What type of collision is two billiard balls?
Answer:
Elastic collision
Explanation:
Two billiard balls colliding is an example of an elastic collision. An elastic collision is a type of collision in which the total kinetic energy of the objects involved is conserved before and after the collision.
In other words, the objects bounce back after the collision with the same amount of energy that they had before the collision.
Answer: The collision is elastic.
Explanation: This is because they depend on the seperation between the centres of the billiard balls.
Which description includes a vector quantity?
Group of answer choices
The air conditioner was set to 74 degrees.
The wind during the hurricane was recorded at 85 mph.
The circumference of the wheel was 1.5 meters.
The weight of the box was 95 Newtons.
The weight of the box was 95 Newtons. This description includes a vector quantity.
What is vector quantity?A physical quantity that has both directions and magnitude is referred to as a vector quantity.
A lowercase letter with a "hat" circumflex, such as "û," is used to denote a vector with a magnitude equal to one. This type of vector is known as a unit vector.
The measurement of a body's weight is the gravitational force acting on it. We can claim that weight is a vector quantity since we know that a force has a magnitude and a direction.
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True or False (if false, explain why)? ||au + v1|2 = 0+|||||2 + ||01|2, where || . || denotes Euclidean a2v, norm, a is a scalar, u and v are vectors.
False. The equation ||au + v1|2 = 0 + ||u||2 + ||v||2 is the Parallelogram Law, which states that the magnitude of the sum of two vectors is equal to the sum of the magnitudes of the vectors.
The equation states that the length of the diagonal of a parallelogram, given by the sum of two vectors u and v, is equal to the sum of the lengths of u and v. This equation does not relate the scalar a to the vectors u and v.
The Parallelogram Law states that the magnitude of the sum of two vectors u and v, denoted by ||au + v||, is equal to the sum of the magnitudes of the individual vectors, ||u|| and ||v||. This law is often written as:
||au + v|| = ||u|| + ||v||
where a is a scalar, u and v are vectors, and ||.|| denotes the Euclidean norm, or the length of a vector.
The equation represents the fact that the length of the diagonal of a parallelogram, formed by vectors u and v, is equal to the sum of the lengths of u and v. In other words, the magnitude of the vector sum of two vectors is equal to the sum of the magnitudes of the individual vectors.
This law is useful in physics and engineering, where vectors are often used to represent physical quantities, such as forces, velocities, and accelerations, and the sum of these quantities must be calculated to understand their combined effect.
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What is average acceleration formula ?
Δv / Δt. is average acceleration formula .
What is acceleration ?
Acceleration is a measure of how quickly an object changes its velocity, or speed and direction. It is a vector quantity and is expressed in units such as meters per second squared (m/s^2), feet per second squared (ft/s^2), or g (where g = 9.8 m/s^2 is the acceleration due to gravity at the surface of the Earth). Acceleration is a result of a force acting on an object and can be calculated using Newton's second law of motion as follows: acceleration = force / mass. Positive acceleration means that the object is speeding up, while negative acceleration means that the object is slowing down. Acceleration is an important physical quantity that is used to describe the motion of objects and to calculate the velocity and position of an object over time. It plays a crucial role in many areas of science and engineering, including mechanics, rocket science, and vehicle design.
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When a spacecraft is launched from the Earth toward the Sun at what distance?
The distance of a spacecraft from the Earth when it is launched toward the Sun depends on its trajectory. Generally, a spacecraft will travel from Earth to the Sun at an average distance of over 150 million kilometers.
What is trajectory?Trajectory is the path of a moving object or particle as it travels through space. It is defined as the path taken by a projectile, such as a missile, rocket, bullet, or thrown object, as it moves under the action of given forces, such as gravity, air resistance, lift, and thrust. Trajectory is usually graphed as a curve in three-dimensional space. Trajectory may also refer to the path of a spacecraft or satellite as it orbits a planet, or the path of an airplane as it flies through the air. Trajectory is an important part of the study of mechanics and physics. It is used to calculate the speed, distance, and time needed to reach a destination. It is also used to determine the stability of a given system, such as a space shuttle or a rocket. Trajectory plays an important role in the field of aeronautics, as it is used to determine the optimal flight path for an aircraft.
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The measure of average kinetic energy of molecules is called _________.
Temperature is a measure of the average kinetic energy of the particles in a substance.
Normally, it is expressed in kelvin (K) or degrees Celsius (°C) units. According to the ideal gas equation, PV = nRT, where P is pressure, V is volume, n is the number of moles of gas, R is gas constant, and T is temperature in kelvin.
A substance's temperature has a direct correlation with the kinetic energy of its particles. The kinetic energy of a material's particles increases with rising substance temperature and decreases with falling substance temperature.
The idea of thermal energy, which is the sum of the kinetic and potential energy of the particles in a substance, can also be used to represent the average kinetic energy of the particles in a substance.
A substance's thermal energy is inversely proportional to its temperature and can be raised by heating it up or raising the kinetic energy of its constituent particles.
It is crucial to understand that temperature is actually a measurement of the average kinetic energy of the particles present in a substance rather than the quantity of heat it contains.
The amount of heat needed to increase the temperature of one unit of mass of a substance by one degree can be used to determine a substance's specific heat content.
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What is the exact circumference of Earth?
Whilst equatorial diameter is somewhat bigger at 7930 miles, the distance between the south and north poles is roughly 7900 miles. This gives us just a circumference of the Earth of around 25,000 miles.
Is the Earth's radius 24000 miles?
The standard measurement of the earth's circumference today is 40,096 km (24,901 miles).
How do the ancient Greeks determine the circumference of the Earth?
800 kilometers, or 5,000 stades, separated the two cities when Eratosthenes employed a man to time the distance between them. The Earth's circumference can therefore be calculated using straightforward ratios; as 7.2 degrees is 1/50 or 360 degrees, 800 multiplied by 50 = 40,000 kilometers.
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Whilst equatorial diameter is somewhat bigger at 7930 miles, the distance between the south and north poles is roughly 7900 miles. This gives us just a circumference of the Earth of around 25,000 miles.
Is the Earth's radius 24000 miles?
The standard measurement of the earth's circumference today is 40,096 km (24,901 miles).
How do the ancient Greeks determine the circumference of the Earth?
800 kilometers, or 5,000 stades, separated the two cities when Eratosthenes employed a man to time the distance between them. The Earth's circumference can therefore be calculated using straightforward ratios; as 7.2 degrees is 1/50 or 360 degrees, 800 multiplied by 50 = 40,000 kilometers.
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which of newton’s laws explains why a test dummy continues forward until it makes contact with another object?
Newton's First Law, also known as the law of inertia, explains why a test dummy keeps moving until it collides with another object.
Newton's First Law states that an object at rest will remain at rest, and an object in motion will continue to move in a straight line with a constant velocity unless acted upon by an external force. In other words, unless something stops it, an object will continue to move in the same direction and at the same speed.
A test dummy is in motion and will continue to move forward until it comes into contact with another object. This contact with another object applies force to the test dummy, causing it to come to a halt.
As a result, Newton's First laws explain why a test dummy continues forward until it makes contact with another object
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a rock has dimensions of 1 x 1 x 1 meters. which one would weigh the least?
In this case, the rock has dimensions of 1 x 1 x 1 meter, meaning it is a cube with sides of equal length. This means that the volume of the rock, which is a measure of the amount of space it takes up, is equal to 1 x 1 x 1 = 1 cubic meter.
In order to answer the question about which one would weigh the least, it is important to understand the concept of weight and how it is related to the dimensions of a rock. The weight of a rock is determined by the density of the material it is made of, as well as its size or volume. When we talk about the dimensions of a rock, we are referring to its length, width, and height.
If we know the density of the material the rock is made of, we can calculate its weight using the formula weight = density x volume. So, when it comes to which rock would weigh the least, it all depends on the density of the material the rock is made of. For example, if the rock is made of a low-density material like pumice, it would weigh less than if it was made of a high-density material like iron. The lower the density of the material, the less weight it will have for the same volume.
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Now calculate the force on the test charge, the electric field due to the source charge at the position of the test charge, and write a simple vector for f." John calculates the magnitude and direction of the force and the electric field, and writes an expression for f in unit vector notation, given the conditions expressed by Professor Moriarty, then sets up and runs the simulation to check his work. Which results are correct for these conditions? OF = 2.25 x 10-6 N in the -i direction, E = 2.25 x 103 N/C in the -i direction, and f = -i. OF = 4.50 x 10-6 N in the i direction, E = 4.50 × 103 N/C in the i direction, and f = + 2 V 2 OF = 2.25 x 10-6 N in the i direction, E = 2.25 N/C in the i direction, and f = j. O F= 2.25 x 10-6 N in the i direction, E = 2.25 x 103 N/C in the i direction, and i = i.
A) OF = 2.25 x 10-6 N in the -i direction, E = 2.25 x 103 N/C in the -i direction and f = -i. The direction of the force on the test charge is opposite to the direction of the electric field due to Coulomb's law.
The magnitude of the force and electric field are equal as the test charge is positioned such that the electric field is uniform and proportional to the force. The use of unit vector notation simplifies the representation of the force vector, making it easier to perform vector operations and compare forces in different scenarios. The expression for the force in unit vector notation, f = -i, simply represents the force as a vector in the -i direction with magnitude equal to the magnitude of the force. This notation makes it easier to perform vector operations, such as addition and subtraction of forces, and to compare forces in different situations.
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A loading car is at rest on a track forming an angle of with the vertical. The gross weight of the car and its load is 55b0lb, and it is applied at g. The car is held by a cable a. Determine the tension in the cable. (lb) b. Determine the reaction at the upper wheel. (lb) c. Determine the reaction at the lower wheel. (lb).
The pressure in the link is 4,393.71 lb and the response at each sets of wheels is 4,393.71 lb.
The pressure in the link and the response at each sets of wheels not entirely settled by considering the powers following up on the vehicle and applying the laws of harmony.
We should expect that the vehicle is very still, so the net power following up on the vehicle is equivalent to nothing. The powers following up on the vehicle are the gravitational power, the pressure in the link, and the responses at each sets of wheels.
Pressure in the link: Strain in the link is equivalent to the power expected to hold the vehicle very still, so it should rise to the even part of the gravitational power.
T = W * sin(25°) = 5500 * sin(25°)=4393.71lb
Response at each sets of wheels: The responses at each sets of wheels should adjust the upward part of the gravitational power.
R = W * cos(25°) = 5500 * cos(25°)=4393.71lb
where W is the gross load of the vehicle and its heap. The response at each sets of wheels is the equivalent in light of the fact that the heaviness of the vehicle is equitably dispersed between them.
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The complete question is:
A loading car is at rest on a track forming an angle of 25° with the vertical. The gross weight of the car and its load is 5500 lb, and it is applied at a point 30 in. from the track, halfway between the two axles. The car is held by a cable attached 24 in. from the track. Determine the tension in the cable and the reaction at each pair of wheels.
4. Assuming that this is a perfect inelastic
collision, calculate the velocity after the
collision in the example below.
BEFORE
m1=80 kg
v1=6 m/s
m2= 40 kg
v2=0 m/s
AFTER
m1=80 kg
V1=?
m2=40 kg
V2=?
Answer:
the final velocities are V1 = 4 m/s and V2 = 0 m/s.
Explanation:
The velocity after a perfect inelastic collision can be calculated using the conservation of momentum equation. In this type of collision, the total momentum of the system is conserved, but the kinetic energy is not.
Let's call the velocity of m1 after the collision V1 and the velocity of m2 after the collision V2.
The conservation of momentum equation can be written as follows:
m1 * v1 + m2 * v2 = m1 * V1 + m2 * V2
Substituting the given values:
80 * 6 + 40 * 0 = 80 * V1 + 40 * V2
Simplifying:
480 = 80 * V1 + 40 * V2
Dividing both sides by 80 + 40:
480 / (80 + 40) = V1 = 4 m/s
And since m2 is at rest before and after the collision, its velocity is 0 m/s:
V2 = 0 m/s
So the final velocities are V1 = 4 m/s and V2 = 0 m/s.
1. define the following terms in the context of titrations: a. standard solution b. endpoint c. indicator
Titration refers to the act of adding a known solution to an unknown solution in order to complete the reaction.A standard solution is a a solution of accurately known concentration.
A biological endpoint is a term used to describe a health impact (or the likelihood of that effect) brought on by exposure to a chemical. Examples of biological endpoints include disease symptoms or death.
What is an illustration of a common solution?
Primary standard answers include the following examples: The typical standard solution for processes involving silver nitrate is sodium chloride, or table salt. Zinc powder - Zinc powder is frequently used to standardise ethylene diaminetetra acetic acid, also known as EDTA, a stabilising agent used in many medicinal products.
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what is the electric flux through the surface a1 that encloses all three objects? express your answer to two significant figures and include the appropriate units.
The electric flux through the surface A1 which envelopes the three objects is 1.6 x 10⁵ Nm²/C.
According to Gauss's law, the electric flux through a closed surface is given by:
Φ = q/ε₀
q is the charge on a closed surface
ε₀ is the electrical permit of free space and has a value of 8.854 × 10⁻¹² square coulombs per newton per square meter.
q₁ =+4.0 µC
q₂ = –2.5 µC
q₃ = 0
Compared to,
Φ = q/ε0
Φ = (q₁ + q₂ + q₃)/ε₀
Φ = (4 -2.5 + 0) x 10⁻⁶/8.854 × 10⁻¹²
Φ = 1.6 x 10⁵ Nm²/C
Your question is incomplete but most probably your full question was:
Two objects, O1 and O2, have charges of +4.0 µC and –2.5 µC, respectively, and a third object 0, is electrically neutral. What is the electric flux through surface A1 that encloses all three objects?
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Which one of the following statements is true concerning the strength of the electric field between two oppositely charged parallel plates?a. It is the same everywhere between the plated if any edge effect is ignored.b. It is a maximum near the negatively charged plate.c. It is a maximum near the positively charged plate.d. It is a maximum midway between the plates.
It is the same everywhere between the plates if any edge effect is ignored statements is true concerning the strength of the electric field between two oppositely charged parallel plates. The correct answer is Option A.
When two oppositely charged parallel plates are connected to a power source, an electric field is established between them. The electric field represents the force experienced by a positive test charge placed in the field. The correct answer is Option A.
In this case, the electric field between the plates is uniform, meaning it has the same magnitude and direction at all points between the plates. This is true if we ignore any edge effects, which can occur near the edges of the plates. If the plates are infinitely large, the electric field will be constant everywhere between them. However, in real-world situations with finite-sized plates, edge effects can cause the electric field to deviate slightly near the edges.
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State whether these sentences are true (T) or false (F).
The atmosphere is composed mainly of nitrogen and oxygen.
The claim that nitrogen and oxygen make up the majority of the atmosphere is untrue.
Is nitrogen useful or harmful?Plants flourish thanks to nitrogen. But having excessive amounts of a wonderful thing can be harmful. Fast-growing plants outcompete and suffocate slower-growing beneficial plants when too much nitrogen gets into our bays. Oxygen is depleted by decaying plants, that destroys fishes.
What is the biggest use of nitrogen?Although producing ammonia, which is needed for fertiliser, explosives, as well as other materials, is the primary industrial use of nitrogen, there are many other uses for it. Nitrogen can be discovered and used in fewer places and for more things than you might have anticipated, from medications to food packaging.
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(a) what is q/q if the net electrostatic force on particles 1 and 4 is zero? q q = (b) is there any value of q that makes the net electrostatic force on each of the four charges zero? yes no
(a) The value of q/q that makes the net electrostatic force on each of the four charges zero is q²/(2L²).
(b) Yes, there is a value of q that makes the net electrostatic force on each of the four charges zero.
What is electrostatic force?Electrostatic force is a force of attraction or repulsion that acts between particles that are electrically charged. It is a type of Coulomb force and is typically much stronger than gravitational forces.
(a) Let q be the charge on particle 1, and q/q be the charge on particle 4.
For particle 1: F1 = (q²)/(4L²) - (q*q)/(2L²) = 0
For particle 4: F4 = (q*q)/(2L²) - (q²)/(4L²) = 0
Solving these two equations simultaneously yields:
q/q = q/q = q²/(2L²)
Therefore, the value of q/q that makes the net electrostatic force on each of the four charges zero is q²/(2L²).
(b) Yes, there is a value of q that makes the net electrostatic force on each of the four charges zero. The value of q that makes the net electrostatic force on each of the four charges zero is equal to the opposite charge of the other three charges.
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A body of mass 9 kg is lying on a surface of a table. Calculate the net force acting on it
Answer:
the force acting on it will be zero
Paper clip Y is not attracted to the magnet. Which step should the student take to attract it?
A The student should use a battery with less energy.
B. The student should use a smaller core in the magnet.
C.The student should wrap the coil fewer times around the nail.
D.The student should move the magnet closer to the paper clip.
The student should move the magnet closer to the paper clip. Therefore, the correct option is option D among all the given options.
What is magnet?Magnetic fields, which result from the movement of electric charges, are a phenomena known as magnetism. This motion can assume many different shapes. It might be the movement of an electron in an atomic orbital, charged particles traveling across space, or an electric current flowing through a conductor.
Additionally, spin-containing fundamental particles like the electron are connected to magnetism. Paper clip Y is not attracted to the magnet. The student should move the magnet closer to the paper clip.
Therefore, the correct option is option D among all the given options. The student should move the magnet closer to the paper clip.
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9. A 0.45 kg soccer ball is heading toward a wall with a speed of 20 meters per second to the
east. After hitting the wall, the ball bounces back with a speed of 25 meters per second to the
west. The average force the wall exerted on the ball was 6750 N. What is the amount of time
the force was exerted on the ball?
The amount of time the force was exerted on the ball is 3.33 x 10⁻⁴ second.
What is the amount of time the force was exerted?
The amount of time the force was exerted on the ball is calculated as follows;
F = ma
F = m ( v - u ) / t
where;
m is the mass of the objectv is the final velocity of the objectu is the initial velocity of the objectt is the time of motion of the objectt = m ( v - u ) / F
t = ( 0.45 ) ( 25 - 20 ) / 6750
t = ( 0.45 x 5 ) / ( 6750 )
t = 3.33 x 10⁻⁴ second
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PLEASE HURRY
Particles q1 = -75.8 uC, q2 = +90.6 uC, and
93 = -84.2 uC are in a line. Particles q1 and q2 are
separated by 0.876 m and particles q2 and q3 are
separated by 0.432 m. What is the net force on
particle q3?
how to find the dimensionless parameters values
The dimensionless parameters values can be found by dividing the physical quantities with characteristic scales.
Dimensionless parameters are numbers that represent ratios of physical quantities and are independent of the units in which they are expressed. They play a crucial role in many areas of science and engineering, including fluid dynamics, heat transfer, and mechanics.
To find the dimensionless parameters values, one needs to divide the physical quantities by their characteristic scales, which are selected based on the specific problem being studied. The characteristic scales serve as reference points, allowing for a non-dimensional comparison of physical quantities.
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What can my hypothesis be for changing the pitch of sound ? (just search up changing the pitch of sound)
There are several possible hypotheses for changing the pitch of sound:
Changing the frequency of the sound wave: The pitch of a sound wave is directly proportional to its frequency. Therefore, changing the frequency of the sound wave will change its pitch.
Changing the length of the vibrating object: The length of the vibrating object has an effect on the pitch of the sound wave it produces. If the length is shortened, the pitch of the sound will increase. Conversely, if the length is lengthened, the pitch of the sound will decrease.
Changing the tension in the vibrating object: The tension in the vibrating object affects the pitch of the sound wave it produces. Increasing the tension will raise the pitch of the sound, while decreasing the tension will lower the pitch.
Changing the density of the medium: The density of the medium through which the sound wave travels can also affect the pitch of the sound. If the medium is denser, the pitch of the sound will be higher, and if the medium is less dense, the pitch of the sound will be lower.
Modifying the sound wave through electronic means: The pitch of sound can be changed electronically by using devices such as equalizers, filters, and pitch shifters. These devices modify the frequency of the sound wave, which changes its pitch.
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if you perform this experiment on all the 8 planets in our solar system and compare the lengths of the strips of paper tape needed to record 10 data points, you would find that:
A. The longest strip of paper is required for the planet Jupiter.
B. The shortest strip of paper is required for Mercury.
What are the solar system planets?
The planets are Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, and Neptune, listed in order of their distance from the Sun. All planets, with the exception of Mercury and Venus, have at least one moon. Four planets—Jupiter through Neptune—have ring systems.
a.
The longest strip of paper is required for the planet JUPITER, because in our solar system Jupiter is by far the largest planet-more than twice massive as all the others planet combined.
b.
The shortest strip of paper is required for MERCURY, because mercury is very smaller planet than other planets in our solar system. (Mercury is the closest to sun)
Hence , planet needs the longest paper strip possible and the world needs the tiniest paper strip possible.
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Complete question:
the molecular basis of microaaray analysis is
Microarray analysis is based on the measurement of the amount of specific nucleic acid molecules (DNA or RNA) in a sample, which is done by hybridization with a large set of complementary probes attached to a solid support, such as a glass slide.
The probes are usually short sequences of DNA or RNA that match specific target sequences in the sample. The hybridization of target sequences to the probes on the microarray is dependent on the complementarity between the sequences, the temperature, and the ionic strength of the hybridization buffer. After hybridization, the amount of target bound to each probe is determined, usually by fluorescence or radioactive labeling, and the signal intensity is measured and analyzed to determine the relative amount of each target sequence in the sample. This allows for the simultaneous analysis of thousands of genes or transcripts in a single experiment, making it a powerful tool in genomics and molecular biology research.
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Nikita bring object X and Y together. The object neither attract nor repel. Nikita write:'Neither X or Y i a permanent magnet. Nikita might be right but he might be wrong. Explain how you would tet her anwer to ee if he i correct
The given statement is true.
Magnet is an object which is capable of producing magnetic field and attracting unlike poles and repelling like poles.When a magnet is dipped in iron filings, we can observe that the iron filings cling to the end of the magnet as the attraction is maximum at the ends of the magnet. Whenever a magnet is suspended freely in mid-air, it always points towards the north-south direction. Pole pointing towards geographic north is known as the North Pole, and the pole pointing towards geographic south is known as the South Pole.Like poles repel while unlike poles attract.The magnetic force between the two magnets is greater when the distance between these magnets is lesser.To know more about magnets visit:
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to one significant figure, what is the number of times the earth will rotate in your lifetime? a. b. c. d. e.
Explanation:
Estimate the number of times the earth will rotate on its axis during a human's lifetime. The answer is 3x10^4.
P1.63. Consider the circuit shown in Figure P1.63 Find the current iR flowing through the resistor. Find the power for each element in the circuit. Which elements are receiving power?
The resistor and voltage source both are receiving power (36W each).
What is Ohm's Law?Ohm's law states that the current flowing through a conductor between two points is directly proportional to the voltage across the two points and inversely proportional to the resistance between them. Mathematically, it can be expressed as:
I = V/R
The current flowing through the resistor (iR) can be found using Ohm's law: iR = V/R = 12V/4Ω = 3A.
The power for each element in the circuit can be found using the formula P = IV, where P is power, I is current, and V is voltage.
For the resistor, P = iR * V = 3A * 12V = 36W.
For the voltage source, P = IV = 3A * 12V = 36W.
So, both the resistor and voltage source are receiving power (36W each).
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Imagine the same wooden model train car is traveling at 0. 25 m/s and hits another model train car that is at rest. Their magnets allow them to couple and keep moving. If both cars have a mass of 0. 20 kg, what is their new speed?
Their new speed is 2.5 m/s. The result is obtained by using the Law of Conservation of Momentum.
What is the Law of Conservation of Momentum?The Law of Conservation of Momentum states that the total momentum in a closed system before and after the collision is constant.
The formula for this law can be expressed as
m₁v₁ + m₂v₂ + ... = m₁v₁' + m₂v₂' + ...
Where
m₁ and m₂ = mass of objectsv₁ and v₂ = initial speed of objectsv₁' and v₂' = final speed of objectsThe wooden model train car is traveling at 0.25 m/s. It hits another same model train car that is at rest. They are united and move together. Each mass of the car is 0.20 kg.
Find their new speed!
We have
m₁ = m₂ = m = 0.20 kgv₁ = 0.25 m/sv₂ = 0Since they are united after the collision, they have the same speed. So,
m₁v₁ + m₂v₂ = m₁v₁' + m₂v₂'
m(v₁ + v₂) = (2m)v'
0.20(0.25 + 0) = (0.20)v'
0.50 = 0.20v'
v' = 2.5 m/s
Hence, they move together with a new speed of 2.5 m/s.
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5. a -6.5 μc charge experiences a downward electric force of 5.9 n. find the magnitude and direction of the electric field at the position of this charge.
5. A 6.5 uC charge experiences a 5.9 N electric force that's also oriented downward. Find the direction and size of the electromagnetic current where this charge is located. 6. In an uniform electrical field, a protons is released form rest and speeds to the west with a velocity of 87 m/s. Find the electric field's direction and intensity.
Why is it difficult to determine the electromagnetic current of a loaded disc using Gauss's law? Describe the electrostatic force that pulls the objects closer.
When the point charges +8.44 106 C and Q are distanced by 1.31 m, the electrostatic attractive force between them has a value of 0.975 N. Compute the charge's sign and magnitude.
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