is angular velocity?

The periodic rate at which an item rotates or circles around an axis is known as its angular velocity. "ω" (occasionally ) is a Greek letter that stands in for angular velocity. Since it is measured in angles per units of time, radians per second is the SI unit for angular velocity.

As a vector number, angular velocity is defined as the rate of change of angular displacement, which identifies the rotational speed and angular speed of an item, as well as the axis around which the object is revolving.

The centripetal acceleration is also given by:

a = rω² = 20 m/s²

where, ω = the angular velocity.

r =  the distance of the object from the center of the circle

If the angular velocity is doubled, then

a = r(2ω)²

a = 4rω²

a = 4 × 20

a = 80 m/s²

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A motorcycle enters a freeway with a speed of 5.8 m/s and accelerates uniformly for 65 m in 7.2 s.
How fast is the car moving after this time?

Answers

The speed of the motorcycle is  9.02777m/s in 7.2 sec.

What is acceleration?

The rate at which an object's velocity with respect to time changes is referred to as acceleration in mechanics. They are vector quantities, accelerations. The direction of the net force acting on an object determines the direction of its acceleration.

v(0) = 5.8

s(0)=0

s(7.2) = 65

s(t) =at^2/2 + v(0)t

s(7.2) = a(7.2)^2 + 5.8(7.2) = 65

a = (65-41.76)/51.84

a= 23.24/51.84 = about 0.4483 m/s²

v(t) = s'(t) = at +v(0) = at +5.8

v(7.2) = 0.4483(7.2) + 5.8

= 9.02777

velocity in 7.2 seconds is about 9.03 meters per second

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The equation of a wave is represented by: Y = 0.005sin 2π(0.5x – 200t) where x and y are in meters and t in seconds. Find its i. Amplitude ii. Angular speed iii. Frequency iv. Period v. Wave number vi. Wavelength vii. speed.

Answers

Answer:

See solution below

Explanation:

The standard equation of a wave is represented by: Y = Asin 2π(x/λ – ft)

A is the amplitude

λ is the wavelength

f is the frequency

t is the time

Comparing the standard with the given equation Y = 0.005sin 2π(0.5x – 200t)

i) A = 0.005m

Amplitude is 0.005m

ii) ω = 2πf

ω = 2π(200)

ω = 400π rad/s

iii) ω = 2πf

400π = 2πf

200 = f

Swap

f = 200Hertz

iv) Period = 1/f

Period = 1/200

Period = 0.005secs

v) wave number  =

vi) Wavelength λ

0.5x = x/λ

0.5 = 1/λ

λ  = 1/0.5

λ = 2m

vii) velocity - fλ

velocity = 200 * 2

velocity = 400m/s

describe the reflection of the pulse from a fixed point

Answers

When a pulse encounters a fixed point, such as a wall or a rigid boundary, it undergoes reflection. Reflection occurs when the pulse bounces back upon reaching the fixed point.

During reflection, the pulse experiences a change in direction but retains its original shape and properties. The incident pulse approaches the fixed point and interacts with it. As a result, an equal and opposite pulse is generated and travels back in the opposite direction.

The behavior of the reflected pulse depends on the nature of the incident pulse and the properties of the medium it travels through. If the pulse is inverted (upside-down) before reflection, the reflected pulse will also be inverted. Similarly, if the incident pulse is right-side-up, the reflected pulse will maintain the same orientation.

The reflection process follows the law of reflection, which states that the angle of incidence (the angle between the incident pulse and the normal to the fixed point) is equal to the angle of reflection (the angle between the reflected pulse and the normal). This law ensures that energy and momentum are conserved during the reflection process.

In conclusion, when a pulse encounters a fixed point, it undergoes reflection, resulting in the generation of an equal and opposite pulse traveling in the opposite direction. The reflected pulse retains the same shape and properties as the incident pulse, following the law of reflection.

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Please help me. I have to submit this today.

Please help me. I have to submit this today.

Answers

B I think hope this helps

Which car will experience a greater KE, a car traveling at 16 m/s or a half as massive car traveling at 32 m/s

Answers

Answer:

The car that is hald as massive

Explanation:

We can use the eqation for kinetic energy to solve this problem

KE = 1/2mv^2 (where m is mass and v is velocity/speed)

Lets give the original car a mass of 100kg and use the equation

KE = 1/2(100kg)(16m/s)^2 = 12800J

and now lets find kinetic energy of the half as massive car

KE2 = 1/2(50kg)(32m/s)^2 = 25600J

From this, we find that the hald as massive car will experience a greater kinetic energy while travling at double the velocity

A 6.0 cm candle is 30.0 cm from a concave mirror that has a focal length
of 11 cm. What is the distance of the image from the mirror?
7 points
0
.09 cm
17 cm
.06 cm
O
20 cm

Answers

Answer:

23 cm from the mirror

Explanation:

A mall marble roll horizontally with peed v0 off the top of platform 2. 75m tall and feel no appreciable air reitance. On the level ground,2. 00m from the bae of the platform there i gaping hole in the ground. For what range of marble peed v0 will the marble land in the hole?

Answers

Range of  v0( 0 in subscript) is 2.67 m/s to 4.67 m/s range for marble peed to land in the hole.

There is no vertical component of velocity here, as per the problem.

h = 2.75 m

But horizontal distance x = v0t (v in subscript)

h = 1/2 gt2(t square)

⇒ t =\(\sqrt{ 2h/g}\)

Putting this in the 1st equation,

we get v0 = x/t =x\(\sqrt{9/2h}\)

Since the hole is 2m away and 1.5m wide ,

x lies between 2m and 3.5m

Lower bound of v0 = 2 × \(\sqrt{9.8/2 * 2.75}\)  = -2.67 m/s

Upper bound of v0 = 3.5 × \(\sqrt{9.8/2 * 2.75}\) = -4.67 m/s

Hence, the range of v0 is 2.67 m/s to 4.67 m/s.

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Convert Kg to g
i. 6.57 Kg

Answers

Answer:

Kg to g we multiply by 1000

Explanation:

6.57×1000=6570g

classify each polynimal based on the number of terms it contains

Answers

Polynomials can be classified based on the number of terms is contains which may be monomial, binomial, or trinomial.

What are polynomials?

Polynomials are algebraic expressions that contains a constant that is multiplied by one or more variables.

Monomials is a type of polynomial that has only one term. From the question, the monomial is 10xyz^3.

Binomial is a type of polynomial that has only two terms. From the question, the binomial are 8x^2+0.25 and -x^2y^2+2y.

Trinomial is a type of polynomial that has only three temrs. From the question, the trinomial are -2x^2-x+3.5 and x^3y^4+2x^2y-3z.

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The complete question:

Classify each polynomials based on the number of terms it contains.

-2x^2-x+3.5

10xyz^3

-x^2y^2+2y

8x^2+0.25

x^3y^4+2x^2y-3z

Your yo-yo toy is resting on the floor has a mass of 5 kg and the string is from the yo-you to your finger. With what force must you lift with the string to pick up the yo-yo from the floor?

Answers

The force you must lift with the string to pick up the yo-yo from the floor is 49 N.

What is weight?

The weight of an object is defined as the force acting on the object due to gravity.

Weight is a vector quantity, because it has both magnitude and direction.

The weight of every object is the force acting downwards due to effect of gravity on the object. The force needed to pick the yo-yo from the floor must be equal or greater than the weight of the yo-yo.

F = W = mg

where;

m is mass of the yo-yog is acceleration due to gravity = 9.8 m/s²

F = 5 kg x 9.8 m/s²

F = 49 N

Thus, the force needed to pick the yo-yo must be equal or greater than its weight.

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A0 40-kg ball is thrown with a speed of 9.5 m/s at an upward angle of 31 Type here to search O What is its speed at its highest point? Express your answer using two significant figures. 195] ΑΣΦ ?

Answers

The speed of the ball at its highest point is approximately 8.23 m/s.

To find the speed of the 40-kg ball at its highest point, we can analyze the projectile motion. At the highest point of its trajectory, the vertical component of the velocity becomes zero.

The initial velocity of the ball can be separated into horizontal and vertical components. The vertical component can be found using the equation:

Vertical component of velocity (Vy) = initial speed * sin(angle)

Given that the initial speed is 9.5 m/s and the angle is 31°, we can calculate the vertical component of velocity:

Vy = 9.5 m/s * sin(31°)

Vy ≈ 4.94 m/s

At the highest point, the ball only has the horizontal component of its initial velocity. Therefore, the speed at the highest point is equal to the horizontal component of velocity:

Speed at highest point = initial speed * cos(angle)

Speed at highest point = 9.5 m/s * cos(31°)

Speed at highest point ≈ 8.23 m/s

Therefore, The speed of the ball at its highest point is approximately 8.23 m/s.

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the diagram of a michelson interferometer and the resulting interferogram produced from a monochromatic source are shown. explain how the interferometer and fourier analysis are used in fourier transform spectroscopy to create an infrared spectrum by placing the steps in the order they occur.

Answers

Fourier transform spectroscopy employs an interferometer to modulate the wavelength from a broadband infrared source, and fourier analysis to put the steps in the order they happen in order to construct an infrared spectrum.

The wavelength-dependent intensity of transmitted or reflected light is measured by a detector. To determine the absorption, emission, and photoconductivity of a solid, liquid, or gas's infrared spectrum, the Fourier transform infrared spectroscopy (FTIR) technique is utilized. In PHB, it is used to identify several functional groups.

The FTIR spectrum is acquired between 4000. "Fourier transform infrared," or FTIR, is the most well-known kind of infrared spectroscopy. All infrared spectroscopies are based on infrared (IR) light.

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Correct Question:

The diagram of a michelson interferometer and the resulting interferogram produced from a monochromatic source are shown. explain how the interferometer and fourier analysis are used in fourier transform spectroscopy to create an infrared spectrum by placing the steps in the order they occur.

the diagram of a michelson interferometer and the resulting interferogram produced from a monochromatic
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