Mechanical energy is the energy that machines use to do work and levers are a machine that increases force sleever that increases speed.
There are two types of hydroelectric power projects is conventional and pumped storage. In a conventional hydroelectric facility, water passes from the intake and out the outflow one time.
In a pumped storage facility, water may pass through the turbine multiple times. The operation of a hydropower project, like any power plant, may generate solid and industrial wastes.
Hydroelectric power generation decommissioning includes waste management of any reservoir sediments, especially where power plant placement is downstream from significant industrial or natural environmental hazard sources.
In Hydroelectric power generation, kinetic energy of the water is converted into the mechanical energy of the turbine which further converted into the electrical energy.
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The overall length of a piccolo is 32.0 cm. The resonating air column vibrates as in a pipe that is open at both ends.Find the frequency of the lowest note a piccolo can play, assuming the speed of sound in air is 340 m/s. Opening holes in the side effectively shortens the length of the resonant column. If the highest note a piccolo can sound is 4000 Hz, find the distance between adjacent antinodes for this mode of vibration.
The lowest note a piccolo can play has a frequency of (f)= 531.25 Hz. and for this mode of vibration, the distance (d) between neighboring antinodes is equal to 4.25 cm.
(a)The formula f = v/2L can be used to determine the frequency of the lowest note a piccolo can play
where v = 340 m/s, the speed of sound in air and
L is length = 32 cm is equal to 0.32 meters as given ,
therefore f = 340/(2 * 0.32)
f = 531.25 Hz
(b) The wavelength formula is λ = v/f.
Thus; λ = 340/4000 \s
λ = 0.085 m
Now, for the specified mode of vibration,
the distance between consecutive antinodes is given by (d )= λ/2 = 0.085/2
d = 0.0425 m.
As a result, d = 4.25cm
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he pushed the car beyond the tollgate and poured a bucket of water on the smoking hood. previousnext
He moved the car past the toll booth and doused the flaming hood with water using the comma.
What makes water vital to life?Chemical processes are necessary for life to produce energy, grow, and eliminate waste. Water is a liquid that facilitates the chemistry of life. Additionally, because it is a polar molecule, most other molecules can dissolve in it. As a result, we refer to water as a "solvent".
How does science define water?Water is a substance that exists in gaseous, fluid, and solid phases and is made up of the molecular elements both hydrogen and oxygen. One of the prevalent and necessary substances is it. a liquid that is flavorless and odorless at ambient temperature.
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TRUE/FALSE. since magnetic fields of a coil of wire and a bar magnet are identitcal are there loops of current inside natural magnetic materials like iron or cobalt
Are current loops present inside naturally magnetic materials like iron or cobalt because the magnetic fields of a coil of wire and a bar magnet are identical. The given statement is true.
What is magnetic fields?
The magnetic impact on moving electric charges, electric currents, and magnetic materials is described by a magnetic field, which is a vector field. A force perpendicular to the charge's own velocity and the magnetic field acts on it while the charge is travelling through a magnetic field.
Thus, a bar magnet is quite different from an electromagnet, and its magnetism is due to electron spins, not electric currents. Spins of electrons in neighboring atoms are aligned by the exchange interaction, which is a consequence of the Pauli exclusion principle.
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the difference between eps (earnings per share) and ffo (funds from operations) is the interest deduction. True or False?
The given statement about EPS ( earnings per share) and FFO (funds from operations) is false. They are not interest deduction.
Net operating income is represented by EPS. Taxes and preferred dividends are factored into FFO (funds from operations), which also leverages them. Cash flow is not a factor in FFO. Net income to the number of outstanding shares is expressed as an EPS ratio. As previously indicated, companies may add FFO per share to their EPS.
Net income divided by the number of outstanding equity shares is earnings per share for a business. The amount of income being produced on a per-share basis is measured by EPS and FFO per share. the income per share. The company's profit, which belongs to the common shareholders, is measured in terms of earnings per share.
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earth's atmosphere is most transparent to all wavelengths of light. earth's atmosphere is most transparent to all wavelengths of light. infrared visible x-ray ultraviolet both visible and ultraviolet
Earth's atmosphere is transparent for waves like visible light and microwaves is correct statement.
A wave is a planned, systematic transfer of disturbances from one place to another. In addition to the waves that move across the water's surface, which are the most well-known waves, there are also waves in sound, light, and the motion of subatomic particles. In the simplest waves, the disturbance oscillates repeatedly at a fixed frequency and wavelength (see periodic motion). Mechanical waves, like sound, need a medium to move, in contrast to electromagnetic waves, which can do so in a vacuum and do not need one (see electromagnetic radiation). How a wave moves through a medium depends on its properties.
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Free-body diagrams are diagrams used to show the relative magnitude and direction of all forces acting upon an object in a given situation. A free-body diagram is a special example of the vector diagrams that were discussed in an earlier unit. These diagrams will be used throughout our study of physics. The size of the arrow in a free-body diagram reflects the magnitude of the force. The direction of the arrow shows the direction that the force is acting. Each force arrow in the diagram is labeled to indicate the exact type of force. It is generally customary in a free-body diagram to represent the object by a box and to draw the force arrow from the center of the box outward in the direction that the force is acting. An example of a free-body diagram is shown at the right The free-body diagram above depicts four forces acting upon the object. Objects do not necessarily always have four forces acting upon them. There will be cases in which the number of forces depicted by a free-body diagram will be one, two, or three. There is no hard and fast rule about the number of forces that must be drawn in a free-body diagram. The only rule for drawing free-body diagrams is to depict all the forces that exist for that object in the given situation. Thus, to construct free-body diagrams, it is extremely important to know the various types of forces. If given a description of a physical situation, begin by using your understanding of the force types to identify which forces are present. Then determine the direction in which each force is acting. Finally, draw a box and add arrows for each existing force in the appropriate direction; label each force arrow according to its type. If necessary, refer to the list of forces and their description in order to understand the various force types and their appropriate symbols.
A visual, dematerialized, symbolic depiction of the body (a structure, element, or fragment of an element) in which all connecting "parts" have been eliminated is known as a free-body diagram.
A diagram that changes when the issue is resolved is called a free-body diagram. A free body diagram often includes the following elements:A condensed form of the body (most commonly a box).A coordinate framework.Arrows showing in the direction in which forces operate on the body are used to depict forces.Moments appeared as curved arrows pointing towards the body's acting direction.The specific problem and the presumptions used will determine how many forces are operating on a body. Friction and air resistance are frequently ignored.
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which of the following is Not a load in an electrical circuit. a. bulb b. electric fan c. oven d.wire
I am pretty sure that it's the oven
figure 21-5b shows the concentration profile of a band of material after it has traveled through a column for 2 min and for 26 min. why is the band broader after 26 min? (b) explain why a chromatographic separation normally has an optimum flow rate that gives the best separation.
The broader band because of mobility of ions and because of peaks developed it has optimum flow rate.
There are two characteristics of the concentration profile that are important in determining the efficiency of a column and its ability to separate or separate subsequent solute zones. The first peak maximum refers to the position of maximum concentration in the peak. To obtain sufficient resolution, the maxima of two adjacent peaks must be separated from each other. Such separations depend on the nature of the solutes and the selectivity of the stationary and mobile phases.
A second characteristic that is important for efficiency and resolution is peak width. Peaks with distant maxima are still broad and may not fully resolve the solutes. For this reason, peak width is very important in chromatography.
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which of the following parameters affect the root-mean-squared (rms) speed of a sample of a pure substance in the gas phase?
The root-mean-squared speed of a sample of a pure substance in the gas phase is effected by a)temperature of the sample. So, correct option is A.
Genuinely, the root mean square (RMS) is the square foundation of the mean square, which is the number-crunching mean of the squares of a gathering of values. RMS is likewise called a quadratic mean and is an exceptional instance of the summed up mean whose example is 2. Root mean square is likewise characterized as a changing capability in view of a vital of the squares of the qualities which are quick in a cycle.
As such, the RMS of a gathering of numbers is the square of the number-crunching mean or the capability's square which characterizes the persistent waveform.
RMS is given by the below formula,
[tex]v_r_m_s[/tex] =√3KT/m
where K is Boltzmann constant,
T is the temperature,
and m is called as mass of the gas particle.
Hence, correct option is A.
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(Complete question) is:
Which of the following parameters affect the root-mean-squared (rms) speed of a sample of a pure substance in the gas phase?
a)temperature of sample
b)boltzmann constant
c)both a and b
d)None of the above.
A charged insulator can be discharged by passing it just above a flame. This is because the flame
A warms it
B dries it
C contains carbon dioxide
D contains ions
Passing an insulator just over a flame will cause it to discharge if it is charged. This is due to the presence of ions in the flame.
The Correct Answer is D.
What does a ion contain?An atom is referred to as an ION when it is drawn to another atom as a result of having an uneven number of protons and electrons. It is referred to be an anion or a negative ion if the atom contains more electrons than protons. An ion is a positive ion if it has more protons than electrons.A solution that typically has ions—atoms or molecules that have received or lost electrons—and is electrically conductive is referred to as an electrolyte solution. However, there are some situations when the electrolytes are not ions, despite the fact that they are frequently referred to as ionic solutions for this reason.To Learn more About ions refer To:
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A 240 lb force (P) directed vertically downward is applied to the toggle vise at C. Knowing that link BD is 6 in long and that a=4 in. determine the horizontal force exerted on block E. (Round the final answer to two decimal places).
The horizontal force exerted on block E is ( )lb.
The horizontal force applied on block E is 1343.89 lbs
Let [tex]E_{y}[/tex] and Eₓ are reactions and AD=d, now as ∑[tex]M_{A}[/tex]=0=D
[tex]E_{yx}[/tex]d = [tex]P_{x}[/tex]d=D[tex]E_{y}[/tex]=P=240lbs
BB'=a×sin15°
=1.035m
B'E=6×cos15°
now,∑[tex]M_{B}[/tex]=0
Eₓ×BB'=[tex]E_{y}[/tex]×B'E
Eₓ=240×5.795/1.035
Eₓ=1343.89 lbs
Any action that seeks to preserve, modify, or deform a body's motion is considered to be a force in mechanics. The concept of force is typically described in terms of Isaac Newton’s three laws of motion set forth in his Principia Mathematica (1687). (1687). Newton's first law states that until a force is applied to a body, it will remain in either its resting or uniformly moving state in a straight path. The second law indicates that when an external force acts on a body, it creates acceleration.
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5. A 1500-kg car makes a u-turn with a radius of 25m. If the coefficient of static friction between the tires and the road μs = 0.42, what is the greatest speed the car can have without skidding (m/s)?
The maximum speed of the car was found to be 10.14 ms-1.
Define coefficient of static friction ?
A number that expresses how sticky an object is to its contact surface while it is stationary is known as the coefficient of static friction.
It is the ratio of the normal force imposed on the body to the static friction present between two contact surfaces.
Consider the three categories of dry friction: rolling friction, kinetic friction, and static friction.
Generally speaking, rolling friction and kinetic friction coefficients are lower than the coefficient of static friction.
Because static friction is greater than kinetic friction and rolling friction, this is the case.
This suggests that if an item is immobile, it will take greater effort to start it moving.
Rolling friction often has the least friction since it is greater in kinetic friction than rolling friction.
Fr=μs|n|
g=9.81
Fc=mv^2max/R
mv^2max/R=μsmg
v^2max=μsgR
vmax=√(0.42)(9.81)(25)
=√103.005
vmax =10.14 ms-1
The maximum speed of the car was found to be 10.14 ms-1.
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May someone please give me a hand?
circuit diagram
this is a circuit diagram
light of 650 nm wavelength illuminates two slits that are 0.21 mm apart. (figure 1) shows the intensity pattern seen on a screen behind the slits.
The distance of the screen is 107.7 meter.
What is interference of light?
When two coherent light waves from separate sources collide, the energy distribution caused by the first wave is altered by the second. The term "interference of light" refers to this alteration in the distribution of light energy brought on by the superposition of two light waves.
Given that: wavelength of light: λ = 650 nm = 650×10⁻⁷ cm.
separation between two slits: d = 0.21 mm = 0.021 cm.
According to fig. separation between two bright fringe: x = 1/3 cm
Now, from x = λD/d we get:
separation between the screen and the slits: D = xd/λ.
= (1/3× 0.021)/ 650×10⁻⁷ m
= 107.7 meter.
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tycho brahe's contributions to astronomy include group of answer choices inventing the telescope observing the phases of venus, putting the nail in the coffin for geocentrism developing the theory of gravity making observations and collecting data used later by kepler to develop laws of planetary motion all of the above
Tycho Brahe made contributions to astronomy by making observations and gathering data that were later used by Kepler to develop laws of planetary motion.
Another one of the answer options in this group is creating the telescope. Kepler's first law states that all planets have elliptical orbits around the sun with the sun at one of the foci. Perihelion is the name given to the point when a planet is closest to the sun, and aphelion to the point when it is farthest away. A telescope is a tool used to observe far-off objects using their electromagnetic radiation emission, absorption, or reflection. originally exclusively referring to an optical device that observes far-off objects using lenses, curved mirrors, or a combination of the two.
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a man enters a tall tower, needing to know its height. he notes that a long pendulum extends from the ceiling almost to the floor and that its period is 19.7 s.
Time period of the pendulum, T = 19.7 s
The time period of the pendulum is given by :
T = [tex]2\pi \sqrt{\frac{l}{g} }[/tex], l is the length of the pendulum
substituting,
l = 174.32 meters
What is the time period?
Time period (plural time periods) is the amount of time that a behavior lasts or a condition persists. Depending on the type of activity or situation under consideration, it may be measured in seconds or in millions of years.
Hence, the answer is 174.32 m
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a spherical balloon has a radius of 7.55 m and is filled with helium. the density of helium is 0.179 kg/m3, and the density of air is 1.29 kg/m3. the skin and structure of the balloon has a mass of 970 kg . neglect the buoyant force on the cargo volume itself.
The total lift of the balloon is 1,411.74 kg
Step 1: Calculate the volume of the balloon:
V = 4/3πr^3
V = 4/3π*7.55^3
V = 1,630.64 m^3
Step 2: Calculate the mass of the helium:
m_He = V*d_He
m_He = 1,630.64 m^3*0.179 kg/m^3
m_He = 291.33 kg
Step 3: Calculate the mass of the air displaced by the helium:
m_air = V*d_air
m_air = 1,630.64 m^3*1.29 kg/m^3
m_air = 2,090.41 kg
Step 4: Calculate the total lift of the balloon:
Lift = m_He + m_air - mass_skin_structure
Lift = 291.33 + 2,090.41 - 970
Lift = 1,411.74 kg
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radioactivity is characterized by order kinetics, so the rate of decay in a particular sample the number of nuclei present.
Since the decay rate is dependent upon the number of radioactive atoms, in terms of chemical kinetics, one can say that radioactive decay is a first order reaction process.
What is radioactivity ?
Radioactive decay is the loss of elementary particles from an unstable nucleus, ultimately changing the unstable element into another more stable element. There are five types of radioactive decay: alpha emission, beta emission, positron emission, electron capture, and gamma emission. Each type of decay emits a specific particle which changes the type of product produced. The number of protons and neutrons found in the daughter nuclei (the nuclei produced from the decay) are determined by the type of decay or emission that the original element goes through.
Also, radioactive decay is an exponential decay function which means the larger the quantity of atoms, the more rapidly the element will decay. Mathematically speaking, the relationship between quantity and time for radioactive decay can be expressed in following way:
dN/dt=−λN
or more specifically
dN(t)/dt=−λN
or via rearranging the separable differential equation
dN(t)/N(t)=−λdt
by Integrating the equation
lnN(t)=−λt+C
with
C is the constant of integration.N(t) is the amplitude of N after lapse of time t.λ is the decay rate constant.To know more about radioactivity, visit:
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somebody please helpppp
Answer:
6 is Electrical
1 is Thermal
13 is Mass and Acceleration
3 is Force and Distance
2 is Work and Time
4 is Mechanical
Explanation:
NOTE: Sorry if I missed any and sorry if some aren't correct, but I think they are :)
Determine the equivalent spring constant , keq of the system shown. Motion is constrained to be inn vertical direction only.If m=10 kg and k=100 N/mm what is the equilibrium position of m and the force in the spring 1.
The equivalent spring constant, (Keq) is 3.4K. And 2.885mm is the equilibrium position of m and the force in spring 1.
What is the Spring constant?
The term "spring constant" refers to the proportional constant k. It gauges the stiffness of the spring. A spring exerts a force F = -kx in the direction of its equilibrium position when it is stretched or compressed to a length that differs by an amount x from its equilibrium length.
Calculation:
Given
K1 = K2 = K3 = K4 = K5 = K6 = K7 = K8 = K9 = K10 = K11 = Keq
Wherein K3, K4, K5 and K10 are in parallel
This Keq = K3 + K4 +K5 + K10
Keq = 4K
K1 and K7 are in series so Keq'= K/2
Keq' and K11 are in parallel Keq" = 3K/2
Keq" And K8 are in series = Keq"'= {(3K/2) * K}/ {(3K/2) + K} = 3K/5
4K and K6 are in series Keq""= 4K/5
Keq = (3K/5) + K + (4K/5) = 3.4K
Now,
m= 10kg and k = 100N/m
mg = Keq (x)
x = mg/Keq
x = 10 * 9.81/3.4
x = 2.885mm.
Hence, the equivalent spring constant, (Keq) is 3.4K. And 2.885mm is the equilibrium position of m and the force in spring 1.
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ight with a frequency of 5.9 x1014 hz travels in a block of glass that has an index of refraction of 1.51. A) What is the wavelength of the light in vacuum ? | B) What is the wavelength of the light in the glass?
The wavelength in a vacuum is 5.08 x 10-7 m and the wavelength of the light in the glass is 3.367 x 10-7 m
As we know that
Velocity = wavelength x frequency
So, wavelength = Velocity / frequency
If the light travels in a vacuum,
Then, wavelength = speed of light/frequency
Here the frequency is 5.9 x1014 Hz
And the speed of light = 3 x 10 8 m/s
So, wavelength in vacuum = 3 x 10 8 / 5.9 x1014
= 5.08 x 10-7 m
Again, the wavelength of the light in the glass
λ=c/μn where μ is a block of glass that has an index of refraction
Then λ=(3 x 10 8 )/(1.51x5.9 x1014 )
= 3.367 x 10-7 m
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Figure shows (Figure 1) a low-pass filter; the output voltage is taken across the capacitor in an L-R-C series circuit Part A Derive an expression for Vout/Vs, the ratio of the output and source voltage amplitudes, as a function of the angular frequency w of the source OV = wc R+W L- e a dew.L everyone 0 o Vot wc/r-wc-a wC /Re-(w 'wc/r+(w It is 1 Vout = Submit Request Answer Figure < 1 of 1 Part B Find an expression for Vout/V, when w is large. 0 1 0 ) (LC HE V O (LC) 0000 O (LC) w2
The output voltage is measured across the capacitor in an L-R-C series circuit, and the expression for Vout/vs for a low-pass filter is 1/(1-w^2lc + (wcR)^2. depending on the angular frequency.
A linear shunt regulator's output voltage (LSR) is defined as the difference between the input voltage and the sum of the current flowing through the shunt resistance, and it is denoted by Vo = Vi- (io+Ish)*Rsh or output voltage = input voltage- (output current + shunt field current)*shunt field resistance. The angular frequency, also known as the angular frequency vector, is the size of the vector quantity called angular velocity. The rotational speed of an object is measured by its angular frequency. It is helpful in many scientific and mathematical fields since it makes it possible to comprehend a wide range of physical world objects' qualities.
Vout = Vs/(R+jwl+1/jwc)
Vout/vs = 1/(1-w^2lc + (wcR)^2
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everything looks red through a red filter because everything looks red through a red filter because the filter reflects red light and transmits other colors. the filter emits red light and absorbs other colors. the filter absorbs red light and emits other colors. the filter transmits red light and absorbs other colors.
Everything looks red through a red filter because the filter transmits red light and absorbs other colours
The perception of colour is generated because of the difference in the frequencies or wavelengths of light that enter into our eyes. Different colours are characterized by different frequencies.
The colour of light reflected back by an object determines the colour of that object. For example, if an object absorbs all the colours of white light except red, then it will appear red in colour. If the light striking that object does not contain a red component, then no light will be reflected by the object and that object will appear black in colour.
Similarly, a filter works by filtering out one or more colours from light that passes through it. The colour that appears through a filter is the one that is allowed by a filter.
Hence, a red filter will only allow red light to pass through it and will block out the rest.
So, Option (d) is the correct choice.
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What are organisms that make their own food called a consumers B carnivores C omnivores D producers?; What capture energy from the sun and make their own food?; Which rely on other organisms for their energy and food supply?; Which organisms are producers in this food web Why are they considered producers?
The organisms that make their own food are called producers because the capture energy from the sun and make their own food. Consumers rely other organisms for their energy and food supply. The organisms that are producers are plants.
In the food web There are several levels in which organisms are divided into producer and consumers. The consumers are those which rely on other organisms for their food energy supply.
The producers are those organisms which make their own food by capturing the energy from the Sun and performs photosynthesis for their food production. In any food web the producers are mainly the plants that performs photosynthesis.
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What constitutes an electric current in a metal?; What is an electric current ?; Which particles move in a metal to cause an electric current?; How does electrical current flow?
Electrons are negatively charged particles and they transfer energy through wires as electricity electrons are responsible in metal to cause an electric current.
Some of an atom's outside electrons are free to travel throughout the metal lattice in a metal rather than being attached to specific molecules as they are in insulating materials or entire bands in molecular solids. These conduction electrons are capable of acting as current-carrying charge carriers. Because there are so many of these free electrons in metals, they are very conductive. These electrons travel at random due to thermal energy in the absence of an external electric field, but there is typically no net current flowing through the metal. These erratic movements move at an average pace of 106 metres per second at room temperature.
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What fraction of the 600 g sample of lodine-125 is left after 4 half-lives?
O 1/64
O 1/4
O 1/2
O 1/16
HELP PLEASEEE
Answer:1/64. im glad i could at least try to help lol im in middle school and i just ran through a bunch of articles 4 u
a force of 20n is applied toa screwdriver to pry the lid off a paint can. the screwdriver applies 65n of force to the lids. what is the mechanical advantage of the screwdriver
The mechanical advantage of the screwdriver is 3.25.
What is mechanical advantage?
The mechanical advantage of a machine is the measure of the ratio of the output force to input force.
Mechanical advantage of a machine is also known as force ratio of the machine.
Mathematically, the formula for mechanical advantage is given as;
M.A = Load / effort = output force / input force
The mechanical advantage of the screwdriver is calculated as follows;
M.A = 65 N / 20 N
M.A = 3.25
Thus, the mechanical advantage of the screwdriver is a function of the applied force and output force.
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a 0.262 kg ball, containing a net charge of -151.9 mc, is thrown horizontally into a region of uniform magnetic field of field strength 10 tesla. the ball is traveling perpendicular to the b-field at the instant it is thrown, and at that moment, it is known to be traveling at v
At the instant it is thrown, the ball is known to be moving perpendicular to the b-field and is moving at velocity v and time taken is 1.259*10^-3 sec
F=Q(V*B)
V=velocity vector
B=magnetic field vector
q=charge
F=q(Vi*b-k)
=q|v||b|j
|Fb|=q|V|B|
t=D/v
t=2518/20000sec=1.259*10^-3sec
During the time t, the deflection of charge is negtive y direction
y=Vt+1/2at²
y=1/2ayt²
a=acceleration is -ve y direction
=Fb/m
m=mass of charge
Fb=magnetic force
ay=q|V||B|/m
q=-158.85 mc
ay=1.24*10⁵m/s
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In what type of wave interaction does the wave bounce off of an object?; What happens when waves bounce off objects and interact?; What is it called when waves interact with each other?; What is the reflection of waves?
The wave bounces off an item when there is a reflection kind of wave interaction.
When waves strike a surface and rebound, reflection occurs. When a wave encounters a surface, it might reflect in all directions. For instance, visible light bounces off the surfaces it encounters. Your eyes receive the reflected light, which makes it possible for you to see the objects.
What occurs when waves come into contact?When two or more waves collide, interaction occurs. Wave interference is the term used to describe how waves interact with one another. Wave interference may occur when two waves that are traveling in opposite directions meet. The two waves pass through each other, and this affects their amplitude.
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A monochromatic light source with a power output of 59.0W radiates light of wavelength 600nm uniformly in all directions.
A. Calculate Bmax for the light at a distance of 5.10m from the source.
B. Calculate Emax for the light at a distance of 5.10m from the source.
A monochromatic light source with a power output of 59.0W radiates light of wavelength 600nm uniformly in all directions.
A. B(max) = 3.89 × 10⁻⁸ T
B. E(max) = 11.67 N/C
What is monochromatic light source?Single-wavelength light sources are known as monochromatic lights, where mono stands for only one and chroma for color. Monochromatic lights are defined as visible light that falls within a certain range of wavelengths. It has a wavelength that falls within a constrained wavelength range.
The whole spectrum is theoretically included in each higher-order maximum, but because of potential partial overlap with the next-order maximum, it can be challenging to identify the pattern for a given color. Monochromatic lighting solves this issue.
The intensity of the wave is calculated as:
I = P/A
or, I = P/4πR²
or, I = 59.0 W/ 4π(5.10m)²
or, I = 0.1805 W/m²
A. Emax for the light at a distance of 5.10m from the source.
E(max) = [tex]\sqrt{2u_0cI}[/tex]
or, E(max) = 11.67 N/C
Where, [tex]u_0[/tex] = 4π × 10⁻⁷ T.m/A
c = 3 × 10⁸ m/sec
I = 0.1805 W/m²
B. The amplitude of the magnetic field is calculated as follows:
B(max) = E(max)/c
or, B(max) = (11.67 N/C) / (3 × 10⁸ m/sec)
or, B(max) = 3.89 × 10⁻⁸ T
To know more about monochromatic light source refer to:
https://brainly.com/question/13156018
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