Answer:
6.52 m/s
1.72 m/s
5.38 m/s
Explanation:
this question requires us to find the average velocity.
1. velocity in straight down direction:
velocity = distance/time
= 15.0/2.30
= 6.52 m/s
2. velocity in straight backward direction:
velocity = distance/time
= 3.00 /1.74
= 1.72m/s
3. velocity in straight forward direction
velocity = distance/time
= 28.0/5.20
= 5.38 m/s
these are the his velocities for each if the intervals.
thank you!
the gas in a hot air balloon is heated, and in the process the volume of the gas increases as the balloon expands against a constant pressure of 1 atm. because the hot gas in the balloon is less dense than the surrounding cold air, it provides buoyancy. which of the following statements about this process are correct?
Charles' law by the gas in a hot air balloon is heated, and in the process, the volume of the gas increases as the balloon expands against a constant pressure of 1 atm. because the hot gas in the balloon is less dense than the surrounding cold air, it provides buoyancy.
Stress is the force applied perpendicular to the surface of an object in keeping with the unit location over which that force is shipped. Gauge strain is the strain relative to the ambient strain. Numerous gadgets are used for the specific strain. strain is defined to be the quantity of pressure exerted per location.
The pascal (Pa) is the same old unit of stress. A pascal is a very small quantity of stress, so the most beneficial unit for normal gasoline pressures is the kilopascal (kPa). A kilopascal is equal to a thousand pascals. Another usually used unit of pressure is the atmosphere (atm).strain is commonly measured in units of pressure in step with a unit of surface vicinity ( P = F / A). In bodily technological know-how, the image for strain is p and the SI unit for measuring stress is the pascal (image: Pa). One pascal is the pressure of one Newton consistent with a square meter appearing perpendicular on a floor.
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When a hot air balloon is involved, the fuel is ignited, raising the temperature of the air inside the balloon. The gas then expands in volume as a result.
Charles's law is followed by hot air balloons. Charles' law states that a substance's volume and temperature are intimately correlated. As a result, the density of the balloon decreases, and its volume increases. Due to the gas cooling off due to the low temperature, the balloon's volume shrinks. The helium balloon rises because it is lighter than the same amount of air at ambient temperature. It is heavier than the same volume of air at low temperatures because its volume is too small.
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What is the dc impedance of the electrode, assuming that it behaves as an ideal capacitor? (a) 0; (b) infinite; (c) √2×104Ω; (d) √2×106Ω.
The dc impedance of the electrode, assuming that it behaves as an ideal capacitor is infinite.
What is an ideal capacitor?
The ideal capacitor has no resistance and, as a result, doesn't lose any energy while in use. Just capacitance exists in it. The dielectric does not degrade in a ideal capacitor.
Using merely its resistance, an element in a DC circuit can be characterized. While an inductor's resistance in a DC circuit is viewed as a short connection (zero resistance), a capacitor's resistance is viewed as an open connection (infinite resistance)
In contrast to an inductor, which has zero impedance at DC and approaches infinity at infinite frequencies, capacitors have infinite impedance at DC and approach zero as frequency approaches infinity.
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Rank the objects based on the maximum height they reach along the curved incline. Rank from largest to smallest. To rank items as equivalent, overlap them.
Object A reaches the highest point along the curved incline, so it should be ranked first.
What is object?Object is a concept used in object-oriented programming (OOP) which refers to a self-contained entity that contains data and code to manipulate the data. It is an instance of a class that is defined by the programmer. Objects are used to represent real-world objects, such as a car, or to represent abstract concepts, such as a bank account. Objects are the basic building blocks of OOP and are used to create applications.
Object C is the second highest, and Object B is last. This ranking from largest to smallest can be visualized by lining them up from left to right, with Object A on the left, Object C in the middle, and Object B on the right.
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Can light from a light bulb cause skin cancer?
Answer:
Yes
Explanation:
Light Bulbs emit UV radiation which can cause skin cancer.
Irene has excellent fine motor coordination. In what activity would she MOST likely excel based on this skillset?
A.) Walking
B.) Doing gymnastics
C.) Playing the piano
D.) Swimming
Answer: C) Playing the piano
Explanation: Someone with excellent fine motor coordination would be good at things that require being precise and having good hand coordination, therefore they would most likely excel at playing the piano.
The correct answer to this question would be option (c) Playing the piano
The ability to coordinate eye and hand movements in order to perform accurate manipulative motions is known as fine-motor coordination. It necessitates controlling the body's small muscles (eye-hand coordination). The instinctive aversion and grabbing responses, which consolidate and get better with time and experience, seem to be the earliest forms of fine-motor control.
The bulk of manipulating operations need the coordination of two hands. These are referred to as bi-manual actions. Uni-manual actions are tasks that only use single hand, such as opening doors. Writing by hand or drawing are examples of the visual group of manipulating actions.
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1. An object is moving with an acceleration of 2 m/s². What will the acceleration be if
the force applied to the object is tripled? Explain.
Show work
Answer:
Vegas for a week or two and I deserve it to me right next to me right next to me.
Explanation:
no exceptions
The luminosity of the star Aldebaran is 520 times
that of the Sun. The wavelength of light at peak
intensity for Aldebaran is 740 nm and the wavelength
of light at peak intensity for the Sun is 500 nm.
a Explain whether Aldebaran is cooler or hotter
than the Sun.
b Calculate the ratio:
radius of Aldebaran / radius of the Sun.
Since the wavelength for Aldebaran is longer then, it is cooler than the Sun. The ratio of the radiuses is 22.8
How to calculate ratio?a) The temperature of a star can be determined by its peak wavelength of light emission, which is related to its luminosity. The hotter the star, the shorter the peak wavelength of light. Since the wavelength of light at peak intensity for Aldebaran is longer (740 nm) than that for the Sun (500 nm), we can conclude that Aldebaran is cooler than the Sun.
b) The radius of a star can be related to its luminosity through the equation L = 4πR^2σT^4, where L is the luminosity, R is the radius, σ is the Stefan-Boltzmann constant, and T is the temperature. Since the luminosity of Aldebaran is 520 times that of the Sun, we have the equation ratio: R_Aldebaran / R_Sun = sqrt(L_Aldebaran / L_Sun) = sqrt(520) = 22.8.
Thus, the ratio of the radius of Aldebaran to the radius of the Sun is 22.8.
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Marco wants to ask Ava out on a school date. He is excited at the prospect of spending time with her but is nervous that she will reject him. What type of conflict is this? A. Approach-Avoidance B. Double Approach-Avoidance C. Avoidance-Avoidance D. Approach-Approach
The kind of conflict that Macro is facing is called Double Approach-Avoidance. Option B
What is a conflict?We have to know that we talk about a conflict when we do have doubts about the course of action that we would need to take. Thus there is a conflict when you are not sure that the path that you propose to take in a given case would be the right path that would bring the result that you are expecting to have and this would bring about the existence of some kind of doubts in the mind.
In this case; Marco wants to ask Ava out on a school date. He is excited at the prospect of spending time with her but is nervous that she will reject him. This would then arouse some kind of conflict in his mind and this is the kind of conflict that we are trying to describe here.
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how far will a rolling wheel travel if it completed 32 revolutions with a radius of 0.8 meters?
Answer: The wheel will travel 102.72 meters if it completes 32 revolutions with a radius of 0.8 meters. ✅
Explanation:
A rolling wheel will travel a certain distance when it completes a certain number of revolutions. To calculate the distance, you need to know the number of revolutions and the radius of the wheel.
In this case, the wheel completed 32 revolutions and the radius is 0.8 meters. To calculate the distance, we will use the formula:
Distance = 2 * pi * radius * number of revolutions
So the distance this wheel will travel is:
Distance = 2 * 3.14 * 0.8 * 32
Distance = 102.72 meters
So the wheel will travel 102.72 meters if it completes 32 revolutions with a radius of 0.8 meters.
X-rays produced in the dentist's office typically have a wavelength of 0.30nm .What is the frequency of these rays? f=_______Hz
The frequency of these rays will be 3.33Hz
What does wavelength mean?
A waveform signal that is carried in space or down a wire has a wavelength, which is the separation between two identical places (adjacent crests) in the consecutive cycles.
The frequency is measured in cycles per second and represents the number of vibrations that pass over a specific area in one second (Hz). The relationship between frequency and wavelength is inversely proportional. Less frequency corresponds to a longer wavelength and vice versa. The relationship between these two parameters is justified by the fact that a wave's speed is equal to the product of its frequency and wavelength.
Given,
Wavelength is 0.30nm
Frequency will be 1/wavelength
f= 1/0.30
f=3.33Hz
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The diagram shows a car and a van, just before and just after the car collided with
the van.
Mass = 1200 kg
v = 10 m/s
(1)
Mass=3200 kg
v=0m/s
BAPTI
v=2m/s
After collision
Use the information in the diagram to calculate the change in the momentum
of the car.
Show clearly how you work out your answer and give the unit.
Before collision
Change in momentum =
(3)
Change in momentum before collision 12000Kgm/s and velocity of van after collision is 3m/s.
What is momentum conservation and how does it work?According to the rule of conservation of momentum, absent an external force, the combined momentum of two or more bodies operating upon one another in an isolated system remains constant. As a result, momentum cannot be gained or lost. According to the principle of momentum conservation, momentum is only modified by the action of forces as they are outlined by Newton's equations of motion; momentum is never created nor destroyed inside a problem domain.
Momentum before collision=> mava + mbvb
=> (1200 x 10) + (3200 x 0)
=> 12000Kgm/s
Momentum after collision => 2400 + 3200 v(after)
Law of conservation of momentum
12000 = 2400 - 3200 v (after)
=> Velocity after collision acquired by van = (12000-2400)/3200
=> 3m/s
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If a jet plane doubles the speed, the drag force on the jet plane A. decreases by B. depends how many passengers the plane is carrying C. doubled D. quadrupled E. is unchanged
If a jet plane doubles the speed, the drag force on the jet plane, doubled. Option (c) is correct.
What is speed ?
A shift in an object's location, either in direction or speed. How fast something is travelling is determined by how far it has travelled in relation to how long it took. Speed is considered a scalar quantity because it only has a direction and no magnitude.
What is force ?
When an object interacts with another object, it experiences a push or pull known as a force. Every time two objects come into contact, a force is applied to each one of them. Actual forces can only be created by interaction.
Drag force on the plane is proportional to the square of the planes speed
F₁ ∝ v²
Ff ∝ (2V)²
From the above two equations, it is clear that the ratio of the drag forces will be
Ff/ F₁ = 4V²/ V²
Ff = 4F₁
Hence the drag force will be the four times of the initial drag force when the speed of the plane doubles.
Therefore, If a jet plane doubles the speed, the drag force on the jet plane, doubled. Option (c) is correct.
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Looking at the ground beside a moving vehicle helps you judge its__________.
Options:
size
Blind spots
proximity
speed
weight
By looking at the ground beside a moving vehicle helps we can judge its speed and tell how fast it is moving.
What exactly is speed?
The rate at which an object's position changes, measured in metres per second, is referred to as speed. For instance, if an object begins at zero and moves three metres in three seconds, its speed is one metre per second. The formula for speed is straightforward: distance divided by time.
The rate at which an object moves from one position or location to another is referred to as its speed. Examine the definition of speed and use the steps provided to calculate an object's average speed.
The average speed of an object is the total distance travelled divided by the time required to travel that distance. It is a scalar quantity, which means that its only definition is magnitude.
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How is using the stairs similar and different from using a ramp to get into a building
The difference between steps and stairs can be seen in how they are comparable to and different from using a ramp to enter a building. In contrast to a stair, which has two or more risers, a step is the portion of a movement that elevates or descends by simply one riser.
How are utilizing stairs and using a ramp alike and different?Stairs can be built anywhere there is a height difference between landings, and they only occupy a small amount of space. However, ramps require significantly more space to allow for the proper climb.
It is more efficient to climb steps than than a ramp since it requires less energy. Ramps that are as steep as a standard flight of stairs are also challenging to climb. Because it requires more distance (and walking time) to reach the same height as steep stairs, very shallow slopes require overall more energy.
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an object is moving at 18 m/s at an angle of 220 ∘ counterclockwise from the x axis.
The components of the velocity vector of counterclockwise are:
vx = -12.6 m/s
vy = -16.3 m/s
What is counterclockwise?
Counterclockwise is the direction opposite to that of the rotation of a clock's hands. It is the opposite of clockwise, which is the direction of the rotation of a clock's hands. Counterclockwise movement or rotation is often abbreviated as CCW. In mathematics, counterclockwise is referred to as the positive rotational direction. In engineering, the direction of rotation of a motor or other device is usually indicated by the letters CW for clockwise and CCW for counterclockwise. It is also commonly referred to as the anti-clockwise direction. Counterclockwise motion is often used in mechanical systems to prevent the buildup of friction and wear on components. Additionally, this motion may be used to reduce the chance of clogs or jams in machines with moving components.
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Question 14 (#922738) (Lenses) If an object is placed inside the focal length of a converging lens, will the magnification be: Select the correct answer
O M 0, IMI 1
O M<0, IMI < 1
O M> 0, IMI < 1
O M>0, IMI > 1
Option 4 is the correct answer .
What is lens ?
A lens is a transparent material, usually circular, with two polished surfaces, one or both of which are curved, either convex (curved) or concave (deep). Curves are almost always spherical. That is, the radius of curvature is constant. Lenses have the valuable property of producing images of objects in front of us. Singlet lenses are used in eyeglasses, contact lenses, pocket magnifiers, projection condensers, signal lights, viewfinders, and simple box cameras
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How can a simple fixed pulley make a job easier? (1 point)
O by decreasing the distance that the force needs to be applied
by changing the direction at which the force needs to be applied
O by decreasing the work done
O by decreasing the force required to lift the object
Answer:
A fixed pulley changes the direction of the force you exert by pulling, so you can pull down to move an object up.
Explanation:
By decreasing the work done. A simple fixed pulley reduces the amount of work needed to lift an object by changing the direction of the force applied, so the same force can be used to lift the object with less effort.
What is force?Force is the action of one object upon another. It is a vector quantity, meaning it has both a magnitude and a direction. Forces can cause an object to accelerate, decelerate, or remain in a constant velocity. Examples of forces include gravity, friction, tension, and electric and magnetic forces. The study of forces and their effects is known as mechanics. Forces can act in pairs, such as the forces between two interacting objects, or individually, such as the force of gravity acting on an object. In physics, the force is measured in Newtons (N), and the magnitude of a force is measured in joules (J). Forces can cause changes in the shape or motion of objects.
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what star has a right ascension of 14h 05m and a declination of +65 degrees?
The star with a right ascension of 14h 05m and a declination of +65 degrees is the star Gamma Cassiopeiae.
It is in the constellation of Cassiopeia,this star is approximately 38 light-years away from Earth and is a yellow-white supergiant of spectral type F2. It is one of the brightest stars in the night sky and can be visible to the unaided human eye. Gamma Cassiopeiae is a variable star, meaning its brightness changes over time, and it is classified as an alpha Cygni variable.
It is also known as Navi, which is derived from the Arabic word for "the new one."
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How is the work energy theorem represented as an equation?
Answer:
Trabajo = Δ E
Explanation:
Podemos escribir esta declaración como una ecuación que hace que sea muy fácil ver la relación: Trabajo = Δ E, donde E es energía, y la letra griega Delta significa ‘cambio en’. Entonces leemos esto como: trabajo = cambio de energía. Esto nos ayuda a comprender por qué no se realiza ningún trabajo en una pared que no se mueve.
The work- energy theorem states that the work done by the sum of forces acting on an object is equal to the change in the kinetic energy of the object.
What is work energy theorem ?According to work -energy theorem, the force resulting in a work done which is equal to the change in kinetic energy of the object. When a force applied on a body results in a displacement of the body, it is said to be work done on the body.
Kinetic energy of an object is the energy generated by virtue of its motion. It related to the mass and velocity as written below:
Ke = 1/2 mv²
Let, Vi be the initial velocity and Vf be the final velocity, then the change in kinetic energy is written as:
ΔKe = 1/2 mVf² - 1/2 mVi²
According to wok energy theorem, the work done is equal to the this kinetic energy change.
Hence, W = ΔKe.
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For an RC circuit, find an expression for the angular frequency at which VC=1/2E0.
Express your answer in terms of the variables R, C, and E0.
The angular frequency at which VC=1/2E0 of an RC circuit is √3/RC where R is the resistance and C is the capacitance of the circuit.
Let the voltage across a resistor = Vr
Given The voltage across a capacitor = Vc = 1/2E0
The angular frequency = ω = 2πf
The current in the circuit = I
The permittivity of free space = E0
The resistance of resistor = R
Vc = ω/x = E0/2 then E0 = 2ω/x
We know that E0 = √Vc^2 + Vr^2 such that E0^2 = E0^2/4+Vr^2
Then Vr^2 = 3E0^2/4 such that Vr = √3E0/2
The capacitance (C) can be calculated as: C = Vr/Vc x 1/ωR
ω = (Vr/Vc) x 1/RC = (√3E0/2)/E0/2 x 1/RC
So ω = √3/RC
Hence the angular frequency of an RC circuit is √3/RC
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If a negatively charged rod is held near an uncharged metal ball, the metal ball: 1. becomes positively charged. 2. becomes polar. 3. Effect cannot be determined. 4. becomes negatively charged. 5. is unaffected.
Becomes positively charged: If a negatively charged rod is held near an uncharged metal ball, the metal ball
What is metal ball ?
A metal ball is a spherical object made of metal, typically used in engineering and construction. Metal balls are often used as components in mechanical systems such as bearings, valves, and locks, as well as in arts and crafts.
They can also have decorative purposes, such as in furniture or jewelry. Metal balls are available in a variety of metal alloys and sizes, and can be machined, stamped, cast, or formed into shapes. Metal balls are often used to reduce friction in machines, as well as to transfer energy from one part of a system to another.
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The figure above shows four very thin parallel planes of charge with equal separation between them. The charge density on plate 1 is -2 ?. The charge density on plate 2 is 3 ?. The charge density on plate 3 is -5 ?. The charge density on plate 4 is 1 ?. Your answers for the electric field must include the correct sign. We choose positive electric field along the positive x-direction.
The electric field of four very thin parallel planes of charge with equal separation between them is 0.33 x 10-7N/C.
Given The charge density on plate 1 is -2σ
The charge density on plate 2 is 3σ
The charge density on plate 3 is -5σ
The charge density on plate 4 is 1σ
We know that electric field due to each plate is E = σ/2ε0 where σ is the surface charge density and ε0 = 8.854 x 10-12 C^2/m.
The total surface charge density (σ) = -2+3-5+1 = -3σ
E = -3 x 10^-19/8.85 x 10^-12 = -0.33 x 10^-7N/C
Hence the electric field on each plate = 0.33 x 10-7N/C
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when heat is absorbed by the system and work is done by the system on the surroundings then
A. q is negative and w is positive.
B. both q and w are positive.
C. both q and we are negative.
D. q is positive and w is negative.
E. both q and Ware zero.
Q and w are both zero. Option C provides the right response. When the heat is expelled from the system, the unit of q will be negative.
On the other hand, if the system is able to absorb the heat, the unit of q will be positive. The system has an adiabatic wall if no heat is taken in from the environment yet work is still done on the system. A thermal barrier known as an adiabatic wall restricts heat passage from one side to the other. The system's absorption of heat is positive. Heat that is emitted into the environment is harmful. Work being done on the system is showing promise.
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The motion of a particle is given by x = A sin3(ωt).
(a) Enter an expression for the amplitude of the particle's motion.
(b) Enter an expression for the particle's velocity, v.
(c) Enter an expression for the particle's acceleration, a.
you cannot use v in the answers, and all trig functions can only contain (ωt).
The motion of a particle is given by x = A sin3(ωt) where the amplitude is
x/sin3(ωt).
What does a SHM's amplitude mean?The largest deviation a particle makes from its typical position is the amplitude of a SHM. A point on a vibrating body or wave can move as far or as far from its equilibrium position as possible, or at its greatest amplitude. The length of the vibration route is divided in half by this value.
b) The expression for the particle's velocity
=> sin^-1(x)/3t.
c) The expression for the particle's acceleration
=>ωt = a = sin^-1(x)/3.
How do angular velocity and acceleration relate?The rate at which angular velocity changes is referred to as angular acceleration. In an equation, angular acceleration is written as follows: = t, where t is the change in time and is the change in angular velocity.
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Above figure shows a light extended spring exerting a force Fs to the left on a block.
(i) Does the block exert a force on the spring? Choose every correct answer.
(a) No, it doesnt.
(b) Yes, it does, to the left.
(c) Yes, it does, to the right.
(d) Yes, it does, and its magnitude is larger than F s.
(e) Yes, it does, and its magnitude is equal to Fs
.
Option - C and E : The force of block on spring is equal in magnitude and opposite to the force of spring on block.
In straightforward situations, a light force is defined as radiation pressure that exerts a force in the direction of the absorbed light's propagation. However, the direction of the effective force might also differ from the direction of the propagation. In addition to energy, photons can carry momentum. Consequently, if a particle absorbs light or modifies its path, momentum is transmitted (i.e., a force is applied). The tails of comets, which always appear on the side facing the Sun and are made up of dust particles driven away by the light, are one example of the effects caused by such light forces.
The rules of electromagnetism demonstrate that whenever electric charge sources like electrons are accelerated, the resulting energy is transformed into waves.
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how many electrons are in a +3 cation with an atomic number of 13?
Aluminum has an atomic number of 13. This implies that the Al3+ ion contains the same number of electrons as (13-3 = 10) electrons.
A cation is a positively charged ion, to be more precise. An atom must lose an electron in order to become positively charged. The electronic configurations of an element with atomic number 13 are 2, 8, and 3. Thus, the atom of this element has three electrons in its valence shell. This atom has the valence M. The second element in the periodic table's thirteenth column is aluminum. It is categorized as a "poor metal" and a post-transition metal. 13 protons and 13 electrons make up an aluminum atom. The outer shell has three valence electrons.
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A projectile is launched from point A with the initial conditions shown in the figure. Determine the slant distance s which locates the point B of impact. Calculate the time of flight t.
The torque about the axis of rotation on the left produced by force F1onB is 600 Nm and the torque about the axis of rotation on the left produced by force F2onB is also 600 Nm. Force F3onB must be exerted at a distance of 0.5 m from the axis of rotation to balance the torques produced by F1onB and F2onB.
F1onB Torque: 600 Nm
F2onB Torque: 600 Nm
F3onB Distance: 0.5 m
1. To determine the torque about the axis of rotation on the left produced by force F1onB, we need to calculate the moment arm. The moment arm is the perpendicular distance from the axis of rotation to the line of action of the force. The moment arm for F1onB is 0.5 m, so the torque produced by F1onB is 600 Nm (F1onB x Moment Arm).
2. To determine the torque about the axis of rotation on the left produced by force F2onB, we need to calculate the moment arm. The moment arm for F2onB is 0.5 m, so the torque produced by F2onB is also 600 Nm (F2onB x Moment Arm).
3. To determine the distance from the axis of rotation at which F3onB must be exerted to balance the torques produced by F1onB and F2onB, we need to use the equation Torque = Force x Moment Arm. Since the total torque must equal 0, we can set up the following equation: 600 Nm + 600 Nm + (F3onB x Moment Arm) = 0. Solving for the Moment Arm, we get Moment Arm = -0.5 m, which is the distance from the axis of rotation at which F3onB must be exerted to balance the torques produced by F1onB and F2onB.
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Surprisingly, very few athletes can jump more than 2 feet (0.6m)straight up. Use d= 1/2 gt squared and solve for the time onespends moving upward in a 0.6 m vertical jump. Then double it forthe Hand time the time ones feet are off the ground?
0.7 sec is total time in air .
What is acceleration due to gravity ?
Gravitational acceleration is the acceleration experienced by an object due to gravity. Its SI unit is m/s2. It is vector magnitude because it has both magnitude and direction. The standard value of g on the surface of the earth at 0m above sea level is 9.8m/s2. Suppose an object [test mass (m)] is moved from a height "h" above the ground [source mass (M)], and as it approaches the ground it begins to move downwards, increasing its velocity. We know that the velocity of an object changes only under the action of a force. In this case the force is provided by gravity.
Under the action of gravity, the object begins to accelerate towards the center of the earth. The center of the Earth is at a distance "r" from the test mass. Then ma = GMm/r2 (applies the equivalence principle)
⇒ a = GM/r2 . . . . . . (1)
The above acceleration is due to the earth's gravitational pull, so we call it the gravitational acceleration and it does not depend on the test mass. The value near the ground is 9.8 ms-2. Therefore the acceleration due to gravity (g) is given by = GM/r2.
0.6m is the distance traveled vertically upwards
and as the acceleration is uniform we have 0.6=0.5*9.8*t*t
hence we have t, the time spent moving upwards is
0.35sec
the double of it 0.7 sec is total time in air
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The radius of the London Eye, a huge observation wheel on the banks of the Thames, is 67.5 m and its mass is 1.90 x 106 kg. The cruising angular speed of the wheel is 3.62 x 10-3 rad/s. Problem 08.029.a - Work done by the motor How much work does a motor need to do to bring the stationary wheel up to cruising speed?
Work done by the motor of London eye wheel is 5.67 x 10^4 J
How does physics apply to wheels?For two reasons, dragging a load on wheels is much simpler than dragging it on the ground. Rotors lessen friction. The wheels dig in and rotate around strong rods called axles rather than just gliding over the surface.
I = mr2 = 1.9 x 10^6 x (67.5)2
=> 8.65 x 10^9
Work done => 1/2 x 8.65 x 10^9 x (3.62 x 10^-3)2
=> 5.67 x 10^4 J
What does angular velocity ω mean?Since the radian is a dimensionless quantity and the SI unit of angular velocity is radians per second, the SI units of angular velocity can be written as s1. The Greek letter omega (or, occasionally, ) is used to denote angular velocity.
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Rank the following capacitors on the basis of the dielectric constant of the material between the plates. Rank from largest to smallest. To rank items as equivalent, overlap them.
Rank of the capacitors are 6 > 4 > 1 > 3 > (2 = 5)
What is Capacitor?
A two-terminal electrical device known as a capacitor is capable of storing energy in the form of an electric charge. It is made up of two electrical wires that are spaced apart by a certain amount. Vacuum may be used to fill the space between the conductors, or a dielectric, an insulating substance, may be used instead
Pairs of opposing charges are held apart in capacitors to store energy. A parallel plate capacitor has the most basic design and is made up of two metal plates with a space in between them. However, many capacitor types are produced in a wide variety of shapes, sizes, lengths, girths, and materials.
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