estimate the value of resistances needed to make a variable timer for intermittent windshield wipers: one wipe every 15 s, 8 s, 4 s, 2 s, 1 s. assume the capacitor used is on the order of 3 μf .

Answers

Answer 1

The minimum value resistance is 330 kΩ and maximum value resistance is 5000 kΩ.

What is resistance?

Resistance is encountered by an electron as it passes through the external circuit's wires and loads. The obstacle to the flow of charge is called resistance. An electron cannot travel in a straight line from one terminal to the next. Instead, a zigzag path is created by several collisions with stationary atoms in the conducting substance. The movement of the electrons is hampered by resistance. Resistance prevents the passage of charge, whereas the electric potential difference between the two terminals promotes it. The combined influence of these two factors determines the rate at which charge flows from terminal to terminal.

Calculations:

θ = R * C

15s --- R = θ / C = 15 / 3x 10^-6 = 5x 10^6Ω----- 5000 kΩ

8s------R = 8 / 3x 10^-6 = 2.7x 10^6 Ω ----------------2700 kΩ

4s------R = 4 / 3x 10^-6 =  1.3x10^6 Ω -------------------1300kΩ

2s------R = 2 /3x 10^-6 = 0.67x 10^6 Ω ------------------670 kΩ

1s -----R = 1 / 3x10^-6 = 0.33x 10^6 Ω---------------------------330 kΩ

Part A

Answer : 330 kΩ ( min)

Part B

Answer: 5000 kΩ (max)

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Related Questions

The frame of reference for an outside observer of a moving
bus might be a house across the street.
-TRUE
-FALSE

Answers

Answer:

false

Explanation:

The correct answer is true I am pretty sure

Review. A metal rod of mass m carrying a current I glides on two horizontal rails a distance d apart. If the coefficient of kinetic friction between the rod and rails isμ , what vertical magnetic field is required to keep the rod moving at a constant speed?

Answers

The vertical magnetic field required to keep the rod moving at a constant speed is  IBd=[tex](u_{k} )[/tex]mg.

What is magnetic field?

When describing the distribution of the magnetic force in the area surrounding and inside of a magnetic object, we use the metaphor of a magnetic field.

The most of us are somewhat familiar with common magnetic items and are aware that there may be forces present between them. We know that magnets have two poles, and that two magnets can be attracted (opposite poles) or repellent depending on how they are oriented (similar poles). We understand that this occurs in some area that surrounds a magnet. Described by the magnetic field, this area.

Mathematics uses a vector field to represent the magnetic field. An array of several vectors drawn on a grid can be used to directly plot this vector field.

Explanation:

Given mass of rod ,m

current carrying= I  

Separation between rails =d

The kinetic friction coefficient, uk

The force of magnetic field (F) is perp. to the magnetic field.

Let required magnetic field be B.

Now balancing forces in y-direction,

       N=mg

And. in x-direction,

       F=f

      IBd= [tex]u_{k}[/tex]N

      IBd=[tex](u_{k} )[/tex]mg

B=[tex]\frac{u_{k} mg}{Id}[/tex]

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you know the mass of an object and the force applied to it. which equation will tell you the acceleration of the object?

Answers

Answer:

This equation for acceleration can be used to calculate the acceleration of an object when its mass and the net force acting on it are known.

so it wa The equation for the acceleration can be rewritten as to calculate the nets force acting on an object when its mass and acceleration

Answer: F=ma

Explanation:

a copper wire that is 1 mm thick and 30 cm long is connected to a 1 v battery. (the resistivity of copper is 1.69 x 10-8 ω⋅m.)

Answers

A copper wire that is 1 mm thick and 30 cm long is connected to a 1 v battery. (the resistivity of copper is 1.69 x 10-8 ω⋅m). The power is 154.82 W.

As we know the formula of Power:

P = V²/R ......(i)

Where,

P = power dissipated, V = voltage R = resistance

Now,

R = Lρ/A .....(ii)

Where,

L = length of the wire, A = cross-sectional area,  ρ = resistivity of the wire.

From eq (i) and eq(ii),

P = V²/(Lρ/A)

P = AV²/Lρ........ (iiI)

Here,

A = πd²/4, Where d = 1 mm

A = (3.14×0.001²/4) = 7.85×10⁻⁷ m²

Putting the value of A and the given values from the question in equation (iii).

P = (7.85×10⁻⁷×1²)/(0.3×1.69 x 10⁻⁸)

P = 154.82 W

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Which forms of heat transfer do not require matter(particles) to happen? (Select all that apply)
Conduction
Convection
Radiation
None of these

Answers

Answer:

Radiation

Explanation:

bc Radiation transfers heat through electromagnetic waves.

1) A person slides a box down a ramp. The box starts from rest 2m above the lowest
point. The ramp is frictionless, Once the box reaches the bottom there is friction
For every 1m the box travels on the flat part Eint increases by 100). Where does the
box stop? The box has mass of 5 kg.

Answers

Answer:

.98m

Explanation:

Suppose you fill two rubber balloons with air, suspend both of them from the same point, and let them hang down on strings of equal length. You then rub each with wool or on your hair so that the balloons hang apart with a noticeable separation between them. Make order-of-magnitude estimates of (d) the total flux of electric field created by each balloon. In your solution, state the quantities you take as data and the values you measure or estimate for them.

Answers

The total flux of electric field created by each balloon is 1.7×10^4N/C.

Consider two balloons of diameter 0.200m each with mass 1.00g hanging apart with 0.0500m separation on the ends of string making angles of 10.0° with the vertical.

The electric flux created by each balloon is:

[tex]\phi_{e} = \frac{q}{\epsilon_{0} } = \frac{1.2 \times10^{4}C }{8.85\times10^{-12}C^{2}/N \cdot m^{2}} = 1.4 \times 10^{4} N\cdot m^{2}/C\\[/tex]

Gauss Law states that the total electric flux out of a closed surface is equal to the charge enclosed divided by the permittivity. The electric flux in an area is defined as the electric field multiplied by the area of the surface projected in a plane and perpendicular to the field.

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Please help me will mark u brainiest

Answers

Answer:

Answer: B. 12 N

Explanation:

Static Equilibrium

Static equilibrium occurs when an object is at rest, i.e., neither rotating nor translating.

In the static rotational equilibrium, the total torque is zero with respect to any rotational axis.

The torque applied by a force F perpendicular to a displacement X with respect to a reference rotating point is:

T = F*X

Considering the pivot as the rotating point, there are 3 forces producing torque. Let's consider counterclockwise torques as positive, thus:

30N * 40 cm - 60 N * 30 cm + F (30 cm + 20 cm) = 0

Operating:

1200 N.cm - 1800 N.cm + F(50 cm) = 0

- 600 N.cm + F(50 cm) = 0

Solving for F:

F = 600/50

F = 12 N

Answer: B. 12 N

if you lift weights faster than normal you have increased what?

A work
B force
C power
D distance​

Answers

I belive it would power I’m not 100% sure. If it’s not power then force

help me

1. A girl drops her new I-phone in the parking garage at First Colony Mall off a 22m ledge.

How fast is her phone moving just before racking into pieces?

2. An AHS football player throws a soccer ball straight up at 4m/s. How long does it take

for it to come back to their hand?

3. Batman throws a Batarang 31 m/s into the air. How high does it go?

4. A rock falls off a cliff for 0.004 hours, how high was the cliff?

5. An object is thrown into the air going 11 m/s. How fast is it going 2 seconds later?

Answers

1. The phone is moving with a velocity of 20.77 m/s before racking into pieces

2. The time taken for the ball to come back to their hand is 0.82 s

3. The maximum height reached by the batarang is 49.03 m

4. The cliff is 1016.06 m high

5. The object is moving with a velocity of –8.6 m/s after 2 s

1. How to determine the velocityInitial velocity (u) = 0 m/sAcceleration due to gravity (g) = 9.8 m/s²Maximum height (h) = 22 mFinal velocity (v) = ?

v² = u² + 2gh

v² = 0² + (2 × 9.8 × 22)

v² = 431.2

Take the square root of both side

v = √431.2

v = 20.77 m/s

2. How to determine the time taken for the ball to come back

We'll begin obtaining the time taken to reach the maximum height. This is illustrated below:

Initial velocity (u) = 4 m/sFinal velocity (v) = 0 m/s (at maximum height) Acceleration due to gravity (g) = 9.8 m/s²Time to reach maximum height (t) =?

v = u – gt (since the ball is going against gravity)

0 = 4 – (9.8 × t)

0 = 4 – 9.8t

Collect like terms

0 – 4 = –9.8t

–4 = –9.8t

Divide both side by –9.8

t = –4 / –9.8

t = 0.41 s

Finally, we shall determine the time for the entire trip

Time to reach maximum height (t) = 0.41 sTime for the entire trip (T) =?

T = 2t

T = 2 × 0.41

T = 0.82 s

3. How to determine the maximum height Initial velocity (u) = 31 m/sFinal velocity (v) = 0 m/s (at maximum height) Acceleration due to gravity (g) = 9.8 m/s²Maximum height (h) =?

v² = u² – 2gh (since the ball is going against gravity)

0² = 31² – (2 × 9.8 × h)

0 = 961 – 19.6h

Collect like terms

0 – 961 = –19.6h

–961 = –19.6h

Divide both side by –19.6

h = –961 / –19.6

h = 49.03 m

4. How to determine the height of the cliffAcceleration due to gravity (g) = 9.8 m/s²Time (t) = 0.004 h = 0.004 × 60 × 60 = 14.4 s Height (h) =?

h = ½gt²

h = ½ × 9.8 × 14.4²

h = 4.9 × 207.36

h = 1016.06 m

5. How to determine the velocityInitial velocity (u) = 11 m/sAcceleration due to gravity (g) = 9.8 m/s²Time (t) = 2 sFinal velocity (v) = ?

v = u – gt (since the ball is going against gravity)

v = 11 – (9.8 × 2)

v = 11 – 19.6

v = –8.6 m/s

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A rock is thrown from the top of the Empire State Building. What is the overall acceleration it will experience?

Answers

Answer:

acceleration due to gravity is constant anywhere on the earth .its value is 9.8m/s²

Which genus of single-celled organisms feeds by surrounding its food with cytoplasm and engulfing it?

A.Euglena
B.Volvox
C.Amoeba
D.Paramecium

Answers

Answer:b

Explanation:

b

Ninety percent of research animals are __________. a. dogs b. rats and mice c. primates d. rabbits please select the best answer from the choices provided a b c d

Answers

Answer: rats and mice

Explanation: because they are small and easy and more ethical

Answer:

B. Rats and mice

Explanation:

They use rodents more as a test subject, so the answer would be B. Rats and Mice.


I hope it helps! Have a great day!

Question 25 of 25 What is a limitation of modeling the effect of gravity on a falling object by using a ball dropped from different heights? A. Air slows down the fall of any object, including the ball. B. The weight of the ball can vary. C. Gravity varies slightly at different heights. D. The height that a ball bounces is affected by the height from which it was dropped.​

Answers

Answer:

Air slows down The fall of any object including a ball.

A limitation of modeling the effect of gravity on a falling object by using a ball dropped from different heights is: gravity varies slightly at different heights. Hence, option (C) is correct.

What is  gravity?

Gravity is a fundamental interaction in physics that causes all objects with mass or energy to attract one another. The electromagnetic force is 10³⁶ times stronger than gravity  the weak interaction is 10²⁹ times weaker than gravity, and gravity is by far the weakest of the four fundamental interactions.

As a result, it has no appreciable impact on subatomic particle level phenomena. However, at the macroscopic level, gravity is the most important interaction between things and governs the motion of planets, stars, galaxies, and even light.

As gravity is inversely proportional to the square of distance, it varies slightly at different heights. Hence, option (C) is correct.

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The energy transferred between objects in contact as of temperature difference is called what?

Answers

Answer:

Heat

Explanation:

Answer:

Heat conduction, also called diffusion, is the direct microscopic exchange of kinetic energy of particles through the boundary between two systems.

Explanation:

The tensile stress in a thick copper bar is 99.5 % of its elastic breaking point of 13.0× 10¹⁰ N/m² . If a 500-Hz sound wave is transmitted through the material, (c) What is the sound intensity in the bar?

Answers

Here the sound intensity in the bar is 4.73×10⁹ W/m².

What do you mean by sound intensity?

The power carried by sound waves per unit area in a direction perpendicular to that region is known as sound intensity or acoustic intensity. The watt per square meter (W/m²) is the SI unit of intensity, which also covers sound intensity. One use for this technology is to measure the amount of sound energy present in the air near a listener.

According to the question:

The sound intensity in the bar, I = 1/2 ρω²s²v

I = 1/2 (8.92×10³)(2π×500)²(4.63×10⁻³)²(5010)

I = 4.73×10⁹ W/m².

Hence, the sound intensity in the bar is 4.73×10⁹ W/m².

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Can you please answer theese two qeastion

Answers

Answer:

C.

Explanation:

kase anjan na yung sagot ohh

A hiker is traveling through the woods. He first travels east 125 m and then turns and travels 36 m north . What his his resultant displacement. Make sure you include magnitude , direction , and angle.

Answers

Answer:

can you put it in a sentence

What happens when plate subducts and reaches the mantle

Answers

Answer:

burns

Explanation:

Which units are used to express sound intensity?

Answers

Answer: decibels

Explanation:

when two resistors are wired in series with a 12 v battery, the current through the battery is 0.31 a. when they are wired in parallel with the same battery, the current is 1.60 a.

Answers

R₁ = 28. 535 v  and  R₂  10.125 Ω  are the resistance are wired in series with a battery.

Let  R₁  and R₂ be the  two Resistance

resistance - which resists the flow of current.

R₁ - Resistance of 1st resistor

R₂ - Resistance of 2nd resistor

V = Voltage = 12V

I = O.31A ( in series)

I  = 1.6 A ( in parallel)

when two resistance connected in series then

Rs = R₁ + R₂

V = IRs = 12 /0.31 V

R₁+R₂ = 38.700Ω   (equation1.)

When two resistance connected in parallel then the value of R is.

    [tex]R_{p} =\frac { R_{1} R_{2}}{R_{1} + R_{2} }[/tex]

V = I Rp

V=  I (R₂ R₁ /R₁ +R₂)

R₁ R₂ = 290.25 Ω  

As we know

(R₁ - R₂ ) ² = (R₁ + R₂ ) ² - 4R1R2

Using above values we get,

 (R₁ - R₂ ) ²  = (38.70) ²  - 4x 290.25

 (R₁ - R₂ ) ²   = 336.69  Ω  

R₁ - R₂ = 18.34     (equation 2 )

Using equation 1 and 2 we get

R₁+ R₂ = 38.70 52

R₁ - R₂ = 18.34

R₁ = 28.535 Ω  

Using the value of  R₁ in equation 1 we get

R₂ = 38·700 -  28.535

R₂ = 10.125 Ω  

R₁ = 28. 535 v  and  R₂  10.125 Ω  are the resistors are wired in series with a battery.

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The accompanying table shows measurements of the Hall voltage and corresponding magnetic field for a probe used to measure magnetic fields. (a) Plot these data and deduce a relationship between the two variables.

Answers

The value of [tex]V_{H}[/tex] is[tex](1.00\times10^{-4} V/T)B[/tex].

What is a magnetic field?

The magnetic influence on moving electric charges, electric currents, and magnetic materials is described by a magnetic field, which is a vector field. A force perpendicular to the magnetic field and its own velocity acts on a moving charge in a magnetic field. The magnetic field of a permanent magnet pulls on ferromagnetic substances like iron and attracts or repels other magnets. A magnetic field that varies with location will also exert a force on a variety of non-magnetic materials by changing the velocity of those particles' outer electrons. Electric currents, like those utilized in electromagnets, and electric fields that change in time produce magnetic fields that surround magnetized things. Since a magnetic field's position can affect both its strength and its direction.

By using the trend line option in excel, we get

[tex]\Delta V_{H} (in\mu V) = 100B[/tex]

[tex]\Delta V_{H} (V)= (\frac{100} {10^{-6} } V/T)B[/tex]

=[tex](1.00\times10^{-4} V/T)B[/tex]

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What’s our “blind spot”?

Answers

Answer:

inside of our brain and the above the nose

Which event causes the formation of trenches in Earth’s crust?

magma rising
mantle emerging
volcanoes erupting
lithosphere colliding

Answers

I think that your answer would be the third option
Lithosphere colliding

A soccer ball is kicked 7 meters west and then 3 meters east.
What is the DISTANCE?
What is the DISPLACEMENT?

Answers

Answer:

4 meters............

.

.

.

.

.

A person with body resistance between his hands of accidentally grasps the terminals of a 14-kV power supply. (a) If the internal resistance of the power supply is what is the current through the person’s body? (b) What is the power dissipated in his body? (c) If the power supply is to be made safe by increasing its internal resistance, what should the internal resistance be for the maximum current in the above situation to be 1.00 mA or less?

Answers

A person who unintentionally grabs the terminals of a 14-kV power supply while holding body resistance between his palms.

(A) What is the current flowing through the person's body if the power supply's internal resistance is?

(b) Where does his body's power go when it is dispersed?

(c) If the power supply's internal resistance is to be increased in order to make it safer, what internal resistance should it have for the maximum current in the aforementioned scenario to be 1.00 mA or less?

employing ohm's law

a) The equation V = IR, where V is the voltage in volts, I is the current in amperes, and R is the resistance in ohms

R = V / I = 1.50 V/ ( 2.05 /1000) A = 731.71 ohms

b) E = IR + Ir = (731.71 0.0036) Power = IV = v = = = 0.1107 W

Ohm's regulation states that the cutting-edge through a conductor between two factors is without delay proportional to the voltage across the two factors. Introducing the steady of proportionality, the resistance, one arrives at the usual mathematical equation that describes this relationship:

The regulation became named after the German physicist Georg Ohm, who, in a treatise posted in 1827, described measurements of applied voltage and current thru easy electrical circuits containing various lengths of wire.

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A ball released from rest on an elevated ramp uniformly accelerates at a rate of 3.52 m/s2 for 23.3m. what is the final speed of the ball?

Answers

The final speed of the ball when it accelerate uniformly at a rate of 3.52 m/s² for 23.3 m is 12.81 m/s.

What is speed?

Speed can be defined as the ratio of distance to time.

The S.I unit of speed is m/s.

To calculate the final speed of the ball, we use the formula below.

Formula:

v² = u²+2as........... Equation 1

Where:

v = Final speedu = Initial speeda = accelerations = distance.

From the question,

Given:

u = 0 m/s from resta = 3.52 m/s²s = 23.3 m

Substitute these values into equation 1

v² = 0²+2×3.52×23.3v² = 164.032v = √(164.032)v = 12.81 m/s.

Hence, the final speed of the ball is 12.81 m/s.

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pls solve this numerical.​

Answers

Answer:

[tex]{ \rm{A .B = |A| |B| \sin( \theta) }} \\ { \rm{A.B = 5 \times 7 \times \sin(45) }} \\ { \rm{A.B = 35 \times \frac{1}{ \sqrt{2} } }} \\ \\ { \rm{A.B = \frac{35}{ \sqrt{2} } }}[/tex]

rationalise the denominator;

[tex]{ \rm{A.B = \frac{35}{ \sqrt{2} } \times \frac{ \sqrt{2} }{ \sqrt{2} } }} \\ \\ { \rm{A.B = \frac{35 \sqrt{2} }{2} }}[/tex]

A car starts from rest and accelerates to a speed of 30 m/s in 20 seconds, what is its acceleration

Answers

The acceleration of a car that starts from rest and accelerates to a speed of 30 m/s in 20 seconds is 1.5 m/s².

What is the acceleration of the car?

Acceleration is defined as the change in velocity of a body or an object with time.

Mathematically;

Acceleration = change in velocity/time taken

The acceleration of the car is calculated using the equation of motion as follows:

v = u + a * t

where;

v is the final velocity

u is the initial velocity

t is the time taken

a is the acceleration

From the dat provided: v = 30 m/s, t = 20 s, u = O m/s

a = v - u/t

a = 30 - 0/20

a = 1.5 m/s²

Therefore, the acceleration of the car that starts from rest and accelerates to a speed of 30 m/s in 20 seconds, is 1.5 m/s².

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Conclusion When there is a constant unbalanced force applied in the same direction as the motion, speed will ___________________ and acceleration will _____________________________. When there is an increasing unbalanced force applied in the same direction as the motion, speed will ___________________ and acceleration will ________________________. When there is a constant unbalanced force applied in the opposite direction as the motion, speed will ___________________ and acceleration will ________________________. When there is an increasing unbalanced force applied in the opposite direction as the motion, speed will ___________________ and acceleration will ________________________.

Answers

Explanation:

When there is a constant unbalanced force applied in the same direction as the motion, speed will increase and acceleration will remain constant. When there is an increasing unbalanced force applied in the same direction as the motion, speed will increase and acceleration will increase.

According to newton's 2nd law

F = ma

F ∝ a

meaning when F increases , a increases and vice versa

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