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State your hypothesis. Make sure your hypothesis is worded as an if, then statement and relates the independent variable of wrong length to the dependent variable of wave frequency.

HELP! Will Mark BrainliestState Your Hypothesis. Make Sure Your Hypothesis Is Worded As An If, Then Statement

Answers

Answer 1

If I increases the string length, the frequency will decreases and vise versa.

What is frequency?

In physics, frequency is the number of waves that pass a fixed point in a unit of time as well as the number of cycles or vibrations that a body in periodic motion experiences in a unit of time.

For string wave, we know that,

frequency, n = [tex]\frac{1}{lD}[/tex][tex]\sqrt{\frac{T}{\pi \rho} }[/tex]

where, l = length of the string.

D = diameter.

T = tension

ρ = density of the material.

Hence, we can see that, frequency of the wave is inversely proportional to the length of the wire. So, on increasing string length, frequency of the wave will decreases.

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Related Questions

betelgeuse is a red giant. this means the star is nearing the end of its life, and becoming larger and redder in the process. what's happening to the surface of the star as it becomes redder?

Answers

For a solar mass star, the red-giant phase normally lasts just around a billion years overall, with practically all of that time being spent on the red-giant branch.

The phases of horizontal branch and asymptotic huge branch move ten times more quickly.After a star exhausts its hydrogen fuel for nuclear fusion and starts to die, a red giant develops. A star keeps itself stable by carefully balancing the forces of its own gravity, which holds it together, with the pressure exerted outward by continuing thermonuclear fusion reactions occurring at its core.The typical lifespan of red giant stars is between 0.1 and 2 billion years. Red giant stars are significantly less massive and smaller than red supergiant stars.

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A large block of stone is held at a height of 15meters having gained 4500 j of gpe. how much does it weigh?

Answers

The weight of the large block of stone is 300 Newton. The result is obtained by dividing the gravitational potential energy by the height.

What is gravitational potential energy (GPE)?

Gravitational potential energy is the energy stored in an object due to its position in a gravitational field. GPE can be expressed as

PE = mgh

Where

PE = gravitational potential energym = mass of an objectg = acceleration of gravityh = height of an object

Given

h = 15 mPE = 4500 J

How much does it weight?

The weight of an object is the mass times the acceleration of gravity.

W = mg

So, with the GPE equation, the weight is

PE = mgh

PE = W × h

4500 = W × 15

W = 4500 ÷ 15

W = 300 Newton

Hence, the weight of the large block of stone is 300 Newton.

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what is the momentum of tectonic plate if its kinetic energy is zero?

Answers

Answer: It is zero

Explanation: Without kinetic energy a plate cannot move. It is impossible.

if there were no air resistance, how long would it take a free-falling skydiver to fall from a plane at 3100 m to an altitude of 490 m , where she will pull her ripcord? what would her speed be at 490 m ? (in reality, the air resistance will restrict her speed to perhaps 150 km/h .)

Answers

Her speed be at 490 m will be 226 m/s

What is speed?Speed is the rate at which an object moves along a path in time, whereas velocity is the rate and direction of movement. In other words, velocity is a vector, whereas speed is a scalar value. For example, 50 km/hr (31 mph (ca. 50 km/h)) describes the speed of a car traveling along a road, whereas 50 km/hr west describes the velocity.

Calculation

a) initial height, [tex]h_{i}[/tex] = 3100 m

[tex]h_{f}[/tex] = 490 m

time taken, t

Using the second equation is motion

3100–490 = 0.5 × 9.8 ×[tex]t^{2}[/tex]

solving for t

t = 23.07 s

b) let the speed is u

u =[tex]\sqrt{2*g*(h_{i} -h_{f} )}[/tex]

u = [tex]\sqrt{(2*9.8 * (3100-490))}[/tex]

u = 226 m/s

Hence, her speed is 226 m/s

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Her speed be at 490 m will be 226 m/s.

What is speed?Speed is the rate at which an object moves along a path in time, whereas velocity is the rate and direction of movement.In other words, velocity is a vector, whereas speed is a scalar value.For example, 50 km/hr (31 mph (ca. 50 km/h)) describes the speed of a car traveling along a road, whereas 50 km/hr west describes the velocity.

initial height,[tex]h_i[/tex]  = 3100 m

[tex]h_f[/tex] = 490 m

time taken, t

Using the second equation is motion

3100–490 = 0.5 × 9.8 ×

solving for t

t = 23.07 s

b) let the speed is u

[tex]&\mathrm{u}=\sqrt{2 * g *\left(h_i-h_f\right)} \\[/tex]

[tex]&\mathrm{u}=\sqrt{(2 * 9.8 *(3100-490))}[/tex]

u = 226 m/s

Hence, her speed is 226 m/s

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a constant force is applied to an object, causing the object to accelerate at 10 m/s2 . what will the acceleration be if the force is halved and the object's mass is doubled? express your answer using two significant figures.

Answers

The acceleration is if the force is halved and the item's mass is doubled is 2.5 m/s².

Force is a push or pulls upon an item due to the item's interaction with a few different item. strain is a energy that could change the motion of an item. A force can purpose an object with mass to exchange its velocity, i.e., to boost up. stress also may be defined intuitively as a push or a pull. A force has each significance and route, making it a vector amount.

In the first case,

Let the mass of the object is = m

acceleration = 10 m/s²

The constant force F = ma

                             F = 10m   ---------(1)

New case 2,

force F' = F/2

mass M' = 2m

a = F'/M'

  = F/2 × 2m

a = F/4m

F = 4ma ----------(2)

dividing equations 1 and 2

   ⇒  [tex]\frac{F = 4ma}{F = 10m}[/tex]

a = 10/4

a = 2.5 m/s²

The phrase 'force' has a unique which means. At this degree, it's far truely appropriate to describe a pressure as a push or a pull. A force isn't always something that an item consists of or 'has in it. A pressure is exerted on one object thru another. The idea of a force is not confined to living matters or non-dwelling matters.

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proton traveling with speed 4 105 m/s in the y direction passes through a region in which there is a uniform magnetic field of magnitude 0.9 t in the z direction.you want to keep the proton traveling in a straight line at constant speed. to do this, you can turn on an apparatus that can create a uniform electric field throughout the region.what electric field should you apply?magnitude: ||

Answers

The electric field should be applied is 3,694.5 .

As we know from electromagnetic theory we have a relation with electric field and magnetic field with force, which is

F = qE + qv x B

or we can write that

F = qE + qvBsinФ

To allow proton to move with the constant speed, we need to apply zero external force

It means F = 0

or we can write that

qE = -qvBsinФ

putting the appropriate values, we get

E = 4105 x 0.9

E = 3,694.5

Hence the magnitude of the electric field is 3,694.5 .

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a spring with an m-kg mass and a damping constant 10 (kg/s) can be held stretched 1.5 meters beyond its natural length by a force of 3 newtons. if the spring is stretched 3 meters beyond its equilibrium position and then released with zero velocity, find the mass that would produce critical damping.

Answers

12.5kg is the mass that would result in critical damping.

Define the damping constant and determine it using the force or displacement equation provided.

The ability of a damper to resist motion is shown by its damping coefficient, which measures the effectiveness of the damper. where c is the damping coefficient and is expressed in newton seconds per meter.

The damping coefficient is a term that has the formula where is a constant. This damping is equivalent to the kind of motion resistance and energy loss experienced when a piston with perforations is moved through a cylinder filled with a viscous fluid, like oil.

Force F = Kx

K = F/x

K = 3/1.5

K = 2N/m.

c² - 4mk = 0

m = c²/4k

m = 10²/4×2

m = 100/8

m = 12.5kg.

12.5kg is the mass that would result in critical damping.
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a car with a mass of 1,020.0 kg accelerates from 0 to 94.0 km/h in 10.0 s. the driver applies the brakes when the car is moving at 94.0 km/h, and the car comes to rest after traveling 38.0 m. what is the net force (in n) on the car during its deceleration? (assume the car is traveling in the positive direction. indicate the direction with the sign of your answer.)

Answers

The net force on the car during its deceleration =  9139.2 N

What is deceleration?

Deceleration is actually inversely related to acceleration. We know that acceleration is the rate at which an object is speeding up, and deceleration is the rate at which an object is slowing down. For example, when you brake while driving, deceleration is used to slow the vehicle.

Given, m= 1020 kg

u= 0 m/s

V = 94 km/h or 26.1 m/s

t = 10 s

For deceleration

u = 26.1 m/s

v = 0

S = 38 m

by equation of motion ;

v² = u² + 2as

0 = 26.1² + 38a

a = - 8.96 m/s²

Net force during deceleration:

F= m*a

F= 1020 × 8.96

F = 9139.2 N

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a rescue plane wants to drop supplies to isolated mountain climbers on a rocky ridge 235 m below. if the plane is traveling horizontally with a speed of 69.4 m/s how far in advance of the recipients (horizontal distance) must the goods be dropped?

Answers

4.80m is the far of the recipients must goods dropped.

What is speed?

The speed of an object is the rate at which it moves through space. A slow-moving object travels a relatively short distance in a given amount of time, whereas a fast-moving object travels a long distance in a short amount of time.

A)Since we are aware that the plane's vertical speed is zero

In this instance, the mass is dropped with no beginning speed.

thus, we will

y=1/2gt²

235=1/2(9.81)t²

t=6.92s

Consequently, it is given as the horizontal distance it moved.

d=vt

d=(69.4)(6.92)

d=480.4m

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a stealth bomber flying horizontally at a speed of 150 m/s drops a bomb from a height of 2500.0 m. how far in front of the target must the bomb be released

Answers

The bomb must be released 3375 m before the target when dropped from the height of 2500.0 m

What are equations of motion?

An equation of motion is an equation that describes the behavior of a physical system in terms of motion as a function of time. More specifically, the equations of motion describe the behavior of a physical system as a set of mathematical functions related to dynamic variables.

Following are the equations of motion:

v = u + at

s = ut + 1/2 at²

v² = u² + 2as

Before calculating the horizontal distance let's calculate the time taken by the bomb to reach the ground by using following equation:

s = ut + 1/2 gt²

u = initial velocity in the vertical direction (0)

s = vertical displacement from the ground (−2500.0 m)

g =  acceleration due to gravity (-9.8 m/s²)

Now substitute the the value in the above reaction:

-2500 = 0 × t +  1/2 × -9.8 t²

-2500 = -4.9 t²

t = 22.5 s

Now the distance covered by the bomb in horizontal direction by the time it reaches the ground is:

D = v × t

Where, D = distance covered by bomb horizontally

v = velocity of bomber (150 m/s )

t = time taken to reach the ground (22.5 s)

D = 150 × 22.5

D = 3375 m

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A 440 hz tuning fork is used with a resonting colum to detemine the velocity of sound in helium gas . if the spacing between resonances in 110cm , what is the velocity of sound in helium gas?

Answers

The velocity of sound in helium gas is 968 m/s if the spacing between resonances is 110cm.

We have to go from antinode to antinode. In an air column, the spacing between resonance is wavelength /2 as we have to go from antinode to antinode.

wavelength = 220 cm = 2.2m

As we know the velocity formula

Then Velocity = f * λ

Where f is the frequency and λ is the wavelength.

So Velocity of wave = 440 * 2.2 = 968m/s

Hence, the velocity of sound in helium gas is 968 m/s if the spacing between resonances is 110cm.

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A crane is shown below. It is lifting a load of 5000N. The counterweight weighs 4400N and distance y is 9m. What must distance x be if the crane is balanced? Give your answer to one decimal place.

Answers

The distance x must be 7.92 m for the crane to be balanced according to principle of conservation of energy.

What is the distance x?

The distance x can be determined by applying the principle of conservation of energy as shown below.

According to this principle of conservation of energy;

the input work (energy) = output work (energy)

F₁d₁ = F₀d₀

where;

F₁ is the input forced₁ is the input distanceF₀ is the output forced₀ is the output force

(4400) x (9) = 5000x

39600 = 5000x

x = 39600/5000

x = 7.92 m

Thus, the crate a balanced condition, the output work must be equal to the input work.

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how can we deducve the presence and measure the mass of a supermassivce black hole in the center of a galaxy

Answers

Astronomers can study how clusters of stars and gas move around the galactic center in nearby galaxies and use those movements to calculate the mass of the central black hole.

How can we calculate the black hole's mass at the galactic center?

By monitoring the star motions in the galaxy's center, Webb will calculate the black hole's mass. Astronomers will calculate the mass of that black hole using NASA's James Webb Space Telescope. The outcome may appear to be unimportant, but a black hole's mass controls how it feeds and interacts with its surroundings.

Black holes are discovered when nearby material, such as gas, is pulled by gravity into a disk around the black hole. The gas molecules in the disk of the black hole are spinning so quickly that they heat up and release X-rays. From Earth, one can observe these X-rays.

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A TV with the power rating of 200 Watt uses 0.8 kilowatt of electrical energy in one day. For how many hours was the TV on during this day?

Answers

The number of hours that the TV was on is four hours.

What is the number of hours that the TV was on?

We know that is possible to calculate the cost of electricity and this is done when we convert the electricity to  the billing unit that we call the kilowatt hour.

Now we know that;

Power rating of the TV = 200 watt or 0.2 KW

The amount of electricity that was used by the TV in a day = 0.8 KWh

We can now find the number of hours from the relation;

Power rating * time = Energy used

0.2 * t = 0.8

t = 0.8/0.2

t = 4 hours

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A resistor, an inductor, and a capacitor are connected in series to an ac source. What is the phase angle between the voltages of the inductor and capacitor in this rlc circuit?.

Answers

The phase angle between the voltages of the capacitor and inductor in rlc circuit is 180°.

The phase angle is the component of a periodic wave. It is the shift between the AC current and the voltage on the measured impedance. The two elements of phase angle are reactance(X) and resistance (R).

The phrase for phase angle is, Xₐ = sinωt

where Xₐ= phase angle

ω = wavelength of the wave in 1 revolution

t = time period of 1 revolution

The instantaneous voltage ΔvR is in phase with the current, ΔvL leads the current by 90°, while ΔvC lags behind the current by 90°. The instantaneous values of these three voltages do add algebraically to give the instantaneous voltages across the RLC combination.

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when two identical resistors are connected in series across the terminals of a battery, the power delivered by the battery is 20 w. if these resistors are connected in parallel across the terminals of the same battery, what is the power delivered by the battery?

Answers

If these resistors are connected in parallel across the terminals of the same battery, the power delivered by the battery is 80 W

Write the expression for the total power delivered by the battery in

parallel,Pp = 2P1

Here, Po is the total power delivered by the battery in parallel.

Pp = 2 [(ΔV)²/R]

= 4 [(ΔV)²/2R]

= 4Ps

Pp =4(20)

   P =80 W

Electrical resistance is implemented as a circuit element by resistors, which are passive two-terminal electrical components. Resistors are devices that are used in electronic circuits for a variety of purposes, including lowering current flow, adjusting signal levels, dividing voltages, biasing active components, and terminating transmission lines. Electrical resistance is provided by a resistor, a two-terminal electrical component. Resistors are mainly used to split voltages, block transmission signals, reduce current flow, and bias active components in electronic circuits.

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Which statement best describes heat?

A. Heat flows from cold to hot and is a form of thermal energy.

B. Heat flows from hot to cold and is the transfer of thermal energy.

C. Heat flows from hot to cold and is a form of thermal energy.

D. Heat flows from cold to hot and is the transfer of thermal energy.

Answers

Answer: D

Explanation:

A car traveling at 5m/s brakes and skids through a displacement of 6m. if it slows down at the rate of 2m/s/s, determine the length of time during which it breaks.

Answers

When a car travels at 5m/s and brakes at the rate of 2 m/s², the length of time to travel 6 m is 2 or 3 seconds.

Use the equation of motion for deceleration:

s = u . t - 1/2. a t²

Where:

s = distance

u = initial velocity

t = travel time

a = acceleration (minus sign means deceleration)

Parameters given in the problem:

s = 6 m

u = 5 m/s

a = 2 m/s²

Plug these parameters into the formula:

6 = 5t - 1/2. 2 . t²

t² - 5t + 6 = 0

(t - 3) (t - 2) = 0

t = 3  or  t = 2

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An airplane is flying with a force of 800 N. It experiences a force of air resistance of 40 N and a wind force of 60 N, both acting in the opposite direction that the plane is traveling. What is the net force on the airplane?

Answers

The net force on the airplane is 420 N.

What is force?

An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude. The application of force is the location at which force is applied, and the direction in which the force is applied is known as the direction of the force.

A spring balance can be used to calculate the Force. Newton is the SI unit of force.

Given parameters:

Force of the airplane, F = 800 N.

Force of air resistance, f₁ = 40 N.

Wind force, f₂ =  60 N.

Net force = ?

According to the question, wind force and force of air resistance are acting opposite direction. As, force of air resistance always acting opposite to the direction of plane flying, wind force is acting along the direction of plane flying.

Hence, net force = F - f₁  + f₂

= ( 800 -40 + 60) N.

= 820 N.

So, net force acting on the plane is 820 N.

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a pilot flying low and slow drops a weight; it takes 2.2 s to hit the ground, during which it travels a horizontal distance of 180 m . now the pilot does a run at the same height but twice the speed. how much time does it take the weight to hit the ground?

Answers

Time taken by the weight to hit the ground is 2.2 seconds when pilot does a run at the same height but twice the speed.

What is distance , speed and how the time taken is same in the 2nd attempt as of the first attempt?Distance is a quantity which represents the product of speed and time in a given time period.Speed is the quantity that represents the distance travelled per unit time of the motion.Here the pilot takes 2.2 second of time to hit the ground and travels the distance of 180 meters.As we know that the time taken by the free fall from same height is always same.Time taken for the weight to hit the ground would be same as of the first attempt that is 2.2 seconds.

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A source vibrating at constant frequency generates a sinusoidal wave on a string under constant tension. If the power delivered to the string is quadrupled, by what factor does the amplitude change?.

Answers

When the amplitude varies, it means twice as much.

Which instances of sinusoidal waves are there?

Simple harmonic motion, such the swinging of a pendulum or the weight of a weight on a spring, produces a sinusoidal relationship between position and time. Sound and water waves, for example, can be visualized as sinusoids.

Given:

if the string is given four times as much power.

According to the power that a sinusoidal wave on a stretched string transmits,

P =[tex]\frac{1}{2}[/tex] μω^A^2v

Where  μ=mass per unit length, w= angular speed, A= amplitude, v= wave speed, P= power delivered.

P ∝[tex]A^{2}[/tex]

Here, the only terms we need are power and amplitude.

A =K[tex]\sqrt{P}[/tex]

Where K is constant

Here, "power become quadruple" refers to four,

A = [tex]\sqrt{4P}[/tex]

A =2 [tex]\sqrt{P}[/tex]

Therefore, an increase in amplitude by a factor of two is equivalent to a twofold increase.

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the angular velocity of a rotating rigid body increases from 500 to 1500 rev/min in 120 s. (a) what is the angular acceleration of the body? (b) through what angle does it turn in this 120 s?

Answers

The angular acceleration of the body &  through certain angle is 0.87266 rad/sec² and 12566.8rad respectively.

Given -angular velocity of a rotating rigid body increases from 500 to 1500 rev/min .

Time= 120s

To find - Angular acceleration and angle

Principle : We have to convert rev/min to rad/sec .

ωf= ωi + αt

ωf- ωi = αt

α= [ ωf- ωi ]/ t⇒angular acceleration formula

ΔФ=ωi t + αt²/2⇒ angle deviation formula

Calculations-

Conversion of Rev/Min to rad/Sec -

ωi= 500 rev/min

= 500 x 2π rad/rev x 1min/60sec = 52.3598 rad/sec

ωf= 1500 rev/min

=1500 x 2π rad/rev x 1min/60sec = 157.079rad/sec

ωi=52.3598 rad/sec

ωf=157.079rad/sec

Now , to compute angular acceleration- α= [ ωf- ωi ]/ t

= [157.079rad/sec- 52.3598 rad/sec]/120

α=0.87266 rad/sec²

Now to compute angle deviated -ΔФ=ωi t + αt²/2

=52.3598 x 120 + [0.87266 x 120 x120]/2

ΔФ= 12566.8rad

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if the net acceleration is downward but has a magnitude less than g, then which has the larger magnitude, the force f or the tension in the rope?

Answers

If the net acceleration is downward but has a magnitude less than G, the force of F has a larger magnitude than the tension in the rope.

How to determine the net acceleration?

We do know thаt the net force equаls mаss times the аccelerаtion. Now if we tаke the block аs а system, meаning we mаke use of the equаtion, mаss times аccelerаtion equаls net force, on the block. Now the lаst element of the rope is pulling the block upwаrds. This is becаuse the block pulls the rope down, hence due to newton's third lаw the rope too should pull the block, but in opposite directions, thаt is upwаrds. Hence the tension аcts upwаrds on the block. Therefore the net force is weight downwаrds аnd tension upwаrds, this equаls mаss times аccelerаtion,

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a skateboard rolls down a hill and the wheels do not slip against the pavement. does the static friction force of the pavement on the wheels do any work on the skateboard? g

Answers

The static friction force of the pavement on the wheels will not do any work on the skateboard.

Static friction is a variable resisting force that is equal and opposite to the external force until it exceeds the motion threshold when sliding begins.

It is also called as self adjusting force.

If the skateboard is rolling at a constant speed without any other forces acting on it, then there is no tendency to slip between the wheel and the surface, so there is no frictional work. Friction will only try to prevent slipping between the 2 surfaces.

On an inclined plane, the wheels will tend to slide down, and if there were no friction, it would again slide between the wheels and the inclined surface. Perhaps friction will always try to counteract the slip, so here it acts upward on the slope to try to prevent the skateboard from sliding down the slope. This has the effect of applying a moment to the skateboard causing it to roll.

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An electric pace heater draw 25. 0 A from a 200 V ource. It i operated, on the average, for 10. 0 h each day. At AED 0. 30 per kWh, how much doe it cot to operate the heater for 15 day?

Answers

The consumption to operate the heater for 15 days is $2.25

Electricity consumption refers to all of the electricity used to perform a movement, manufacture something, or definitely inhabit a construction. here are some examples: In a manufacturing unit, overall electricity consumption can be measured with aid of looking at how lots power a manufacturing technique consumes, for instance, via making car elements.

The full-strength intake consists of that of coal, crude oil and their products, natural gasoline, and electricity, but, it excludes the intake of gas of low calorific fee, bio-strength, and solar energy.

Calculation:-

Voltage (V) = 200 V

Current (I) = 25 A

Power (P) = VI = 200 * 25 = 5,000 W

Now, the calculation of the energy consumption for 15 days in KW/h

We will convert W to kW,

1000 W = 1kW

Therefore,

5,000 W = 5000 W × 1 KW / 1000 W = 5kW

The daily energy consumption will be calculated. This is attainable as follows,

P = 5kW

Time(t) = 10 h

Energy (E) = P/t = 5/10 = 0.5 kW/h per day.

Finally, we will calculate the energy usage for the next 30 days. This is attainable as follows:

1 day = 0.5 kW

Cost of one day = 0.5 * 0.30 = $ 0.15

Now, the cost to operate the heater for 15 days = $ 15 * 0.15 = $2.25

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A toy cart at the end of a string 0.70 m long moves in a circle on a table. The cart has a mass of 2.0 kg and the string gives a centripetal force of 40. N. Calculate the speed of the cart.

Answers

3.74 m/s is  the speed of the cart of mass 2.0 kg and the string gives a centripetal force of 40. N.

What does a circle's centripetal force look like?

The force that creates centripetal acceleration is known as centripetal force. All objects in uniform circular motion accelerate toward the center of the circle, and as a result, they must likewise experience a force from the center. The centripetal force is that force.

Briefing :

Given ,The mass of the cart, m = 2 kg,

The standard equation would be F = ma , where a is acceleration, f is force, and m is mass. However, the breaking strength of the string is 40 N.

a   =    [tex]\frac{v^{2} }{r}[/tex]

F   =   ma

F   =   [tex]\frac{mv^{2} }{r}[/tex]

40 =   [tex]\frac{2v^{2} }{0.70}[/tex]

[tex]v^{2}[/tex]  =   14

v   =  [tex]\sqrt{14}[/tex]

v  =  3.74 m/s

Therefore , the speed of the cart is 3.74 m/s .

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A stater glides off a frozen pond onto a patch of ground at a speed of 3.1 m/S. Here she is stowed at a constant rate of 3.00 m/*, How fast is the skater moving when she has slid 0.42 m across the ground?

Answers

A stater glides off a frozen pond onto a patch of ground at a speed of 3.1 m/S. Here she is stowed at a constant rate of 3.00 m/s .  The skater will move at a speed of v = 1.01 m/s , when she has slid 0.42 m across the ground

The branch of physics that defines motion with respect to space and time, ignoring the cause of that motion, is known as kinematics. Kinematics equations are a set of equations that can derive an unknown aspect of a body’s motion if the other aspects are provided.

using kinematics equation

[tex]v^{2} - u^{2} = 2as[/tex]

[tex]v^{2} = u^{2}[/tex] + 2as

   = [tex](3.1)^{2}[/tex] - 2 * 3 * 0.42

v    = 1.01 m/s

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suppose that the quarterback takes 0.30 ss to return to the ground after throwing the ball. how far ddd will he move horizontally, assuming his speed is constant?

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The quarterback is located 0.3v above ground. The fundamental element of every projectile's body that is moving is its horizontal velocity (vx).

What is horizontal velocity?

The fundamental element of every projectile's body that is moving is its horizontal velocity (vx). In any projectile motion, it is typically utilized to know the velocity value at which the particle travels along the horizontal direction. It's even thought of as the body's starting point for movement.

Let's say the projectile-moving particle reaches the highest point of its horizontal path. In that case, the horizontal velocity will typically be zero since the force of gravity will cause it to fall vertically downward as soon as it reaches the peak point. Vertical velocity has no impact on this horizontal velocity when it is at its highest point.

Let the horizontal velocity of the object = v

X = vt

X = 0.3v

Thus, The quarterback is located 0.3v above ground.

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a horizontal meter stick has a mass of 213 g.213 g. three weights ride on the meter stick: 259 g259 g at 41.3 cm,41.3 cm, 193 g193 g at 75.5 cm,75.5 cm, and 207 g207 g at 90.3 cm.90.3 cm. at what location on the meter stick would the system be in balance if it were suspended there?

Answers

To find about the suspended, learn suspended and suspended particles.

What is suspension?

A heterogeneous mixture called a suspension is one in which the solid components are dispersed throughout the liquid without actually dissolving in it. A homogeneous mixture of particles with a diameter greater than 1000 nm and that are visible to the unaided eye is referred to as a suspension.

What is suspended particle?

Finely divided solids or liquids, known as suspended particulate matter (SPM), may be released into the atmosphere as a result of industrial processes, natural processes, or human activity.

Xcm= mini/mi

⇒ (259)(41.3)+(193)(75.5)+(207)(90.3)/259+193+207

⇒10696.7+14571.15+18692.1/659

⇒Xcm=66.707 cm

Therefore, the suspended balance is 66.707 cm.

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please this is serious

Answers

Distance x force equals work done. When this occurs, the amount of work done is measured in joules (J), the amount of force is recorded in newtons (N), and the distance travelled along the force's path is measured in meters (m).

What does work-done-unit mean?

The SI unit of labor is called a joule (J).

The following questions have the following answers:

1) In the picture below, F1 acts downward and F2 acts upward.

2) Moments on the LHS equal F1d1 and on the RHS, F2d2.

Moment in LHS= RHS F1d1= F2d2 F1= (20Kg 10)/200 N Consequently, 200 N0.8= F20.95 160= 0.95 F2 = 168.42 N

The net force has a magnitude of 168.42 N and is directed upward.

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