(a) The electromotive force induced in the loop is 0.017 V.
(b) The ratio of induced electromotive force to loop resistance yields the current in the circuit.
How can we calculate emf induced in a loop?
The emf induced in the loop can be calculated using Faraday's law:
emf = dФ/dt ⇒ emf = A * (dB/dt)
where A represents the area of the loop and dB/dt is the change in magnetic field with time.
Therefore, using the above relation, emf induced= 0.0901 * 0.197= 0.017V
Again, using Ohm's law the current in the loop can be determined since
Current = emf/Resistance.
Thus,
(a) The electromotive force induced in the loop is 0.017 V.
(b) The ratio of induced electromotive force to loop resistance yields the current in the circuit.
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Which of the following can be considered mechanical energy?
A. a hot bowl of soup
B. plant growth
C. doing bicep curls
C. doing bicep curls.
Explanation:
why? A. is considered thermal energy.
B. is considered solar energy to chemical energy.
if you drive your car at 20 miles per hour and then accelerate at a rate of 3 miles per hour every second how fast will you be going after 8 seconds? PLEASE I NEED HELP NOW
The velocity of the car after 8 seconds of the drive will be 20.0066 miles/hr.
What is Acceleration?
Acceleration is defined as the rate of change of velocity with respect to time.
Given that you are driving your car at 20 miles per hour and then accelerate at a rate of 3 miles per hour every second.
We can calculate the acceleration using the formula -
a = Δv/Δt
a = (v - u)/t
Now -
t = 8 seconds = 0.0022 hrs
Then -
3 = (v - 20)/0.0022
3 x 0.0022 = v - 20
v = 20.0066 miles/hr
Therefore, the velocity of the car after 8 seconds of the drive will be 20.0066 miles/hr.
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A toy train with a mass of 2 kg moving at 10 m/s collides with a 2-kg toy train that is
stationary. If the two trains move together after the collision, what will be their speed after impact
Because momentum will be conserved, their common speed after impact will be 5 m/s
Third Newton's Law of MotionThe third Newton's law of motion states that in any action, there will be equal and opposite reaction.
Given that a toy train with a mass of 2 kg moving at 10 m/s collides with a 2-kg toy train that is stationary. If the two trains move together after the collision, their speed V after impact can be calculated through the formula
M1U1 + M2U2 = (M1 + M2)V
The given parameters are
M1 = 2 kgU1 = 10 m/sM2 = 2kgU2 = 0V = ?Substitute all the parameters into the formula
2 × 10 + 2 × 0 = (2 + 2)V
20 = 4V
V = 20/4
V = 5 m/s
Therefore, their speed after impact is 5 m/s
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how do the kinetic energy of each of the following objects compare to one another? i. object of mass 2 kg traveling at constant velocity of 2.5 m/s in the x x direction ii. object of mass 1 kg traveling at constant velocity of 5 m/s in the x x direction iii. object of mass 1 kg traveling at constant velocity of 3 m/s in the x x direction and -4 m/s in the y y direction
Kinetic energy of each of the following objects compared like K₃ = K₂ > K₁ or K₃ = K₂ = K₁.
Kinetic energy of an object of mass, m and speed, v is
K = 1/2 mv²
(1) Given, m = 2kg, v = 2.5m/s
So, K = 1/2 mv²
K₁ = 1/2 × 2×(2.5)²
K₁ = 6.25 J
(2) Given, m = 1kg, v = 5m/s
K = 1/2 mv²
K₂ = 1/2 × 1×(5)²
K₂ = 12.5 J
(3) Given, m = 1kg, Vx = 3m/s, Vy= 4m/s
v = [tex]\sqrt{Vx^{2} + Vy^{2} }[/tex]
v = 5m/s
K = 1/2 mv²
K₃ = 1/2 × 1×(5)²
K₃ = 12.5 J
Hence, K₃ = K₂ > K₁ or K₃ = K₂ = K₁ .
Kinetic energy is the type of energy which is due motion of an object. Kinetic energy is the product of half of mass and velocity square. Its unit Joule and is represented by J.
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4. A vehicle is moving at 5 ms. How long will it take to stop at a distance of 15m
Answer:
time is 3 seconds.
Explanation:
formula is given in the picture
please help ASAP! Brainliest to the best answer
Answer:
1. A series circuit consisting of:
12 V electrical source
open switch
two light bulbs
10 Ω resistor
2. A parallel circuit consisting of:
9.0 V electrical source
open switch
three 5.0 Ω resistor
3. A circuit consisting of:
three 1.5 V cells connected in parallel
open switch
two light bulbs connected in series
two 15 Ω resistor connected in parallel
4. Draw a circuit diagram consisting of a
9.0 V battery, an ammeter, and a 25 Ω
resistor in series. Include a voltmeter
that is measuring the potential difference
across the resistor.
5. Draw a circuit diagram consisting of a
battery made up of two 1.5 V cells, one
closed switch, two lamps, and an
ammeter in series. Show the direction in
which the current flows.
6. Draw a circuit diagram consisting
of a battery made up of four 1.5 V
cells, one closed switch, one lamp, two
0.50 Ω resistors in series, and a
voltmeter.
Show the direction in which
the current flows.
HELP!!Use complete sentences to answer these questions.
1. Share an example from your house or neighborhood that represents a physical change occurring.
2. Share an example from your house or neighborhood that represents a chemical change occurring.
It is a multistep plan or strategy that allows you to achieve your goals.
1.
After looking at sound waves in this way, why do you think people prefer to view sound waves transverse waves rather than
longitudinal?
Only surface waves and shear waves, which require a solid for propagation, are transverse waves. Solids also support longitudinal waves. Fluids like air and water can only support longitudinal waves.That's why people prefer to view sound waves transverse waves rather than longitudinal.
when a metal is exposed to 75.9 nm ultraviolet radiation, it emits an electron with kinetic energy 7.60 ev. what is the threshold frequency for this metal? (1.000 ev
The threshold frequency for this metal is, based on its photoelectric effect, [tex]2.11x10^{15} Hz[/tex].
The threshold frequency of the metal is the frequency of electromagnetic radiation that would cause its kinetic energy to be equal to 0. Using the photoelectric effect, the threshold energy can be calculated from the difference between the photon energy invested and the electron's kinetic energy, because the excess energy invested is transformed into kinetic energy. With that in mind, the energy of the photon is:
E = hc/λ = hν
where h is Planck's constant, c is the speed of light, λ is the wavelength of the photon and ν is the frequency of the photon.
[tex]E = 6.626x10^{-34}Js * 3x10^{8}m/s / 75.9x10^{-9}m = 2.62x10^{-18} J[/tex]
Because 1 eV is equal to [tex]1.602x10^{-19}[/tex] J, the kinetic energy of the electron is:
[tex]7.60 x 1.602x10^{-19}J = 12.1752x10^{-19}J = 1.22x10^{-18} J[/tex]
The threshold energy is:
[tex]2.62x10^{-18}J-1.22x10^{-18}J = 1.40x10^{-18}J[/tex]
Now, because E = hν, then ν = E/h, so the threshold frequency will be:
[tex]1.40x10^{-18} J/6.626x10^{-34}Js = 2.11x10^{15}Hz[/tex]
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3.
- The north and south poles of a
solenoid change with
A the type of material in the core
B the number of loops in the coil
C the tightness of loops in the coil
D the direction of the current
"The direction of the current."
A solenoid's north and south poles are determined by two variables. two factors: the winding direction and the direction in which the stream flows (clockwise or counter-clockwise). The positive pole of the power source (such as a battery) should be determined first, followed by the end of the solenoid that will be connected to it.
Now, determine which way the winding is going by peering down the solenoid tube. The south pole is present if the positive wire is rotated clockwise, and the north pole is present if it is rotated counterclockwise. In conclusion, the magnetic south pole is always in reference to the positive wire clockwise.
The magnet's poles will be created as a result of current flowing through the solenoid, and the clock face rule in a solenoid is used to predict their positions. According to the rule, the south pole will be formed if you gaze through a solenoid at a location where the current runs in a clockwise direction. On the other hand, the north pole will be visible if viewed from the side where the current is flowing counterclockwise.
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The most dangerous particles in polluted air are those with diameters less than because they can penetrate deeply into the lungs. a 15-cm-tall closed container holds a sample of polluted air containing many spherical particles with a diameter of and a mass of . how long does it take for all of the particles to settle to the bottom of the container?
The time taken for all of the particles to settle to the bottom of the container is 0.18 seconds.
What is time of motion?The time of motion of an object is the time taken for the object to travel from its initial position to final position.
Mathematically, the formula for calculating the time of motion of an object is given by;
h = vt + ¹/₂gt²
where;
h is the height of fall of the objectv is the initial vertical velocity of the objectt is time of motion of the objectg is acceleration due to gravityFor, this given question, we have the following parameters;
height of fall of the particles, h = 15 cm = 0.15 minitial vertical velocity of the particle, v = 0acceleration due to gravity, g = 9.8 m/s²h = ¹/₂gt²
2h = gt²
t² = 2h/g
t = √(2h/g)
t = √(2 x 0.15 / 9.8)
t = 0.18 s
Thus, we can conclude that, since the height of fall of the particle is small, it will take the particle short time to fall.
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Two vectors A1 and A2 each of magnitude are inclined to each other such that their resultant is equal to √3Afind the resultant of vectorA1 1 and -A1
When A1 and -A1 are of the same magnitude but the opposite direction, their total will be zero.
what is vector?
A quantity or phenom with independent property for the both magnitude and direction is called a vector. The term may also refer to a quantity's mathematical or geometrical representation. Velocity, electromagnetic fields, and weight are just a few examples of vectors in nature.
0 is the intersection of line A1 and -A1.
Both the matrices A1 and A2 have the same magnitude, which itself is A
|A1| = A , |A2| = A
the result of A1 and A2 is 3 A
Hence, 3 A = (A2 + A2 + 2A2 cos x)
3A2 = 2A2 + 2A2 cos x
=> 1/2 = cos x
x = 60°
A1 and A2 are at an angle of 60 °.
Now, we must find the product of A1 and -A1. These vectors create a 180° angle.
the product of A1 and -A1 is (A2 + A2 + 2A2 cos 180°
=> √(2A²-2A²)
=> 0
When A1 and -A1 are of the same magnitude but the opposite direction, their total will be zero.
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If you ride a bike at a constant speed in a circle on a flat surface that has a coefficient of kinetic friction of 0.27. What is the centripetal acceleration of the bike?
The centripetal acceleration of the bike is 2.65 m/s².
What is centripetal acceleration?
Centripetal acceleration is the acceleration of an object moving in a circular track. This acceleration describes the rate of change of tangential velocity with time in the circular track.
The magnitude of the centripetal acceleration, can be determined by applying the formula for net force.
At constant speed, the centripetal acceleration of the bike is given as;
μmg = ma
μg = a
a = μg
where;
μ is coefficient of frictiong is acceleration due to gravitya = (0.27) x (9.8 m/s²)
a = 2.65 m/s²
Thus, the centripetal acceleration of the bike increases with increase in velocity.
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Which of the following atoms has the smallest radius?
The Periodic Table
A. Cesium (Cs)
B. Potassium (K)
C. Sodium (Na)
D. Lithium (Li)
Answer:
answer= lithium
Explanation:
electronic configuration
Are leaders born or made? What factors influence a person’s leadership style? FIRST TO ANSWER BRAINLIEST RIGHT
Answer:
Leaders are made but ultimately both can be true.
Explanation:
Recent scientific studies suggest that leadership is 30% genetic and 70% learned. These findings propose that leaders are made not born. Ultimately, the answer is that both are true: a person can be born with natural leadership abilities, and someone can learn how to be a good leader at work. Leadership is a set of skills that can be learned by training, perception, practice and experience over time. Leadership learning is lifetime activity. Good leaders seek out development opportunities that will help them learn new skills.
Answer:
Well it's the past which really impacts
Explanation:
Most of the time a leader is made, it's not definite that a person has characteristics of a leader since his/her childhood. It's the impact mostly which determines and the way your parents raised you or are you independent who can solve problems on his or her own. If you have seen the world and have learned lessons from your mistake it's easy for you to have leadership qualities because you know what are the risks of something or is something worth your time.
That's what I think
Physics question doubt!
Answer: I think it's 7.60 184
Explanation: If I did my math right it's 7.60 184
person on a cruise ship is doing laps on the promenade deck. On one portion of the track the person is moving north with a speed of 3.9 ms relative to the ship. The ship moves east with a speed of 12 ms relative to the water.
The resultant speed of the person on the cruise ship is 12.62 m/s.
What is resultant speed?The resultant speed of an object is the single speed which can effectively represent two or more speed of the object.
The magnitude of the resultant speed of the person on a cruise ship is calculated as follows;
Vr² = Va² + Vb²
where;
Vr is the resultant speed of the personVa is the speed of the person to the northVb is the speed of the person to the eastSubstitute the value of the north speed and east speed to determine the resultant speed of the person on the ship.
Vr = √Va² + Vb²
Vr = √[(3.9 m/s)² + (12 m/s)² ]
Vr = 12.62 m/s
Thus, for a person on a cruise ship is doing laps on the promenade deck at a speed of 3.9 m/s to the north and the speed of the ship 12 m/s to the east, the resultant speed is 12.62 m/s.
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The complete question is below:
person on a cruise ship is doing laps on the promenade deck. On one portion of the track the person is moving north with a speed of 3.9 ms relative to the ship. The ship moves east with a speed of 12 ms relative to the water. Find the resultant speed of the person
When a plane descends from its cruising height to land on a runway, 78 400 000J of gravitational potential energy is transferred. If the mass of the plane is 40 000 kg, what was the cruising altitude of the plane before its descent?
The cruising altitude of the plane of mass 40000 kg before its descent is 196 m
U = m g h
U = Gravitational potential energy
m = Mass
g = Acceleration due to gravity
h = Vertical height
U = 78400000 J
m = 40000 kg
g = 10 m / s²
h = U / m g
h = 78400000 / 40000 * 10
h = 196 m
Gravitational potential energy is a type of energy related to gravity. It is energy acquired by an object due to its change in position in the presence of gravitational field.
Therefore, the cruising altitude of the plane before its descent is 196 m
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I need help with my homework asap. Please
The molecules receive more energy and move faster after they have been heated up.
What is conduction?The term conduction has to do with the process by which heat is transferred along a body by the movement of the particles of the substance. There are three main modes of heat transfer and these are;
ConductionConvectionRadiationNow, we can see that before the flame was introduced, the molecules of the substances all maintained the same average position. The molecules do not move except there is a supply of energy.
Now, when we turn on the flame, we would notice that we have imparted additional energy to the particles that are in the solid when we heat it up. As such, the particles move more freely and we can see that as the motion of the particles in the image. The portion that shows the particles after the heating shows that they are now translating.
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a sphere of mass 3.9 ✕ 10-4 kg is suspended from a cord. a steady horizontal breeze pushes the sphere so that the cord makes a constant angle of 32° with the vertical.
The push magnitude and the tension of the cord is 5.4 × 10^-4
What is cord ?
cord is the slender flexible material usually consisting of several stands or twisted together.
It is wired coverd in rubber or plastic which connects electrical equipment to an electricity supply.
The free body diagram as per the question with the tension of string T .
The force of gravity ~mg
The force of air ~f
Since the sphere is motionless the net force on it is 0.
And the x and y are the components of the equation are zero
Tsin + 0 = F
Tcos - mg= 0
Where ¥ = 32°
Thus we get
T= (3.9×10^-4 kg ) (9.8m/s^2)/cos32°
= 2.1×3.2×10^-4
Solving T
We can get the F =
(3.2×10^-4)sin 32° =
5.4 ×10^-4
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TRUE or FALSE- The three categories that
American Imperialism sought to enhance were
political, military, and economic.
TRUE
FALSE
1
It is a true statement that the three categories that American Imperialism sought to enhance were political, military, and economic.
What is imperialism?The term imperialism has to do with a situation in which a country that tends to be more powerful continues to control a smaller country owing to the depends of the smaller country on the larger country for aid even though it is fully independent.
We can see that imperialism continues around the world especially in the developing and the less developed countries and this has continued to be an object of intense debate in many quarters.
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Which would be more damaging; driving into a massive concrete wall or driving at the same speed into a head-on collision with an identical car traveling toward you at the same speed?.
Driving into a massive concrete wall and driving into a head-on collision with an identical car traveling toward you at the same speed, both does equal amount of damage.
When the car hits into a wall, it comes to a sudden stop. Similarly, if the car hits another identical car with same speed, the same situation occurs in which the car comes to a sudden stop because the momentum of one car will be cancelled by the momentum of the other car. Either way, due to rapid deceleration the car comes to a dead stop.
The damage could have varied if the car travelling towards you had more or lesser speed than your car. Due to the same speed, both the cars had same momentum. If the speed differs, momentum differs and there will be motion after collision resulting in lesser damage in one car than the other.
Therefore, driving into a massive concrete wall and driving into a head-on collision with an identical car traveling toward you at the same speed, both does equal amount of damage.
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a transformer has 1,400 turns in the primary coil and 100 turns in the secondary coil. if the primary coil is connected to a 120 v outlet and draw 0.04 a, what is the current of the secondary coil?
0.56 A is the current of the secondary coil.
transformer is the device that transfer electric energy from one AC circuit to another.
we know that ;
I ∝ 1/n;
where I IS CURRENT and n is NUMBER OF TURNS.
(I) secondary = X A
(n) secondary = 100
(I) primary = 0.04 A
(n) primary = 1400
USING THIS-----> I ∝ 1/n;
=>
0.04 A/X A =100/1400
=>X=0.56 A
as the current in the transformer is inversely proportional to the number of turns so 0.56 A is the current in the secondary coil.
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For motion from s=+2cm to −5cm, then to +12cm, calculate the total displacement change.
The total displacement change from s=+2cm to −5cm, then to +12cm is + 7 cm
Displacement = Final position - Initial position
Final position = + 2 - 5 + 12 cm = + 9 cm
Initial position = + 2 cm
Displacement = ( + 9 ) - ( + 2 )
Displacement = + 7 cm
Displacement is the instantaneous distance between initial and final position. It is a vector quantity. So adding a sign is necessary for displacement.
Therefore, the total displacement change is + 7 cm
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An object travels in a complete circle with circumference 50m over 10 seconds. Identify the correct statement about this trip.
a. speed and average velocity are both positive
b. speed and average velocity are both zero
c. speed is positive and average velocity is zero
d. speed is zero and average velocity is positive
The true statement is that speed and average velocity are both positive.
What is the speed?The term speed has to do with the ratio of the distance that has been covered by a body with time. Now, we know that the distance is a scalar quantity, this implies that we do not take the direction to account anytime that we have to deal with the speed of a body. Thus the speed has been shown to be a scalar.
On the other hand the velocity of a body is the ratio of the displacement to the time taken by the object and the displacement is a vector quantity thus we have to take the direction account when looking at the velocity.
We know that the direction of the velocity changes as it moves round the circle. This implies that the velocity of the body changes and its positive. The speed is also positive.
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an exploding charge applies 4000N of force on a 0.025kg bullet as it moves down a 0.5m long horizontal barrel. how much energy does the bullet have when it leaves the barrel?
The energy the bullet have when it leaves the barrel is 2000 J
How to determine the energy.The energy of the bullet when it leaves the barrel can be obtained as illustrated below:
Force (F) = 4000 NDistance (d) = 0.5 mEnergy (E) = ?Energy is defined as the ability to do work.
Energy (E) = Work (W)
Work (W) = force (F) × distance (d)
W = Fd
Thus,
E = W = Fd
E = 4000 × 0.5
E = 2000 J
From the above calculation, we can conclude that the energy of the bullet is 2000 J
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A place kicker must kick a football from a point 31.5 m from a goal. As a result of the kick, the ball must clear the crossbar, which is 3.05 m high. When kicked the ball leaves the ground with a speed of 20.2 m/s at an angle of 53° to the horizontal.
(a) By how much does the ball clear or fall short of clearing the crossbar?
(b) Does the ball approach the crossbar while still rising or while falling?
(a) The ball cleared the crossbar by 10.23 m.
(b) The ball approaches the crossbar while falling.
What is the maximum height reached by the ball?
The maximum height reached by the ball is calculated by applying the following kinematic equation as shown below;
H = u² sin²θ / 2g
where;
u is the initial velocity of the ballθ is the angle of projection of the ballg is acceleration due to gravityH = (20.2² x (sin 53)²) / (2 x 9.8)
H = 13.28 m
ΔH = 13.28 m - 3.05 m = 10.23 m
The horizontal distance travelled by the ball is calculated as follows;
R = u² sin(2θ) / g
R = (20.2² sin(2 x 53) ) / (9.8)
R = 40 m
Thus, the ball cleared the crossbar and since the maximum height travelled by the ball is far greater than the height of the crossbar, the ball will approach the crossbar while falling.
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A student pulls a cart towards right on a rough surface. What is tye direction of the frictional force acting on the cart?
When a student pulls a cart towards the right on a rough surface, the direction of the frictional force acting on the cart will be to the left in the opposite direction of motion of the cart.
What is frictional force?Frictional force is a force that acts to oppose the motion of an object moving over another object.
Frictional force is a contact force as it requires contact between the two surfaces.
Frictional force acts at the surface of separation of the objects.
Frictional force causes wear and tear in moving parts of machinery.
However, frictional force enables the movement of objects over flat surfaces, for example, it aids in walking.
In conclusion, frictional force acts in an opposite direction to the motion of an object moving over another object.
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Would is divide or subtract or add or multiply
Answer:
I think it would be multiplied or added.
a 10-ft beam, weighing 1360 lb, is to be moved to the left onto the platform. a horizontal force p is applied to the dolly, which is mounted on frictionless wheels. the coefficients of friction between all surfaces are μs
The resistive force of friction (Fr) divided by the normal or perpendicular force (N) pushing the objects together yields the coefficient of friction (fr), which is a numerical value. The formula fr = Fr/N serves as a representation of it.
In terms of math, μ is equal to F/N, where F stands for frictional force and N for normal force. The coefficient of friction has no dimensions because both F and N are measured in units of force (such as newtons or pounds).
The static friction coefficient and the kinetic friction coefficient are the two different types of friction coefficients. While the latter is frequently referred to as the dynamic or sliding friction coefficient, the former is sometimes known as the starting friction coefficient.
A force that holds an object at rest is called static friction. When an object reaches its maximum size, it begins to move. Static friction has an identical magnitude in the opposite direction to any little force applied to an object. If the force is increased, eventually the object will begin to move after the maximum static friction value is reached.
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