Newton's second law is also known as the law of acceleration or the force law. It states that the acceleration of an object is directly proportional to the net force acting on the object and inversely proportional to its mass.
Newton's second law, also known as the law of acceleration or the force law, states that the acceleration of an object is directly proportional to the net force acting on the object and inversely proportional to its mass.
In other words, it says that the more force applied to an object, the greater its acceleration will be, and the more massive an object is, the less it will accelerate for a given force.
This law is typically represented mathematically as F=ma, where F is the net force, m is the mass of the object, and a is the acceleration of the object. It is a fundamental principle in the study of motion and is used to calculate the motion of objects under the influence of forces.
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What are the examples of renewable and nonrenewable resources?.
A renewable resource, also known as a flow resource, is a resource that gets replenished naturally to replace the portion depleted by usage and consumption.
Examples: solar energy, tidal energy, wind energy, hydro power, bio-energy etc.
A non-renewable resource is a natural resource that cannot be readily replaced by natural means at a pace equal to keep up with consumption rate.
Examples: fossil fuels, natural gas, nuclear energy, natural gas etc
Rank the six combinations of electric charges on the basis of the electric force acting on q1. Define forces pointing to the right as positive and forces pointing to the left as negative.
Therefore, even though the charge is negative, the mod will make it positive, making the electric field also positive. Consequently, the electric field is always positive.
What is positive and negative forces?Force is the pushing or pulling of an object. The force acting on a body in the opposite direction from the applied force is referred to as a negative force. Positive force is applied, and it is directed to the right, as opposed to negative force, which is directed to the left.This means that two positively charged items will push or repel one another if they get close to one another. A positively charged object and a negatively charged object will be drawn to one another and attempt to combine if they are in close proximity.A small positive test charge q is subjected to the Coulomb or electrostatic force F, which is the definition of the electric field E as E=Fq E = F q.To learn more about electric refer to:
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How will the electrostatic force be changed if the distance between two electric charges is doubled and one of the charges is tripled?.
The product of the charges and the square of the separation distance have opposite effects on the electrostatic force. The force would be tripled if one of the charges were tripled.
The force would be reduced by nine times with a tripling of the distance.
When there is a doubled distance between two charges, what will happen to the electrostatic force?As the distance between the two charges increases by a factor of four, so does the magnitude of the force. As a result, the attraction or repulsion decreases to one-fourth of its original value if the distance between the two charges is doubled.
If the distance between two charges is tripled, what happens to the force between them?The force between two charged objects is inversely proportional to the square of their distance, according to Coulomb's Law. As a result, the force will weaken by a factor of 9 if the distance is tripled.
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What is latency and why is it important?.
Latency is the amount of time it takes for a packet of data to travel from its origin to its destination. Latency is measured in milliseconds.
In general, latency is a time delay between the cause and effect of some physical change in the system being observed. Lag, as it is known in gaming circles, is the time lag between the input to a simulation and the visual or auditory response, which is frequently caused by network latency in online games.
Latency is caused by the limited velocity at which any physical interaction can propagate. This velocity's magnitude is always less than or equal to the speed of light. As a result, regardless of the nature of the stimulation, every physical system with any physical separation (distance) between cause and effect will experience some sort of latency.
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If the rms value is 125 volts, what is the peak value?
A peak-to-peak voltage (VP-P) number from the peak voltage, RMS amperage, or average voltage is displayed using this calculator.
Explain what voltage is.When charged electrons (current) are forced through a conducting loop by the pressure of an electric circuit's power source, they can perform tasks like lighting a lamp. In a nutshell, voltage equals pressure and is expressed in volts (V).
Why is voltage named that?A derived unit for electrostatic field, voltage, & electromotive force is the volt (symbol: V). The Italian physicist Eugenio Volta (1745–1827), who created the voltaic pile, arguably the first chemical battery, is honoured by having his name attached to the volt.
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How do you find the magnitude of three vectors?.
The magnitude of a vector is a scalar value that represents the length or size of the vector. It can be found by using the Pythagorean theorem.
The square root of (the x component squared + the y component squared + the z component squared)
For example, if the vector is (3, 4, 2), then you would find the magnitude as follows:
Square the x component (3) to get 9
Square the y component (4) to get 16
Square the z component (2) to get 4
Add the squares (9 + 16 + 4) to get 29
Take the square root of the sum (√29) to get the magnitude, which is approximately 5.38516
So the magnitude of the vector (3, 4, 2) is 5.38516
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Are moles and molecules the same?.
Thus, a mole is an amount of 6.02210^23 particles, whereas a molecule has several atoms of different elements that are chemically connected to one another.
We use a unit called a mole to scale up from the molecular level to the laboratory level. A mole of a substance is the same number of molecules of that substance as there are carbon-12 atoms in precisely 12 g of the element. Chemists employ the mole, a very significant unit of measurement.
Like a dozen eggs means twelve eggs, having a mole of anything indicates you have 602,214,076,000,000,000,000,000 (equals to 6.02210^23) of that thing. For extremely small objects like atoms, molecules, or other particles, chemists must quantify using moles.
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What is the weight of a 1 kg mass on Earth g 9. 8 m s2 class 9?.
The weight of a 1 kg mass on Earth g 9.8 m/s² is 9.8 N.
What is weight?Weight is the name for the gravitational force that pulls objects towards the centre of the Earth. Gravity plays a role in the subsequent force that draws a mass to the planet. Thus, this force only exists between Earth and a mass, as opposed to gravitational force, which exists between any two masses.
The gravitational pull exerted by two objects when they are close to one another is determined by their individual masses and the inverse square of their individual distances. When two objects are farther apart, the forces between larger objects are stronger and the attraction between smaller objects is weaker. Newton's single weight equation can explain the relationship.
We know that force
F = ma
F = force
m = mass of an object
a = acceleration
Here,
a = g = 9.8 m/s²
m = 1 kg
Then
Force, F = 1 × 9.8
= 9.8 N
Thus, the weight of a 1 kg mass on Earth g 9.8 m/s² is 9.8 N.
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Can parallel forces be added together?.
Answer:
To find the magnitude of two or more parallel forces, simply add them together. Then, to find location of the resultant, you need to first multiply each force by the distance to where it is applied.
Explanation:
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Direction: Use the word bank to answer the following questions. Each word will be used only once. Crest Frequency Mechanical Infrared Trough Transverse Radio Gamma Wavelength Longitudinal Ultraviolet X-rays Visible Light Amplitude Electromagnetic___________________ is the maximum distance that matter is displaced from the resting position.
The largest distance that matter can be pushed from its resting position is called the electromagnetic amplitude.
What does electromagnetic wave amplitude mean? For your responses, refer to the word bank.Only one instance of each term will be utilized.Inflation Rate Transmission of Transverse Infrared through Mechanical Beta Wavelength Longitudinal ultraviolet X-rays Visible Amount of light .The largest distance that matter can be pushed from its resting position is called the electromagnetic amplitude.The wavelength of electromagnetic waves, which is the space between succeeding peaks and is measured in units of length, and the intensity, or amplitude, which is the height of each peak, are the two main characteristics of these waves.X and gamma rays can be seen on the far right.These electromagnetic waves are the ones with the highest frequencies and the shortest wavelengths.Furthermore, they are the most energetic.
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Who is the father of gravity?.
Isaac Newton
Isaac Newton formulated gravitational theory in 1665 or 1666 after watching an apple fall and asked why the apple fell straight down, rather than sideways or even upward.
SoOoOo,
Issac Newton :)
Suppose that in problem #6 above the length of the block is known to an accuracy of +/-0.3 cm, while the timer is limited to an accuracy of +/- 0.05 seconds.
a. What is the maximum speed you would calculate for this block, based on these error limits?
Maximum error > minimum error
What is the difference between minimum and maximum error?METHOD OF MIN-MAX. The min-max approach is the fundamental mechanism we will utilize to propagate faults. We establish a minimum and maximum value for each of the measures required to determine the final result when using this approach. The minimum and maximum values are (best value – uncertainty) and (best value + uncertainty), respectively.
According to the size of the sample, researchers have recognized three basic categories of error analysis. There are three categories of samples: enormous, particular, and accidental. Offset mistakes routinely result in incorrect readings.
Scale factor mistakes add (or subtract) a proportion or percentage to the correct value.
There is no pattern to random failures.
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from your finger pulse recording, is there any way to determine diastolic pressure? could a finger pulse measurement ever replace the stethoscope in determining diastolic pressure?
No, there is no way to determine diastolic pressure from a finger pulse recording.
What is diastolic pressure?Diastolic pressure is the bottom number of the blood pressure reading and is the measure of pressure in the arteries when the heart relaxes and fills with blood. It is the pressure that remains in the arteries between beats when the heart is filling with blood. When the heart beats, it contracts and pumps blood into the arteries, causing an increase in pressure, known as systolic pressure. The diastolic pressure is the pressure in the arteries as the heart is filling with blood between each beat.
No, there is no way to determine diastolic pressure from a finger pulse recording. A finger pulse measurement cannot replace the stethoscope in determining diastolic pressure because the stethoscope is a much more accurate and reliable tool for measuring diastolic pressure.
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How many grams are in 1 mole of aspartame?.
We are aware that there are 6.02*10^23 molecules in 1 mole of aspartame molecules.
To translate between mass and particle count, utilize the mole idea. 6.02*10^23 units of a material make up one mole (such as atoms, molecules, or ions). Avogadro's number or Avogadro's constant is the quantity 6.02*10^23.
The mass of one atoms, molecules, or formula units make up one mole of a substance, which is known as the molar mass of that substance. This value is represented in grams per mole.
Avogadro's number can be used to convert between molecules and moles by multiplying or dividing:
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the maximum number of electrons that can occupy the third principal energy level is_________.
a) 18
b)32
c)2
d)8
The maximum number of electrons that can occupy the third principal energy level is 18.
The number of orbitals associated with an energy level determines the maximum number of electrons that can exist at that level. Each orbital may accommodate a maximum of two electrons. Those electrons in an atom's highest energy level, known as the valence level, are the ones that give the atom its name. They are responsible for determining many of an atom's attributes, notably its level of reactivity.
Bohr and Bury came up with the formula 2n² to figure out the maximum number of electrons that can be accommodated in an orbit. This number may be found by using the formula.
In this case, we are given that the number of orbit (n) is 3.
Hence, the maximum number of electrons:
2n² = 2 × 3² = 18
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Please help. Step-by-step explanation would be appreciated
At 170 degrees A vector's orientation, or the angle it forms with the x-axis, determines its vector's direction.
How do you determine a vector's direction?A vector's direction is determined by the angle it forms with a horizontal line. tan=y2 y1x2 x1, where (x1,y1) and (x2,y2) are the initial and terminal points, respectively.
What is the secret to getting things done?Use the formula = arctan(y/x) to determine the direction of the vector v = (x, y), where is the smallest angle the vector makes with the horizontal axis and x and y are its component vectors.
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2. The timing mechanism in a grandfather's clock is based on the principles of a simple
pendulum. If your clock is gaining time (running fast) what should you do to get it running
more accurately?
To get a grandfather clock running more accurately, if it is gaining time, you should adjust the length of the pendulum.
How to adjust the length of the pendulum?
This can typically be done by moving the pendulum bob up or down the pendulum rod. A shorter pendulum will cause the clock to run faster, while a longer pendulum will cause it to run slower.
It is important to make small adjustments and wait for the clock to stabilize before making further adjustments. It's also recommended to consult the clock's manual for instructions on how to adjust the pendulum length.
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There is a child riding a wagon being pulled down the street. If someone said the child was not moving, what reference point could they have been using?
The wagon is the correct frame of reference to be used here.
What is a frame of reference?We have to note that the idea of relativity was first introduced to us by the man Albert Einstein. We have to note that the frame of reference would have to be the object that is moving.
Looking at the question, we have been told that; there is a child riding a wagon being pulled down the street then we are also told that the child was not moving. Hence the wagon that moves is the correct frame of reference.
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How do you calculate 9. 8 m s2?.
9.8 m/s² is the value of acceleration due to gravity of the earth. It is a vector quantity.
Acceleration due to gravity of the earth is mathematically defined as
g = GM/R²......(1)
Where G is the universal gravitational constant, M is the mass of the earth, and R is the radius of the earth or the distance of the object on which the acceleration due to gravity of the earth is to calculate.
We know the mass of the earth, M = 5.972 × 10²⁴ kg
Radius of the earth, R = 6.4 × 10⁶ m
Value of G, = 6.67 × 10⁻¹¹ N-m²/kg²
So, g = (6.67 × 10⁻¹¹ × 5.972 × 10²⁴)/(6.37 × 10⁶)²
g = 9.8 m/s²
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A proton, a deuteron (a hydrogen nucleus containing one proton and one neutron), and an alpha particle (a helium nucleus consisting of two protons and two neutrons) initially at rest are all accelerated through the same distance in the uniform electric field created by a very large charged plate.
Alpha particles have twice the momentum of deuterium and have a magnitude of 4. The momentum of a proton is magnitude 1.4.
A proton carries a single positive charge q (a proton is positive), a deuterium carries 2q (two protons) and an alpha particle also he carries 2q (two protons). A proton has a unit mass of m, a deuterium is 2m (containing 1 proton and 1 neutron), and an alpha particle is 4m (containing 2 protons and 2 neutrons). The electric force on a particle of charge q moving through a plate of charge Q is
[tex]F_e[/tex] = [tex]\frac{KQq}{r^2}[/tex]
K is a constant and r is its separation distance.
yes,
For proton [tex]F_e[/tex] = [tex]\frac{KQq}{r^2}[/tex]
For deuterium[tex]F_e[/tex] = [tex]\frac{KQq}{r^2}[/tex]
for the alpha part. [tex]F_e[/tex] = 2 [tex]\frac{KQq}{r^2}[/tex]
When a particle moves through an electric field, the kinetic energy of the particle is described according to energy conservation.
Work done = [tex]F_e[/tex] × r (force x displacement) = 0.5 [tex]mv^2[/tex](half mass x its velocity squared).
For proton KE = [tex]\frac{KQq}{r}[/tex]
Deuterium KE = [tex]\frac{KQq}{r}[/tex]
alpha part. KE = 2 [tex]\frac{KQq}{r}[/tex]
That is, the proton's kinetic energy is equal to that of deuterium, which is half the kinetic energy of the alpha part. The kinetic energy of particles is equal to the word expended by these particles as they move through the field, so KE = W
For proton [tex]\frac{KQq}{r}[/tex]= 0.5 [tex]mv^2[/tex]
V = [tex]\sqrt{2\frac{KQq}{mr}}[/tex]
Let's put in the square root of[tex]\frac{KQq}{mr}[/tex] = b
Therefore V = [tex]2^{0.5}[/tex] × w = 1.4b
Deuterium and alpha moieties velocities using the same transpose and method. Each.
V=b.
and
V = b
This means that the proton velocity is 1.4 times that of deuterium and the velocity of the alpha part.
For the momentum part, remember that momentum is the product of mass and velocity mv.
proton momentum = m × 1.41b
= 1.41MB
for deuterium = 2m × b
= 2MB
for the alpha part. = 4m*b
= 4MB
Alpha particles have twice the momentum of deuterium and have a magnitude of 4. The momentum of a proton is magnitude 1.4. From the velocity magnitudes above, we can see that the alpha portion and deuterium take the same amount of time. Protons take 1.4 times less time than deuterium and alpha moieties.
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A proton, a deuteron (a hydrogen nucleus containing one proton and one neutron), and an alpha particle (a helium nucleus consisting of two protons and two neutrons) initially at rest are all accelerated through the same distance in the uniform electric field created by a very large charged plate. Compare their final (a) kinetic energies, (b) momentum magnitudes, (c) speeds, and (d) time intervals needed to cover the distance. (e) How do the changes in electric potential energy compare?
What is the angle between the two vectors 3i 4j 5k and 3i 4j 5k?.
The vectors are 3i 4j 5k and 3i 4j 5k, which are identical. Therefore, there is no angle between them.
The angle between two vectors can be found by using the dot product formula which is (A.B) = (||A|| * ||B||) cos(theta)
in vector mathematics, the angle between two vectors can be calculated using the dot product of the vectors. The dot product is a scalar value that is equal to the product of the magnitudes of the vectors and the cosine of the angle between them.
In this case, the vectors are 3i 4j 5k and 3i 4j 5k, which are identical. So the dot product of the vectors will be (3i 4j 5k).(3i 4j 5k) = (33 + 44 + 5*5) = 3^2 + 4^2 + 5^2 = 9 + 16 + 25 = 50
The angle between two identical vectors is 0 degrees.
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an elevator is moving from up in a building. as it nears the 6th floor it slows down at a rate of 0.10m/s. a 75 kg man is standing on a scale inside the elevator. what is the scale reading?
How can we calculate force?.
How do you find the acceleration of a ball down a ramp?.
To find acceleration of a ball down a ramp you have to:
Determine the gravity value. If the object is on the earth it would be 9.8Determine the angle of the field with the horizontal field.Calculate the acceleration by multiply gravity with sinus angle.What is acceleration?Acceleration is a condition where the object are moving in different velocity each time where the value of difference has to be positive. Basic formula for velocity is ΔV : t. The opposite of acceleration is deceleration where the first velocity is higher than the second.
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Match each variable to the unit associated with it.
The units of the derived quantities are matched as;
P → wattsW → Joulesη → %IMA → no unitsWhat is derived units?
Derived units are units of measurement derived from the seven base units specified by the International System of Units (SI).
The following are some derived quantities and their corresponding derived units.
Power, P, is measured in wattsWork, W, is measured in JoulesEfficiency, η, is measured in percentage ( % ) Ideal mechanical advantage ( IMA ), is dimensionless because it is the ratio of output force to input force. So it will have no units.Learn more about derived units here: https://brainly.com/question/5114086
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What risks were taken by general macarthur, the commander of the united nations forces, when he ordered the invasion at inchon?.
The Inchon invasion put a strain on the resources of the UN forces, as they had to commit significant amounts of manpower and material to the battle.
What is the amounts ?The amount is the total number or quantity of something. It can refer to a physical unit that is being measured, such as a volume or distance, or it can refer to a monetary value. In terms of money, it is the numerical value of a financial transaction. It is also used to refer to the sum or total of certain elements in a set or collection, such as the count of a certain type of item.
1. Risk of Failure: The Inchon invasion was a risky endeavor, as it relied on a daring and unorthodox maneuver. It was a high-stakes gamble with the possibility of failure that could have had disastrous consequences for the United Nations forces.
2. Risk of Casualties: Any military operation carries with it the risk of casualties. The Inchon invasion was no exception, with the potential for heavy casualties among the UN forces.
3. Risk of Surprise: The Inchon invasion was a surprise attack, and it was possible that the North Korean forces could have been prepared and ready to repel the invasion.
4. Risk of Overstretched Resources: The Inchon invasion put a strain on the resources of the UN forces, as they had to commit significant amounts of manpower and material to the battle. This could have led to an overextension of resources and left the UN forces vulnerable elsewhere.
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Do mass depends on velocity?.
Mass of an object does not depends on velocity of an object.
Mass is a scalar quantity that measures the amount of matter in an object, and it remains constant regardless of the object's motion.
It is a property of the object itself and does not depend on its location or motion. On the other hand, velocity is a vector quantity that measures both the speed and direction of an object's motion. It can change as the object moves or as its direction of motion changes.
There is no direct relationship between mass and velocity, and they do not affect each other. They are independent physical quantities that are used to describe different aspects of an object. The mass of an object determines its inertia and gravitational attraction, while velocity determines how fast and in what direction an object is moving.
For example, a car can have the same mass whether it is moving at 60 mph or standing still, but the velocity is different in both cases.
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Does latency affect performance?.
Yes, latency affect performance.
Latency affect performance, especially in applications that require real-time communication or control. Latency refers to the amount of time it takes for a data packet to travel from its source to its destination, and it is typically measured in milliseconds (ms). High latency can result in delays, which can lead to slower response times, decreased throughput and lower quality of service.
In applications such as online gaming, financial trading, virtual reality, video conferencing and autonomous vehicles, high latency can lead to a poor user experience, as the actions of the user are not reflected quickly on the screen. It can also lead to errors and inaccuracies in the execution of trades or the operation of self-driving cars.
In other applications such as streaming services or website, high latency can result in buffering, interruptions, and poor video quality which can lead to a poor user experience.
In summary, latency can have a significant impact on performance, especially in applications that require real-time communication or control, and it is important to keep latency as low as possible to ensure good performance and a good user experience.
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What is Newton's 2nd law measured in?.
Newton's second law is measured in force. The required magnitude of force can be computed by taking the product of mass and acceleration of any body.
Mathematically, F = m a, where, F is the force, m is mass, a is acceleration.
In the above relation, force and acceleration are vectors.
Second law can also be explained as the rate of change of momentum which is directly related with that of applied force.
F ∝ m (v - u )/t
where, v is final velocity
u is initial velocity
m is mass
t is time
F is applied force
Thus, Newton's second law is measured in force.
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tony made a list of all fruits that have only one seed and recorded their shape and size. what can he find out from the list
Information that Tony can find out from the list of fruits with only one seed and shape of the seed include:
Patterns in fruit shapePatterns in fruit sizeRelationships between shape and sizeWhat can Tony find out ?Tony may be able to notice patterns in the shape of the fruits on his list. For example, he may notice that most of the fruits on the list are round or oval in shape. Tony may be able to notice patterns in the size of the fruits on his list. For example, he may notice that most of the fruits on the list are small or medium-sized.
Tony may be able to notice relationships between the shape and size of the fruits on his list. For example, he may notice that round or oval-shaped fruits tend to be smaller than those that are elongated or irregular in shape.
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