The displacement at 8.0 seconds is 19.08 m.
The velocity at 8.0 seconds is -0.06 m/s.
What is the displacement and velocity of the particle?
The displacement and velocity of the particle is calculated by applying interpolation and extrapolation.
8.0 s --------> 19.08 m
10.0 s --------> 16.81
8.0 s --------> x
(8 - 10 ) / ( 10 - 8 ) = ( 19.08 - 16.81 ) / ( 16.81 - x )
(-2 ) / ( 2 ) = ( 2.27 ) / ( 16.81 - x )
-1 (16.81 - x ) = 2.27
16.81 - x = -2.27
x = 16.81 + 2.27
x = 19.08 m
The velocity at 8.0 seconds is calculated as follows;
8.0 s ---------------> -0.06 m/s
10.0 s ---------------> -2.39 m/s
8.0 s ----------------> x
( 10 - 8 ) / ( 10 - 8 ) = ( -2.39 - - 0.06 ) / ( -2.39 - x )
1 = ( -2.33 ) / ( -2.39 - x )
-2.39 - x = -2.33
x = 2.33 - 2.39
x = -0.06 m/s
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For the situation described in the previous question, which cart experiences the greater change in kinetic energy? It's impossible to tell without knowing the initial velocities.
Cart 1 experiences the bigger change in kinetic energy, and this change is independent of the cart's beginning velocity.
An object's kinetic energy is the energy it has as a result of motion. Applying force is necessary if we wish to accelerate an object. We have to put forth work to apply a force. After the job is finished, the object will be travelling at a new, constant speed because energy has been transferred to it. The energy of motion, or kinetic energy, can be seen in the movement of an item or subatomic particle. Kinetic energy is present in every moving object and particle.The formula for kinetic energy is stated as K E = 1 2 m v 2. Where m is the body's mass, v is its velocity, and KE is its kinetic energy.
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saturn is 95 times the mass of earth. its volume is about 765 times that of earth. why?
Saturn is 95 times the mass of earth. its volume is about 765 times that of earth because Saturn has a lower density than Earth.
The second-largest planet in the Solar System after Jupiter, Saturn is located six planets from the Sun. With a typical radius of almost nine and a half times that of Earth, it is a gas giant. Despite being nearly 95 times more massive, it barely possesses an eighth of Earth's average density. Saturn's interior is most likely made up of a rocky core, a layer of deep metallic hydrogen, a layer of liquid hydrogen and helium in the middle, and a layer of gaseous material on the outside. Saturn's upper atmosphere contains ammonia crystals, which give the planet a faint yellow tint.The radius of the planet is just as important to the planet's gravity as is the planet's mass. It is inversely related to the square of the radius and immediately relates to the planet's mass. Saturn's radius is 9.5 times that of Earth, despite its mass being 95 times that of Earth.
Therefore, gravity is 95 /(9.5) ²= 1.053 times greater than that of the Earth.
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Darcel runs the simulation for the large version of each object. What can he say in general about the energies of the objects in the simulation as they roll down the incline? (Select all that apply.)"The total energy of the system remains constant and is equal to the gravitational potential energy of the object at the top of the incline.""The total kinetic energy of a rolling object is the sum of the rotational kinetic energy about the center of mass and the translational kinetic energy of the center of mass.""The translational kinetic energy is always greater than the rotational kinetic energy.""The potential energy of the system remains constant, and is equal to the total energy."
12 mvCM2 is the translational kinetic energy. Rotational kinetic energy is equal to 12 I2. The combined translational and rotational kinetic energies of an object in motion determine its total kinetic energy.
A rolling object's combined linear and rotational kinetic energies make up its total kinetic energy: The second equation clearly shows that a rolling item has kinetic energy that is greater than its kinetic energy during translation. Yes, the kinetic energies of rotation and translation are same. The coordinated (non-random) movement of mass with respect to a certain reference frame involves both of them as the energy of motion. 12 mvCM2 is the translational kinetic energy. Rotational kinetic energy is equal to 12 I2.
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at its highest point, what fraction of the initial kinetic energy has been converted to potential energy?
At its highest point, all of the initial kinetic energy has been converted to potential energy.
What is kinetic energy?
Kinetic energy is a form of energy related to the motion of an object. It is the energy associated with the movement of an object, and is calculated by multiplying the mass of the object by the square of its velocity. Kinetic energy is a scalar quantity, meaning that it only has magnitude and does not have a direction. It is often represented by the letter K. When an object is at rest, it has no kinetic energy. However, when it starts to move, it gains kinetic energy. Kinetic energy can be transferred from one object to another in collisions or by the application of a force. In addition, kinetic energy can be converted into other forms of energy, such as thermal energy. Kinetic energy is an important concept in many fields of physics, such as mechanics and thermodynamics.
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7. A 50 kg bicyclist on a 10 kg bicycle speeds up from 5.0 m/s to 10 m/s.
Given:
(a) What was the total kinetic energy before accelerating?
(b) What was the total kinetic energy after accelerating?
(c) How much work was done to increase the kinetic energy of the bicyclist? (Hint : Work = Δ KE = KEf - KEi)
Answer:
a)-750J ; b)-3000J ; c)-2
Explanation:
a)- (K.E.1)=mu²/2=60×25/2=750J
b)-(K.E.2)=mv²/2=60×100/2=3000J
c)-Work done= (K.E.2)-(K.E.1)=2250J
A book is thrown upward from height 10.m and lands with a velocity of -17.50m/s. What was its initial velocity
Answer:
Below
Explanation:
Find the velocity if it was just DROPPED from 10m
d = 1/2 at^2
10 = 1/2 * 9.81 * t^2 shows t = 1.42784 s to hit ground from 10 m
velocity if just dropped v = at = 9.81 * 1.4278414 m/s
when the book is tossed up...and it returns to the launch point it will have the same magnitude of velocity
so it was launched up at the difference between what it was if just dropped and the final v of 17.5
17.5 - 14 = 3.5 m/s initial v
if the force on the ball increases linearly for 4.00 ms, holds constant for 20.0 ms, and then decreases linearly to zero in another 4.00 ms, what is the maximum force (in n) on the ball?
The maximum force on the ball is 280 N if the force on the ball increases linearly for 4.00 ms
The maximum force on the ball will be the average of the initial and final forces, which is half of the total force applied. The total force applied over the 28.0 ms time period is the area of the triangle formed by the linear increase, constant force, and linear decrease.
The area of the triangle can be found by calculating its height and width, and then multiplying them together. The height of the triangle is the maximum force applied over the 20.0 ms period, and the width of the triangle is 28.0 ms.
Therefore, the maximum force on the ball is (20.0 ms)(28.0 ms)/2 = 280 N.
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if it takes a technician 54s to polish 1.24 x 10^2 mm^2, how long does it take her to polish the entire lens? round your answer to significant figures.
To find the time it takes to polish the entire lens, we first need to know the total surface area of the lens. If we assume that the lens is spherical and has a diameter of 1.24 x 10^2 mm, then its surface area can be calculated using the formula for the surface area of a sphere:
A = 4πr^2, where r is the radius of the sphere
The radius of the sphere can be found by dividing the diameter by 2:
r = d/2
Plugging in the values for d and r, we get:
A = 4π(1.24 x 10^2 mm / 2)^2
A = 4π(62^2) mm^2
A = 4π(3844) mm^2
Now that we know the surface area of the lens, we can divide it by the time it takes the technician to polish 1.24 x 10^2 mm^2 to find the total time:
T = (4π * 3844 mm^2) / (54 s / 1.24 x 10^2 mm^2)
T = (4π * 3844) / 54
T = (15246.88) / 54
T = 282.6 s
Rounding to two significant figures, the time it takes the technician to polish the entire lens is approximately:
T = 283 s
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A particular car engine provides a force of 700n when a car is moving at its top speed of 40 ms-1
a. Calculate how much work is done by the car’s engine in one second. b. State the output power of the engine.
The car's engine provides a force of 700 N and does 28000 joules of work in one second, with an output power of 28000 W. We can calculate this using work = f.s and power = work/time
a. Work is calculated as the force applied multiplied by the distance traveled in the direction of the force. In the case of the car's engine, the work done in one second can be calculated as follows:
work = force x distance
distance = speed x time (t = 1 second)
work = 700 N x (40 m/s x 1 s)
work = 28000 J
b. Power at what rate work is being performed. It can be calculated as the work done divided by the time taken. In this case, the output power of the engine can be calculated as follows:
power = work/time
power = 28000 J / 1 s
power = 28000 W
So, the engine provides an output power of 28000 watts. This means that in one second, the engine does 28000 joules of work, which is equivalent to 28 kilowatts of power.
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When wind blows, stationary waves can be formed on the aerial wire. Explain how stationary waves are produced and why only waves of specific frequencies can form on the aerial wire
1. Wind produces a disturbance that travels along the wire
2. Wave is reflected at each end
3. Waves interfere
4. Only certain frequencies since fixed ends have to be nodes
Stationary waves are produced when wind produces a disturbance that travels along the wire. This wave is reflected at each end. Then the waves interfere and only certain frequencies since fixed ends have to be nodes.
A wave that maintains its location throughout time is said to be stationary. It can develop in a stationary medium as a result of interference between two waves that have equal wavelengths and are moving in opposite directions but along the same path. They should have almost same amplitude.
Standing waves only occur at certain frequencies as you can only get a stable pattern if there is a whole number of half wavelengths along the length of the oscillator.
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A nurse pushes a 152 kg gurney. What is the normal force acting on the bed?
Type your answer...
Answer:
1489.6 N
Explanation:
The Normal Force (N) is the force of the floor acting up on the gurney, which is equal in magnitude and opposite in direction to the force of the weight (W) of the gurney.
N = W = mg = (152 kg)(9.8 m/s²) = 1489.6 N
A wave has a time period of 0.1s and is travelling at a speed of 340 m/s. calculate the wavelength of the wave
If a wave has a time period of 0.1s and is travelling at a speed of 340 m/s, the wavelength of the wave is 34 meters.
What is wave?A wave is a dynamic disturbance of one or more quantities that propagates in physics, mathematics, and related sciences. When waves oscillate frequently around an equilibrium value at a certain frequency, they are said to be periodic.
The wavelength of the wave = speed of the wave × time period of the wave
= 340 m/s × 0.1 s
= 34 m.
Hence, the wavelength of the wave is 34 meters.
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The human eye can "see" with a signal of 100 photons per second. How far away can a 100-watt light bulb be seen by a dark-adapted eye? Assume the light bulb is in outer space, so that the light is not scattered by the atmosphere. Also assume that the bulb is monochromatic and radiates at a wavelength of 550 nm. Use a reasonable estimate for the diameter of the dark-adapted pupil of the eye. Diameter of the pupil is 5mm. The answer in the back of the book is 2000 km
The distance from the light bulb is 195km when human eye can "see" with a signal of 100 photons per second of a 100W bulb.
Given the number of photons the human eye can see (n) = 100 per second
The power of light bulb (P) = 100W
The wavelength of light the bulb radiates (∧) = 550nm = 550 x 10^-9m
Let the diameter of pupil (d) = 5mm = 5 x 10^-3m
Let the distance the eye can see a 100-watt light bulb = r
Let the intensity of the light bulb = I
Let the power of eye = Pe
We know that I = P/4πr^2 where r is the distance from the light bulb
The power of eye = Intensity x Area of pupil = I x πd^2/4
Then, I = 4Pe/πd^2 such that 4Pe/πd^2 = P/4πr^2
So, r^2 = P x d^2/16Pe then, r = d/4(√P/Pe)
We know that E = h∨ = hc/∧ where h is the planck's constant = and c is the speed of light = 3 x 10^8m/s.
E = the power of eye = Pe = hc/∧ x n
Then, r = d/4(√P∧/hcn)
r = 5/4(√100 x 550 x 10^-9/100 x 6.6 x 10^-34 x 3 x 10^8
r = 5/4√22.7 x 10^17
r = 15.6 x 10^4 x 1.25 = 19.5 x 10^4m = 195km
Hence the distance from the light bulb is 195km.
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Match each scenario to the form of energy it represents.
a man jogging in the park
a stove burner that's turned on
an apple on a tree
a fully charged camera battery
A. gravitational potential energy
B. motion energy
C. electric potential energy
D. radiant energy
Answer: and apple on the tree is gravitational and potential
fully charged camera battery is electric/ potential energy a man jogging is motion energy and a stove burner that is turned on is radiation energy
Explanation:
hope this helps
A 25kg bike has 10250J of kinetic energy, how fast is it going?
Answer:
28.63 m/s
Explanation:
if you have a 2 kg object and a 3 kg object separated by a distance of 4 meters, what is the gravitational force drawing them together?
The gravitational force drawing them together is 2.5 × 10⁻¹² N, if the masses of objects are 2 kg and 3 kg and they are separated by 4 meter distance.
Mass of the first object, m₁ = 2 kg
Mass of the second object, m₂ = 3 kg
The distance between them, d = 4 m
Universal gravitational constant, G = 6.67 × 10⁻¹¹ Nm²/kg²
The gravitational force is formulated as, F = Gm₁m₂/d²
F = (6.67 × 10⁻¹¹)(2 × 3)/4²
F = 2.5 × 10⁻¹¹ N
This force is an attractive force and it will be experienced by both the object.
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joe and tom are competing in a 100 m race. partway through the race, joe is 50 m from the finish line and moving at 10 m/s and tom is 51 m from the finish line and moving at 9.75 m/s. if joe maintains his speed and tom begins accelerating, what magnitude of constant acceleration must tom have so that they finish the race in a dead heat
Tom must accelerate at a constant rate of 0.25 m/s2 in order to finish the race in a dead heat with Joe.
What is accelerate?Accelerate is an action or process of speeding up or increasing in rate or amount. It is commonly used to describe an increase in the rate of change of velocity, or the rate of change of a variable such as time, speed, or distance. Acceleration can be generated by a variety of forces and factors, such as gravity, electrical current, centrifugal force, friction, and aerodynamic drag.
Tom must have a constant acceleration of 0.25 m/s2 in order to finish the race in a dead heat with Joe. This can be calculated using the equation for average velocity, vavg = (v1 + v2)/2, where v1 is Joe's velocity and v2 is Tom's velocity. If Joe and Tom both have the same final velocity, then their average velocity must be equal.
50 m / 10 m/s + 51 m / (9.75 m/s + a) = (10 m/s + a)
Solving for a, we get a = 0.25 m/s2. Therefore, Tom must accelerate at a constant rate of 0.25 m/s2 in order to finish the race in a dead heat with Joe.
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if all this heat is removed from the hiker (no significant heat was generated by metabolism during this time), what drop in body temperature would the hiker experience? the clothed hiker weighs 95 kg , and you can approximate the heat capacity of hiker and clothes as equal to that of water. (moral: stay out of the wind if you get your clothes wet.) express your answer using two significant figures and include the appropriate units. as the question already asks for the drop in temperature, provide a positive number as the answer.
The drop in body temperature would be 56.6°C. (The temperature drop is negative because heat is being lost).
A physical feature of matter known as heat capacity or thermal capacity is the quantity of heat that must be applied to an item in order to cause a unit change in temperature. J/K is the metric unit for heat capacity. A broad attribute is heat capacity.
The amount of heat energy needed to increase the temperature of a given quantity of matter by one degree Celsius is referred to as heat capacity. Heat capacity is a broad attribute that depends on the size or amount of a specific substance.
The heat capacity of water can be expressed as:
C = 4.184 J/g°C
Since the heat capacity of the hiker and clothes can be approximated as equal to that of water, we can use the same heat capacity.
The change in temperature can be found using the equation:
ΔT = Q / (m * C)
where Q is the heat lost by the hiker2,
m is the mass of the hiker and clothes, and
C is the heat capacity.
Substituting the given values, we get:
ΔT = (-6.57 x 10^6 J) / (95 kg * 4.184 J/g°C)
= -56.6°C
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A 100 Watt light bulb has an average life of 2000 hours. How much energy does it consume over its lifetime? Give
your answer in Joules.
The energy it consume over its lifetime as per the given values is [tex]7.20X10^6[/tex] joules.
What is electrical power?When an electrical equipment is used, some electrical energy is consumed in order for it to function.
For instance, an electrical bulb uses electrical energy in order to transform it into light energy. Electric power, then, is the pace at which an electrical equipment uses energy or performs its function.
Here, it is given that,
P = 100 W
t = 2000 h = 2000 x 60 x 60 = [tex]7.20X10^6[/tex]
We know that,
Electric power = E/t.
E = P x t
E = [tex]100X7.2X10^6[/tex]
E = [tex]7.20X10^6[/tex] joules
Thus, the energy will be [tex]7.20X10^6[/tex] joules.
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NASA's new SLS rocket travels about 10 km/s in space. At this speed, how long would it take to reach alpha centauri (4.4 light years away from the sun)?
Total time taken to reach Alpha Centauri is 132001 years.
What is Velocity?The directional speed of an item in motion, as measured by a specific unit of time and viewed from a certain point of reference, is what is referred to as velocity.
An object's position changes if it moves in relation to a reference frame, such as when a passenger travels to the back of an airliner or a lecturer moves to the right in relation to a whiteboard. Displacement describes this shift in location.
When anything moves in connection to a reference frame, such when a passenger moves to the back of an airplane or a lecturer walks to the right in relation to a whiteboard, the location of the item changes. This locational change is described as displacement.
The distance that light travels in a light-year is one year. At 186,000 miles (300,000 kilometers) per second and 5.88 trillion miles (9.46 trillion kilometers) per year, light travels through interstellar space.
Total distance = 4.4*9.46*1,000,000,000,000* 2400000 = 4.1628* 10¹³ km
Speed is 10 km/sec
Total time taken = 4.1628* 10¹³/ 10 = 4.1628* 10¹² sec
1 year has = 3.15 * 10⁷ sec
Total time taken to reach Alpha Centauri is 132001 years.
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A car manufacturer reduces the mass of a car by 250 kg. If the new design is otherwise identical to the old design, how will the new car compare to the old car?
f It will require more fuel to operate.
g It will have a greater gravitational attraction to the road.
h It will need less force to move.
j It will release more gas emissions.
Answer:
h. It will need less force to move.
Explanation:
The reduction in mass of the car means that the car will have less inertia, or resistance to motion. This means that less force will be required to accelerate or maintain motion for the new car design compared to the old car design. Lowering the weight of the car will improve its power-to-weight ratio and thus will be more efficient in terms of fuel consumption and acceleration but this is not directly related to the question.
you have a ct circuit connected to a relay. you know the following: the ct resistance is 0.800 ohms total the wires from the ct to relay are 100 ft each and have a resistance of 0.001 ohms/ft the relay has a resistance 0.020 ohms the worst-case fault occurs for a 1lg fault. what is the total resistance you need to consider when evaluating the cts? a. 1.020 ohms b. 0.920 ohms c. 1.000 ohms d. 0.900 ohms
When evaluating the CTS you need to consider the total resistance of 1.020 ohms. Here option A is the correct answer.
The total resistance to consider when evaluating the CTs is given by the sum of the resistance of the CT, the wires, and the relay.
The resistance of the wires can be calculated using the formula R = r * L, where r is the resistance per unit length (0.001 ohms/ft) and L is the total length of the wires (100 ft * 2 = 200 ft).
Plugging in the values, we get:
Rwires = 0.001 ohms/ft * 200 ft = 0.200 ohms
The total resistance to consider is then:
Rtotal = RCT + Rwires + Rrelay
Rtotal = 0.800 ohms + 0.200 ohms + 0.020 ohms
Rtotal = 1.020 ohms
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a spring has a spring constant of 40 n/m. how much work is required to stretch the spring 2.0 cm from its equilibrium position?
The work done to stretch the spring 2.0 cm from its equilibrium position is 0.16 J.
To calculate the amount of work required to stretch a spring 2.0 cm from its equilibrium position, you can use the formula for work done on a spring:
W = (1/2) * k * x^2
where W is the work done, k is the spring constant, and x is the displacement of the spring from its equilibrium position.
In this case, the spring constant is 40 N/m, and the displacement is 2.0 cm = 0.02 m. So,
W = (1/2) * 40 N/m * (0.02 m)^2
The work done to stretch the spring 2.0 cm from its equilibrium position is 0.16 J.
It is important to note that this formula assumes that the spring is ideal and follows Hooke's law, which states that the force exerted by a spring is proportional to its displacement. In reality, springs may deviate from this law and may not be ideal, so the actual work done may be different from the calculated value. Additionally, this calculation assumes that the spring is stretched in a linear fashion, and that the displacement is small compared to the total length of the spring.
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when a charged ruler attracts small pieces of (originally uncharged) paper, sometimes a piece jumps quickly away after touching the ruler. why?
When a charged ruler attracts small pieces of paper sometime a piece gems quickly away after touching the ruler because that piece gets neutral after getting touched with ruler.
When we use a charged ruler to attract the small pieces of paper which for originally uncharged, we see that the pieces of paper gets attracted by the ruler but sometime we say that some of the pieces gets quickly away from the ruler after touching it.
This is simply because after touching the charged ruler the electrical neutrality comes into play between the charged particles.
As we know that the neutral objects do not attract each other the pieces of paper gets quickly away.
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determine whether the series is convergent or divergent. [infinity] n = 1 1 9 e−n
The sum of the series is infinite, it is considered to be divergent.
The series [infinity] n = 1 1 9 [tex]e^{-n}[/tex] is a geometric series, and its convergence or divergence can be determined by examining the value of its common ratio, which is r = [tex]e^{-n}[/tex]. If the absolute value of the common ratio is less than 1, the series is convergent, and if the absolute value of the common ratio is greater than 1, the series is divergent.
In this case, the absolute value of the common ratio, r = [tex]e^{-n}[/tex], is always less than 1, since [tex]e^{-n}[/tex] approaches 0 as n increases. Therefore, the series [infinity] n = 1 1 9 [tex]e^{-n}[/tex] is convergent.
To determine the sum of the series, we can use the formula for the sum of a convergent geometric series:
S = a / (1 - r) = 1 / (1 - [tex]e^{-n}[/tex]) = 1 / (1 - 0) = ∞
Since the sum of the series is infinite, it is considered to be divergent.
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21) A hot urface at 100oC i to be cooled by attaching 3-cm-long, 0. 25-cm-diameter aluminum pin fin (k = 237 W/mK) to it, with a center-to-center ditance of 0. 6 cm. The temperature of the urrounding medium i 30oC and the heat tranfer coefficient on the urface i 35 W/m2K. Determine the rate of heat tranfer from the urface for a 1 m x 1 m ection of the plate. Alo determine the overall effectivene of the fin
The rate of heat transfer is 2450 W, and the effectiveness of the fin is 0.097 or 9.7%.
Convective heat transfer coefficient (h) = 35 W/m²K
Area of the plate = 1 m²
Temperature difference = 100 - 30 = 70K
Rate of heat transfer is formulated as, Q = h×A×ΔT
Q = 35×1×70 = 2450 W = Qmin
The overall effectiveness of the fin can be calculated using the equation:
η = Q / (Qmax - Qmin)
Where Qmax is the maximum possible heat transfer rate,
Qmax = k×A₁×ΔT/L
Where k is fin's conductivity = 237 W/mK
A₁ is the area of the fin = π×(d/2)² = π(0.25/2)² = 0.05 m²
L is the length of the rod, = 3 cm = 0.03 m
ΔT = 100 - 30 = 70K
Qmax = 237 × 0.05×70/0.03
Qmax = 27650
η = 2450/ (27650 - 2450)
η = 0.097 or 9.7%
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A girl of mass 40 kg climbs a rope 6 m long at constant speed in 15 seconds. What power she expands during the climb?
Draw lines to match the wave terms with the correct description.
Amplitude - Highest line
Trough - Lowest point
Crest - Distance between top and rest position
Oscillate - Back and forth motion
Amplitude - Distance between top of crest and rest position
Frequency - Number of waves per second
Wavelength - Distance between two crest or troughs
Compression - Where particles are close together
Rarefaction - Where particles are farthest apart
Incident wave - The wave that moves towards an object
Reflected wave - The wave that moves off an object
Superpose - When waves add or cancel out
Reflect - When a wave bounces off an object
What are the terms that describe waves?A wave is a disturbance that travels through a medium, carrying energy from one place to another without the permanent transfer of matter.
The terms that are used to describe a wave are;
Amplitude
Wavelength
Frequency
Period
Velocity
Crest
Trough
Polarization
Interference
Diffraction.
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what tire pressures does ford reccommend fo a 2019 ford fusion energi titamium with 18 inch wheels reccommend?
For a Ford Fusion, the suggested tire pressure for the front and rear tires on a set of 18-inch wheels for 2019 Ford Fusion Energi Titanium tires is 32 psi (PSI).
The recommended pressure is typically displayed on a sticker inside the driver's door of newer vehicles. In most cases, the owner's handbook contains the specifications if there isn't a sticker on the door. When the tires are cold, most passenger cars advise 32 to 35 pressures in the tires.
In addition to hybrid ratings of 104 city MPGe and 91 highway MPGe, the 2019 Fusion Energi has gas mileage estimates of 43 city MPG and 41 highway MPG.
In the Ford Fusion Hybrid, the gasoline engine and braking are both used to partially replenish the battery. That entails filling the tank with fuel and starting the car. You can actually plug the Ford Fusion Energi into a power source.
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the frequency 100 mhz (100 million cycles per second) is right in the middle of the fm dial on your radio. what is the wavelength of these waves?
The wavelength of radio waves with a frequency of 100 MHz is approximately 3 meters.
What is wavelength of radio waves?
Radio waves have a wavelength range from about 1 millimeter to 100 kilometers. The wavelength of an electromagnetic wave can be calculated using the formula:
wavelength (λ) = speed of light (c) / frequency (f)
where the speed of light in a vacuum is approximately 299,792,458 meters per second (c = 3 x 10^8 m/s). So, for a frequency of 100 MHz (100 million cycles per second), the wavelength can be calculated as:
[tex]λ = c / f = 3 x 10^8 m/s / 100 x 10^6 Hz = 3 m[/tex]
So the wavelength of radio waves with a frequency of 100 MHz is approximately 3 meters.
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