A 35-mf capacitor is connected to an ac source with a frequency of 400 hz and a maximum emf of 20 v. The maximum current, in s. I. Units, is:

Answers

Answer 1

The value of maximum current for A 35-mf capacitor which is connected to an ac source with a frequency of 400 hz and a maximum emf of 20 v is 1.76 ampere.

What is capacitance of capacitor?

The capacitance of a capacitor is the ratio of the electric charge stored inside the capacitance to the potential difference.  The value of capacitive reactance can be calculated as,

[tex]X_c=\dfrac{1}{2\pi fC}[/tex]

Here, C is capacity and (f) is the frequency.

A 35-mf capacitor is connected to an AC source with a frequency of 400 hz and a maximum emf of 20 v.

[tex]X_c=\dfrac{1}{2\pi fC}\\X_c=\dfrac{1}{2\pi (35\times10^{-6})(400)}\\\X_c=11.37\rm\; ohm[/tex]

The maximum current flowing is the ratio of maximum emf to the capacitive reactance. Thus, the maximum current is,

[tex]I_{\text{RMS}}=\dfrac{V_{\text{RMS}}}{X_C}\\I_{\text{RMS}}=\dfrac{20}{11.37}\\I_{\text{RMS}}=1.76\rm\; Amp[/tex]

Thus, the value of maximum current for A 35-mf capacitor which is connected to an ac source with a frequency of 400 hz and a maximum emf of 20 v is 1.76 ampere.

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Related Questions

A 0. 060-kg tennis ball, moving with a speed of 5. 82 m/s , has a head-on collision with a 0. 090-kg ball initially moving in the same direction at a spe

Answers

Final speed of the tennis ball, moving with a speed of 5. 82 m/s , has a head-on collision with a 0. 090-kg ball is 2.964 m/s.

What is conservation of momentum?

Momentum of an object is the force of speed of it in motion. Momentum of a moving body is the product of mass times velocity. By the law of conservation of momentum,

[tex]m_1u_1 + m_2u_2 = (m_1+m_2)v[/tex]

Here, (m) is the mass, (u) is initial velocity before collision, v is final velocity after collision and (subscript 1, and 2) are used for body 1 and 2 respectively. Rewrite the formula for final velocity as,

[tex]v=\dfrac{m_1u_1 + m_2u_2}{(m_1+m_2)}[/tex]

A 0. 060-kg tennis ball, moving with a speed of 5. 82 m/s, has a head-on collision with a 0. 090-kg ball, initially moving in the same direction at a speed of 3.44 m/s. Thus, the initial velocity of the second ball is,

[tex]v_{2f}=5.82+3.44+v_{1f}\\v_{2f}=2.38+v_{1f}[/tex]

Let v1f is the final velocity of first ball. Thus, the initial velocity of the first ball is,

[tex]v_{1f}=\dfrac{(0.060)(5.82) + (0.090)(3.44-2.38)}{(0.060)+(0.090)}\\v_{1f}=2.964\rm\; m/s[/tex]

Thus, final speed of the tennis ball, moving with a speed of 5. 82 m/s , has a head-on collision with a 0. 090-kg ball is 2.964 m/s.

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A narrow beam of ultrasound waves reflects off a liver tumor as illustrated. The speed of sound in the liver is 10\% less than in the surrounding medium. What is the depth of the tumor

Answers

When the narrow beam of ultrasound waves reflects off a liver tumor, the depth of the tumor is found to be 6.30 cm.

What is Snell's law?

Snell's law states that the ratio of the sin of the angle of incidence to the angle of reflection is equal to the ratio of the speed of the wave in the first medium to the speed of the wave in the second medium.

[tex]\dfrac{sin\:i}{sin\:r} =\dfrac{v_{1} }{v_{2} }[/tex]

Where, i represents the angle of incidence and r is the angle of reflection.

Given the speed of sound in the liver is 10% less than in the medium, so

[tex]\dfrac{v_{liver} }{v_{medium} }=0.900[/tex]

According to the figure, the angle of incidence is 50°, then from the Snell's law, we have

[tex]sin\:r=(\dfrac{v_{liver} }{v_{medium} } )\times sin\:i\\\\r=sin^{-1} [(0.900)sin 50][/tex]

The angle of reflection comes out to be

r = 43.6°

From the law of reflection,

[tex]d =\dfrac{12\:\rm cm}{2} =6\:\rm cm[/tex]

The depth of the tumor is

[tex]h=\dfrac{d}{tan\:r} =\dfrac{6}{tan\:43.6} \\\\h=6.30\:\rm cm[/tex]

The depth of the tumor in the liver is 6.30 cm.

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Two pistons of a hydraulic lift have radii of 2. 67 cm and 20. 0 cm, respectively. The downward force on the 2. 67-cm piston that is required to lift a mass of 2000 kg supported by the 20-cm piston is

Answers

The downward force on the 2. 67-cm piston that is required to lift a mass of 2000 kg supported by the 20-cm piston is 350 N.

What is pascal law?

Pressure applied to a closed system of fluid will be transfer at each point of the fluid and the boundaries of the system.

Let suppose at the two point of such system the input force apllied is F₁ and output force we get is F₂. The area of this points is A₁ and A₂ respectively. As the pressure at both point is same. Then by the pascal law,

[tex]\dfrac{F_1}{A_1}=\dfrac{F_2}{A_2}\\[/tex]

In case of radius,

[tex]\dfrac{F_1}{\pi r_1^2}=\dfrac{F_2}{\pi r_2^2}\\\\\dfrac{F_1}{r_1^2}=\dfrac{F_2}{ r_2^2}[/tex]

Two pistons of a hydraulic lift have radii of 2. 67 cm and 20. 0 cm, respectively. Thus,

[tex]r_1=2.67\rm\; cm[/tex]

[tex]r_2=20.0\rm\; cm[/tex]

The downward force on the 2. 67-cm piston that is required to lift a mass of 2000 kg supported by the 20-cm piston is The force applied on second piston is,

[tex]F_2=mg\\F_2=2000\times9.81\\F_2=19620 \rm\; N[/tex]

Put the values in the above formula,

[tex]\dfrac{F_1}{2.67^2}=\dfrac{19620}{20^2}\\F_1=\dfrac{19620\times2.67^2}{20^2}\\F_1\approx 350\rm\; N[/tex]

Thus, the downward force on the 2. 67-cm piston that is required to lift a mass of 2000 kg supported by the 20-cm piston is 350 N.

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5) Select the best answer.
Which object will accelerate faster?
an object that has 500 N of force applied to it
an object that has 50 N of force applied to it

Answers

Answer:

I think the object with 500 N of force applied.

There's not enough information to decide.
The object's acceleration depends on the object's mass just as much as it depends on the applied force.

at 20° c, 33 meters of copper wire has a restaurants of 0.6 ohms. what is the resistance of 165 meters?

Answers

Resistance for 165 metres is 3 ohms.

The Andromeda Galaxy (our nearest spiral neighbor) has spectral lines that show a blue shift. From this we may conclude that:

Answers

The universe is the collection of galaxies, The Andromeda Galaxy has spectral lines with blue shift. The conclusion is that the Universe has stopped expanding.

What is Andromeda Galaxy?

The Andromeda Galaxy is the nearest spiral neighbor that has spectral lines showing a blue shift.

Therefore, this concludes that, the Universe has stopped expanding. This galaxy is slowly shifting towards us.

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A proton and an antiproton have equal energies of 450gev. The particles collide head-on. Find the available energy ea. The rest energy of the proton is 938mev

Answers

The available energy ea when the proton and the antiproton have equal energies of 450gev is 29 GeV.

How to find the available energy after the collision?

The available energy can be found out with the following formula.

[tex]E_a=\sqrt{2E_tE_k++(m_1c^2)^2+(m_2c^2)^2}[/tex]

Here C is the speed of light (3×10⁸ m/s), Et is the energy of proton, Ek is the rest energy.

A proton and an antiproton have equal energies of 450gev. The particles collide head-on. The rest energy of the proton is 938mev

Thus, put the given values in the above formula,

[tex]E_a=\sqrt{2(450\times\dfrac{10^9eV}{1MeV})(938\times\dfrac{10^6eV}{1MeV})+(938\times\dfrac{10^6eV}{1MeV})^2+(938\times\dfrac{10^6eV}{1MeV})}\\E_a=29\rm\; Gev[/tex]

Thus, the available energy ea when the proton and the antiproton have equal energies of 450gev is 29 GeV.

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Can someone please answer this, ill give you brainliest Would be very appreciated.

Answers

Answer:

frost wedging

Explanation:

When glaciers melt and the rock beneath is weathered and broken down, this is called frost wedging.

Help!

11. A string vibrates at a frequency of 15 Hz. What is its period?

12. A speaker vibrates at a frequency of 292 Hz. What is its period?

13. A swing has a period of 12 seconds. What is its frequency?

Answers

[tex]\qquad\qquad\huge\underline{{\sf Answer}}[/tex]

As we know, period (t)of a wave and it's frequency (f) are Reciprocal of each other, so if one is know then we can just reverse the order to get the other one.

that is :

[tex]\qquad \sf  \dashrightarrow \: frequency = \dfrac{1}{period} [/tex]

Now, let's move on to problems ~

# 11. f = 15 hertz, t = ?

[tex]\qquad \sf  \dashrightarrow \: t = \dfrac{1}{15} \: \: sec[/tex]

[tex]\qquad \sf  \dashrightarrow \: t \approx0.067 \: \: sec[/tex]

#12. f = 292 hertz, t = ?

[tex]\qquad \sf  \dashrightarrow \: t = \dfrac{1}{292} \: \: sec[/tex]

[tex]\qquad \sf  \dashrightarrow \: t \approx0.0034 \: \: sec[/tex]

#13. t = 12 seconds, f = ?

[tex]\qquad \sf  \dashrightarrow \: f= \dfrac{1}{12} \: \: hertz[/tex]

[tex]\qquad \sf  \dashrightarrow \: f \approx0.083 \: \: hertz[/tex]

[tex]\huge\underline{\underline{\mathbb{A\:N\:S\:W\:E\:R}}}[/tex]

We know that, frequency = reciprocal of the period of time an object swings or vibrates at. Therefore,

[tex]\tt\:FORMULA \downarrow\\\\\star\boxed{\mathfrak{Frequency = \frac{1}{period \: of \: time}}}[/tex]

Now, let's solve the questions by using this formula.

[tex]\rule{150pt}{2pt}[/tex]

11. Frequency = 15 Hz

Period = ?

[tex]\sf\:Frequency = \frac{1}{period}\\\sf\:15 = \frac{1}{period}\\\boxed{\bf\:period = \frac{1}{15} = 0.67 \: s}[/tex]

[tex]\rule{150pt}{2pt}[/tex]

12. Frequency = 292 Hz

Period = ?

[tex]\sf\:Frequency = \frac{1}{period}\\\sf\:292 = \frac{1}{period}\\\boxed{\bf\:period = \frac{1}{292} = 0.0034 \: s}[/tex]

[tex]\rule{150pt}{2pt}[/tex]

13. Period = 12 s

Frequency = ?

[tex]\sf\:Frequency = \frac{1}{period}\\\sf\:Frequency = \frac{1}{12}\\\boxed{\bf\:Frequency = 0.083 \: Hz}[/tex]

[tex]\rule{150pt}{2pt}[/tex]

Note:

The SI units of,

Frequency = Hertz (Hz)Period of time = Second (s / sec)

[tex]\rule{150pt}{2pt}[/tex]

A wave hits a wall as shown. A brick wall with a green arrow pointing to the wall from below and right at a shallow angle. Another green arrow starts where the first arrow touched the wall and goes up and left at the same shallow angle. As the wave interacts with a wall, which kind of wave interaction is shown? absorption diffraction refraction reflection

Answers

Answer:

reflection

Explanation:

Answer: Reflection

Explanation: I have my ways :>

Starting at a position of 10m [W] of your car, you run to a position of 150m [W] of your car in 35s. What was your
velocity?

Answers

Answer:

4 m/s

Explanation:

you moved 140 meters in 35 seconds

v = 140 / 35 = 4 m/s

Consider a pendulum of length 3. 171 m. The acceleration of gravity is 9. 832 m/s2. A) what is its period at the north pole?answer in units of s

Answers

The period of the pendulum of length 3. 171 m when acceleration of gravity is 9. 832 m/s, is 3.57 seconds.

What is time period of pendulum?

Pendulum is the body which is pivoted to a point and perform back and forth motion around that point by swinging due to the influence of gravity.

The time period of a pendulum is the time taken by it to complete one cycle of swing left to right and right to left.

It can be given as,

[tex]T=2\pi \sqrt{\dfrac{L}{g}}[/tex]

Here, (g) is the gravitational force of Earth and (L) is the length of the pendulum.

A pendulum of length 3.171 m. The acceleration of gravity is 9.832 m/s2. The period at the north pole is,

[tex]T=2\pi \sqrt{\dfrac{3.171}{9.832}}\\T=3.57\rm\; s[/tex]

Thus, the period of the pendulum of length 3. 171 m when acceleration of gravity is 9. 832 m/s, is 3.57 seconds.

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How many stars has been observed by Hubble telescope till now ?

Answers

Answer:

More Than 1.3 million.

Hope it helps :))

The acceleration of the center of mass of the blocks-string-pulley system has magnitude of a_cm

Answers

The acceleration of the center of mass of the blocks-string-pulley system has magnitude equal to the ratio of difference to the sum of masses of block multiplied with gravitational acceleration.

What is center of mass?

The center of mass of a object or for a system of object is the point, where the center of distribution of mass in space. The center of mass for the two bodies can be given as,

It can be given as,

[tex]x_{cm}=\dfrac{m_1x_1+m_2x_2}{m_1+m_2}[/tex]

Here, (m) represents the mass and (x) represents the distance.

The acceleration of the center of mass of the blocks-string-pulley system has magnitude of a_cm has to be find out.

The image of the blocks-string-pulley system is attached below. The acceleration of this system is,

[tex]\vec a_{cm}=\left(\dfrac{m_1-m_2}{m_1+m_2}\right)g[/tex]

Thus, the acceleration of the center of mass of the blocks-string-pulley system has magnitude equal to the ratio of difference to the sum of masses of block multiplied with gravitational acceleration.

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Question 8 of 10
What type of optical device can be used to project an image onto a screen?
© A. Any mirror
• B. A convex lens
• C. A convex mirror

D. Any lens

Answers

Answer:

The correct answer is the Convex lens. An image is formed when a ray of light coming from a point intersects at another point. The image is formed by the real intersection of light. The image is formed by the virtual intersection of Light.

here is the site : textbook.com

What are the minimum energies of the two oppositely directed gamma rays in a PET procedure?

Answers

The minimum energy of the two oppositely directed gamma rays in a PET procedure is : 0.51 MeV

What happens in a PET procedure ?

In a PET procedure when an electron and positron collide the energy equivalent of their individual masses are converted into gamma rays which will move in directions opposite to each other.

Given that an electron and a positron posses equal masses the minimum energy of the gamma ray will be 0.51MeV

Hence we can conclude that the minimum energy of the two oppositely directed gamma rays in a PET procedure is 0.51MeV.

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Directions: identify the input work and output work in the different situations.

1. A cyclist is pedaling on his bicycle.

2. You exert force to move a rake.

3. You sweep the dry leaves in your garden using bamboo.

4. Lifting a handless wheelbarrow.

5. Ben lifts the 50 kgs weight of barbel.

Answers

Answer:

it would have to be 1 or maybe 2

‼️PLEASE ANSWER WILL MARK BRAINLIEST‼️​

Answers

Answer:

b 1000

if you multiply 2m/s by 500 you get 1000 it should look like this.

500 x 2m/s

Just as water flows from a region of high pressure to a region of low pressure, electric charge flows from a region of:.

Answers

Due to concentration difference, electric charge flows from a region of high electric potential to a region of low electric potential.

How electric charge move?

Electric charge flows from a region of high electric potential to a region of low electric potential because of concentration difference. This movement is same as the diffusion in which molecules move from high concentration to lower concentration.

So we can conclude that due to concentration difference, electric charge flows from a region of high electric potential to a region of low electric potential.

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Two cats are sitting on a 30 m hill. One cat
has a mass of 4 kg and the other 6 kg.
Which cat has greater potential energy?

Answers

Answer:

Cat with 6 kg sitting on a 30 meter hill has greater potential energy.

Explanation:

gravitational potential energy (J) = mass (kg) × gravitational field × height (m)

Note:

gravitational field in Earth is 10 N/kg = fixed unit

Given:

1st Cat: 4 kg

2nd Cat: 6 kg

Both of their height is 30 meters.

Solve for g.p.e:

1st cat = mgh = 4 × 10 × 30 = 1200 Joules

2nd cat = mgh = 6 × 10 × 30 = 1800 Joules

An astronaut is weighed before he sets off to the Moon. He has a mass of 80 kg.
What will his weight be on Earth? ​

Answers

formula

weight= mass×gravity

weight=80×10=800

Motion is a change in

1.Time
2.Speed
3.Position
4.Velocity

Answers

Motion is a change in position measured by distance and time.

1. As a person stands on earth they put a force on the ground and the ground puts a force on them.
How do these forces compare?
2. The sheet on your bed gives negative charged electrons to your blanket on your bed. If both objects
started this interaction as neutral, what is the charge of the sheet now?
3. A batter swings a Louisville Slugger Baseball bat that has a charge of +12, while a pitcher throws a
baseball with a charge of -2. What is the net charge of the two objects in this scenario?
4. In the bat and ball example (above in question 3), what will the charge of the ball be after the batter
hits it with the bat?
5. We know that opposite charges attract each other, but according to Coulomb's Law what is the single
most important factor in the strength of these forces?

Answers

Answer:

mb

Explanation:

m b

When white light shines on a thin film of soap, light is reflected from:.

Answers

When white light shines on a thin film of soap, light is reflected from back surface of the film only.

What is doppler shift?

Doppler Shift is the change in frequency of sound based on the observer’s point of view.

When white light falls on a thin film of soap, light gets reflected and refracted inside the soap. This results in refraction of the reflected light rays.

When white light shines on a thin film of soap, light is reflected from the back surface of the film only.

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What effect does the pendulum have on the time period if the length of string increases

Answers

Answer:

If the length of the pendulum string increases, the period of time increases

Explanation:

The period of a simple pendulum is directly proportional to the square root of length of the pendulum

What is the speed of a wave with a frequency of 2 Hz and a wavelength of 87 m? 0. 023 m/s 43. 5 m/s 89 m/s 174 m/s.

Answers

I’m not sure I hope you get it

The formulas used to analyze the horizontal and vertical motion of projectiles launched at an angle involve the use of which function(s)? tangent only cosine only sine and tangent cosine and sine

Answers

The formulas used to analyze the horizontal and vertical motion of projectiles launched at an angle involve the use of tangent, cosine and sine.

What is vertical motion of a projecile?

The vertical motion of a projectile is affected by gravity and the velocity of vertical motion given by the following formula;

Vy = Vsinθ

What is horizontal motion of a projecile?

The horizontal velocity of a projectile is given by the following formula;

Vx = Vcosθ

Direction of the motion

The direction of the motion is calculated as follows;

tanθ  = Vy/Vx

Thus, the formulas used to analyze the horizontal and vertical motion of projectiles launched at an angle involve the use of tangent, cosine and sine.

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Answer:

d

Explanation:

edg 2022

Please help help help mee

Answers

Answer:

.60 A

Explanation:

The RMS (Root Mean Square) voltage (the effective voltage) of the  PEAK voltage  is  .7 * peak

.7 * 425 = 297.5 v

Now,   V = IR        re-arranged   to   V/R = I

                                                         297.5 v  /  500 ohm = .595 A = ~ .6 A

Draw a schematic diagram of a circuit consisting of a battery of five 2 V cells, a 5 ohm resistor, a 10 ohm resistor, a 15 ohm resistor, an ammeter and a plug key, all connected in series. Calculate the electric current passing through the above circuit when the key is closed..

Please help ASAP..​

Answers

Answer:

Current = 0.33 A

Explanation:

For diagram refer the attachment.

It is given that five cells of 2V are connected in series, so total voltage of the battery:

[tex]\dashrightarrow \: \: \sf V = 2 \times 5 = 10 V [/tex]

Three resistor of 5[tex]\Omega[/tex], 10[tex]\Omega[/tex], 15[tex]\Omega[/tex] are connected in Series, so the net resistance:

[tex]\dashrightarrow \: \: \sf R_{n} = R_{1} + R_{2} + R_{3}[/tex]

[tex]\dashrightarrow \: \: \sf R = 5 + 10 + 15 [/tex]

[tex]{ \pink{\dashrightarrow \sf \: \: { \underbrace{R = 30 \: \Omega}}}}[/tex]

According to ohm's law:

[tex]\dashrightarrow \sf\: \: V = IR [/tex]

[tex]\dashrightarrow \sf \: \: I = \dfrac{V}{R}[/tex]

On substituting resultant voltage (V) as 10 V and resultant resistant, as 30 [tex]{\pmb{\sf{\Omega}}}[/tex] we get:

[tex]\dashrightarrow \sf \: \: I = \dfrac{10V}{30\Omega}[/tex]

[tex]{ \pink{\dashrightarrow \sf \: \: { \underbrace{I = 0.33 A}}}}[/tex]

[tex]\therefore[/tex]The electric current passing through the above circuit when the key is closed will be 0.33 A

Answer:

Resistance = 5 + 10 + 15 = 30

Explanation:

Current= 0.33 Amperes

A beach ball is rolling in a straight line toward you at a speed of 9 m/sec. it's momentum is 3 kg.m/sec. what is the mass of the beach ball?

Answers

Answer:

1/3 kg

Explanation:

Concepts

The formula p = mv tells us that momentum is mass times velocity. We can easily rearrange this equation to solve for m by dividing both sides by v:

p/v = mv/vm = p/v

Application

We are asked to find the mass of a beach ball, given the velocity as 9 m/s and the momentum as 3 kg · m/s. We can use the formula m = v/p to find the mass of the ball in kilograms.

Solution

[tex]m = \frac{3}{9}[/tex] [tex]m = 1/3[/tex]
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