earth pulls on the moon, and the moon pulls on earth, which tells us that

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Answer 1

Answer:

that the force of the pull is equal due to Newton's third law or some kind of answer like that.

Answer 2

There is an invisible force of gravity that binds the two together. This

gravity is what causes the moon to orbit the Earth.

What is gravity?

Gravity is a natural phenomenon by which all physical objects attract each other. It is most commonly experienced as the force of attraction between masses such as planets, stars, and galaxies. It is also the force that holds us to the ground and keeps us from floating away. The strength of gravity depends on the masses of the objects, the distance between them, and the acceleration due to gravity. Objects with greater mass, such as planets, have a stronger gravitational pull than objects with lesser mass. The gravitational force between two objects is directly proportional to the product of their masses and inversely proportional to the square of the distance between them. Gravity is one of the fundamental forces of nature and plays an important role in the structure and evolution of the universe.

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samson is a weightlifter who typically lifts 240 pounds. according to weber’s law, how much more weight (beyond 240 pounds) would samson require to sense an increase in weight?

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Weber's Law is a principle in psychology that states that the difference threshold, or just noticeable difference (JND), between two stimuli is proportional to the magnitude of the stimuli. In other words, the greater the weight, the more weight is needed to be added for the change to be noticeable.

Applying this to Samson's weightlifting, we can calculate the JND by using the formula JND = k * stimulus, where k is a constant of proportionality known as Weber's fraction. In this case, the stimulus would be 240 pounds, the weight that Samson typically lifts.

A commonly used value for Weber's fraction in weightlifting is 0.2, meaning that the JND is 20% of the stimulus. So, for Samson, the JND would be 240 * 0.2 = 48 pounds. This means that for Samson to notice an increase in weight beyond 240 pounds, the weight would need to be increased by at least 48 pounds.

Therefore, if Samson wants to sense an increase in weight, he would need to lift a minimum of 240 + 48 = 288 pounds. However, it is important to keep in mind that the Weber's fraction may vary between individuals, and it may also depend on the specific task and the individual's level of experience and sensitivity.

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A 0. 343 kg mass is attached to a spring and undergoes simple harmonic motion with a period of 0. 92 s. The total energy of the system is 1. 3 J. Find the amplitude of the motion. Answer in units of m

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The amplitude of the motion is 0.375 m.

The amplitude of the motion can be found using the formula:

[tex]E = \frac{1}{2} kA^2[/tex]

where E is the total energy of the system, k is the spring constant, and A is the amplitude.

We can find k using the formula:

[tex]k = \frac{2\pi^2m}{T^2}[/tex]

where m is the mass of the object and T is the period of the motion.

Substituting the values in the formula for k, we get:

[tex]k = (2 \pi ^2 * 0.343 kg) / (0.92 s)^2 = 2.76 N/m[/tex]

Now that we have k, we can find the amplitude by substituting k and E in the formula for E:

[tex]A = \sqrt{2E/k} = √(2 * 1.3 J / 2.76 N/m) = 0.375 m.[/tex]

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Can you receive a shock severe enough to prevent you from releasing the wire from an ordinary outlet with dry hands?
A. No
B. Yes
Explain.

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It is possible to receive a severe electrical shock from an ordinary outlet that would prevent a person from releasing the wire with dry hands, but it is not likely.

Our body depends on neurons to receive and transmit any signals. The sodium concentration in our body is disturbed by any external stimuli, and it instigates the neurons to send electric impulses in the brain.

Upon interpreting, the brain sends back signals to the muscles connected by neurons. When a person gets a severe shock, the signal gets disturbed, and a huge surge of electricity reaches the brain. This causes the brain to send reflex stimuli for the contraction of the muscle in the palm. Thus, the person will be unable to leave the wire even if he has dry hands.

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a −50 nc charge is placed at the origin of a coordinate axis. what is the magnitude and direction of the electric field at the points:

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The magnitude of the electric field is E = 8.99 * 10^9 * (-50 * 10^-9) / x^2. The direction of the electric field at any point x is towards the origin.

The electric field at points on the x-axis due to a -50 nC charge placed at the origin is directed towards the origin, and its magnitude is given by => E = k x q / r^2,

here k is the Coulomb's constant (k = 8.99 * 10^9 Nm^2/C^2),

q is the magnitude of the charge (-50 nC),

and r is the distance from the origin.

At any point x on the x-axis, the magnitude of the electric field is

=> E = 8.99 x 10^9 x (-50 x 10^-9) / x^2.

The direction of the electric field at any point x is towards the origin.

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The tire pressures (in pounds per square inch) of tires on different cars Choose the correct answer below. A. The data are continuous because the data can only take on specific values. B. The data are discrete because the data can take on any value in an interval. C. The data are discrete because the data can only take on spacific values. D. The data are continuous because the data can take on any value in an interval.

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The statement that's true about the tire pressure (in pounds per square inch) of tires in different cars is the data are continuous because the data can take on any value in an interval (option D)

When we measure tire pressure in a car, we are working with a continuous variable. From 0 psi to a high value that would cause the tire to burst, the air pressure can range in value.

There are an infinite number of additional valid values for a continuous variable between any two values, which can be used to distinguish it from discrete variables. Contrary to popular belief, discrete variables have an integer number (0, 1, 2,...) of possible values between any two discrete values. These are regarded as countable values for a discrete variable because there are an infinite number of them.

The distinction between discrete and continuous data is that the former only accepts whole numbers as values, while the latter accepts any value along an interval. Because they can take any value on the interval, the tire pressures on various cars represent continuous data.

The question is incomplete, it should be:

State whether the data described below are discrete or continuous, and explain why. The tire pressures (in pounds per square inch) of tires on different cars Choose the correct answer below. A. The data are continuous because the data can only take on specific values. B. The data are discrete because the data can take on any value in an interval. C. The data are discrete because the data can only take on spacific values. D. The data are continuous because the data can take on any value in an interval.

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A 15-foot ladder is leaning against a vertical wall. If the bottom of the ladder is being pulled away from the wall at the rate of 4 feet per second, at what rate is the area of the triangle formed by the wall, the ground, and the ladder changing, in square feet per second, at the instant the bottom of the ladder is 12 feet from the wall?.

Answers

At the instant when the bottom of the ladder is 12 feet from the wall, the area of the triangle is decreasing at a rate of 30 square feet per second.

The area of the triangle is equal to 1/2 the product of the height of the wall and the distance from the bottom of the ladder to the wall. If the height of the wall is h and the distance from the bottom of the ladder to the wall is x, then the area of the triangle is:

A = 1/2 * h * x

Differentiating with respect to time t, we can find the rate of change in the area:

dA/dt = 1/2 * dh/dt * x + 1/2 * h * dx/dt

At the instant when the bottom of the ladder is 12 feet from the wall, h = 15 feet and x = 12 feet, so dh/dt = 0 (the height of the wall does not change with time) and dx/dt = -4 feet/second.

Plugging in these values gives:

dA/dt = 1/2 * 0 * 12 + 1/2 * 15 * -4 = -30 square feet per second

So, at the instant when the bottom of the ladder is 12 feet from the wall, the area of the triangle is decreasing at a rate of 30 square feet per second.

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Steelhead trout migrate upriver to spawn. Occasionally they need to leap up small waterfalls to continue their journey. Fortunately, steelhead are remarkable jumpers, capable of leaving the water at a speed of 8. 0 m/s.

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The statement is correct. Steelhead trout are capable of jumping at a speed of 8.0 m/s, which allows them to clear small waterfalls during their upstream migration to spawn.

Steelhead trout are fish species that migrate upstream to reproduce. During their journey, they may encounter small waterfalls that they need to overcome to continue their migration. Steelhead trout have a remarkable jumping ability, which allows them to leave the water at a speed of 8.0 m/s. This is a key adaptation that enables steelhead trout to overcome obstacles and complete their journey to reproduce. Steelhead trout are also known for their strong swimming ability, which helps them navigate upstream and find suitable spawning grounds. These adaptations make steelhead trout well-suited to their freshwater environment and contribute to their success as a species.

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two cars are driving towards an intersection from perpendicular directions. the first car's velocity is 2 22 meters per second and the second car's velocity is 9 99 meters per second. at a certain instant, the first car is 8 88 meters from the intersection and the second car is 6 66 meters from the intersection. what is the rate of change of the distance between the cars at that instant (in meters per second)?

Answers

The rate of change of distance between the two bodies is -7m/s

Given:

The first car's velocity is 2m/s

The second car's velocity is 9m/s.

At a certain time, the first car is 8m from the intersection

And at the same time, the second car is 6m from the intersection.

The rate of change of distance, i.e dx/dt, which is the speed of the car.

Using Pythagoras' theorem, their distance apart is given as

Z²=X²+Y²

Z²=6²+8²

Z²=36+64

Z²=100

Z=√100

Z=10m

Let's assume the direction,

Let's assume the first car is moving in the positive x direction, then

dx/dt=2m/s

And also the second car will be moving in a negative y direction

dy/dt=-9m/s

Now, to know dz/dt, let's use the Pythagoras formulae above

x²+y²=z²

differentiate with respect to t

[tex]2dx/dt+2dy/dt=2dz/dt\\Divide through by 2\\dz/dt=dx/dt+dy/dt\\dz/dt=2-9\\dz/dt=-7m/s[/tex]

What is the Pythagorean theorem theory?

Pythagorean theorem, the well-known geometric theorem that the sum of the squares on the legs of a right triangle is equal to the square on the hypotenuse (the side opposite the right angle)—or, in familiar algebraic notation, a2 + b2 = c2.

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two fishing boats depart a harbor at the same time, one traveling east, the other south. the eastbound boat travels at a speed 2 mi/h faster than the southbound boat. after 3 h the boats are 30 mi apart. find the speed of the southbound boat.14 incorrect: your answer is incorrect. mi/h

Answers

The speed of the southbound boat is 6 mph.

What is speed?

Acceleration or a rapid rate of motion are most frequently described as speed. When something accelerates too quickly, it may veer off course, similar to a child riding a bike down a steep hill in an uncontrollable manner.

Let speed of southbound boat be X mph

So speed of eastbound boat =X+2 mph

After 5 hrs, south boat has travelled 5X miles & east boat has travelled 5× (X+2) = 5X+10 miles

(5X)^2 + (5X+10)^2 = 50^2

25X^2 + 25X^2 + 100 + 100X = 2500

Or 50X^2 + 100X-2400 = 0

Or X^2+2X-48=0

(X-6)(X+8)=0

we get X=6 mph

Thus, the speed of the southbound boat is 6 mph.

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the brakes of a car are applied when it is moving at 110 km/h and provide a constant deceleration of meters per second per second (). how far does the car travel before coming to a stop?

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The required distance car travels in a constant deceleration before coming to a stop is 46.70 m.

The speed of the car is given as 110 km/h.

Deceleration of the car is said to be 10 m/s².

⇒ a = - 10 m/s²

Let us convert km/h to m/s.

110 km/hr = 110 × 5/18 = 30.56 m/s

Initial velocity of the car u = 0 m/s

Now, to find out distance, let us pick the correct equation of motion which suits the information about the car.

v² - u² = 2 a s

where, v is final velocity

u is initial velocity

a is acceleration

s is distance

So, putting the known values into the above equation, we have,

v² - u² = 2 a s

(30.56)² - 0 = 2 × (-10) × s

-20 s = 933.91

s = -46.70 m

Negative sign indicates that the motion is in opposite direction.

Thus, the required distance car travels before coming to a stop is 46.70 m.

The question is incomplete. The complete question is 'The brakes of a car are applied when it is moving at 100 km/h and provide a constant deceleration of 10 meters per second per second (m/s2). How far does the car travel before coming to a stop.'

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a mars rover weighs 408 lb on earth. what is the weight of the rover on mars? assume the gravitational acceleration on the surface of mars is 12.3 ft/s^2.

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The required mass of the rover when weight and gravitational acceleration is calculated to be 33.17 lb s²/ft.

The rover’s mass is the same on Earth and Mars. Its mass is 408 lb and gravitational acceleration is 12.3 ft/s2 on Earth.

We know the equation of weight as, W = m g

Making m as subject, m = W/g

Substitute 408 lb as W and 12.3 ft/s² in the above relation and obtain the mass of the rover as follows:

m = W/g = (408 lb)/(12.3 ft/s²) = 33.17 lb.s²/ft

Thus, the mass of the rover is calculated as 33.17 lb.s²/ft.

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at which moment is k=u ?

Answers

K=U when the kinetic energy of an object is equal to its potential energy. This occurs when the object is at the top of its trajectory, where the potential energy is at its maximum, and the kinetic energy is at its minimum.

What is the energy ?

The energy is the capacity of a physical system to perform work. It is an essential resource for the functioning of many systems and processes on the planet, and it can take many forms, such as kinetic, potential, thermal, electrical, chemical, nuclear, and more. Energy is converted from one form to another depending on the needs of the system and can be used to power various activities, from everyday life to complex industrial processes.

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which two planets have the most known moons orbiting it?

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Saturn and Jupiter have the most known moons orbitting it.

Saturn has more moons than Jupiter does. According to US experts, Saturn has recently surpassed Jupiter as the planet with the most moons. The number of moons around the ringed planet has increased by 20, increasing the total to 82; Jupiter has 79 natural satellites. Using the Subaru telescope on Maunakea in Hawaii, the moons were found.

Because of Saturn's orbital distance from the Sun, ice turns into a significant supply of planet-building materials. Greater planet-building resources also mean more resources for constructing moons around those planets. The majority of Saturn's moons and rings are made of ice.

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A wave traveling through air meets an object and passes through it with no change in speed brainly.

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The statement that best describes what happened to the wave is D. the wave was transmitted through the object

What is a Wave?

A wave is a dynamic disturbance of one or more quantities that propagates through time. Quantities may oscillate repeatedly around an equilibrium value at a certain frequency if waves are periodic.

Hence, because it is stated that the wave was traveling through air and met an object and passes through it with no change in speed, energy, or direction, this means it was transmitted through the object

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A wave traveling through air meets an object and passes through it with no

change in speed, energy, or direction. Which statement best describes what

has happened to the wave?

O A. The wave was absorbed by the object.

O B. The object's surface reflected the wave.

O C. The object caused the wave to refract.

O D. The wave was transmitted through the object.

a wave generator produces straight, parallel wave fronts in a shallow tank of uniform-depth water. as the frequency of vibration of the generator increases, which characteristic of the wave will always decrease?

Answers

As the frequency of vibration of the wave generator increases, the wavelength of the waves will decrease.

Waves are unsettling influences that movement through a medium, like water or air, and move energy without the exchange of mass. The recurrence of a wave alludes to the quantity of complete wave cycles that happen in a unit of time, normally estimated in Hertz (Hz). At the point when the recurrence of a wave generator expands, the frequency of the subsequent waves diminishes. This is on the grounds that the frequency is the distance between two successive pinnacles (or box) of a wave. In the event that the recurrence builds, there are more tops in a given unit of time, and that implies the distance between them should diminish. Subsequently, the frequency of the waves diminishes.

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Three point charges are placed at the corners of an equilateral triangle. Assuming only electrostatic force are acting A.if the charges have different magnitudes and different signs, the system will be equilibrium
B.the system will be in equilibrium if the charges have the same magnitudes but different signs.
C.the system can never be in equilibrium
D.the system will be in equilibrium if the charges rotate about the centre of the triangle.

Answers

The equilateral triangle's corners. The system will be in equilibrium if the charges rotate about the triangle's center, assuming that only electrostatic force is at play.

Where do forces come from?

The interactions of two (or more) things result in forces. Each applies an equal but opposing power to the other. The object is propelled by external forces. The object's overall motion is unaffected by an interior force.

What features does force have?

The characteristics of lines of force are that they begin at a positive charge and end at a negative charge, that they never cross paths with one another, that they are proportional to charge, and that they cannot pass through a conductor.

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consider an organ pipe 34.3 cm long that has one open and one closed end. what is the fundamental pitch of this pip?

Answers

The fundamental pitch of an organ pipe is determined by the length of the pipe and the velocity of sound in the material that the pipe is made of.

For a pipe with one open end and one closed end, the fundamental pitch (f) can be calculated using the formula:

f = v / (4 * L)

where v is the velocity of sound in the material, and L is the length of the pipe.

For a 34.3 cm long pipe, the fundamental pitch can be calculated as follows:

f = v / (4 * 0.343 m)

Note that the length of the pipe needs to be converted from centimeters to meters.

The velocity of sound in air at room temperature is approximately 343 m/s, but this value can vary slightly based on the temperature and pressure of the air. The velocity of sound in other materials will be different.

Once the velocity of sound in the material has been determined, the fundamental pitch can be calculated by substituting this value into the formula.

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A mack truck and a volkswagen traveling at the same speed have a head-on collision. The vehicle that undergoes the greatest change in velocity will be the.

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The vehicle that undergoes the greatest change in velocity will be the Volkswagen.

In a head-on collision, the vehicle with the smaller mass will undergo the greatest change in velocity. This is because the momentum of an object is equal to its mass times its velocity, and the total momentum of the system must remain constant according to the law of conservation of momentum.

Since the Volkswagen has a much smaller mass than the Mack truck, it will experience a much larger change in velocity compared to the truck. This means that the Volkswagen will come to a stop much more quickly and with a greater force than the Mack truck. The outcome of the collision will depend on various factors such as the speed of the vehicles, the mass of the vehicles, and the material properties of the vehicles.

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if v in r 3 and v · v = 0, then v is the zero vector. is it true or false? explain your answer.

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The statement, v in r 3 and v · v = 0, then v is the zero vector, is true.

In linear algebra, a vector v in R^3 (which means a 3-dimensional real vector space) is said to be a zero vector if all its components are equal to zero. This vector is also known as the null vector or null element and is denoted by the symbol 0.

The dot product of two vectors, denoted by v · v, is a scalar quantity that measures the cosine of the angle between two vectors. If the dot product of a vector with itself is equal to zero, it means that the cosine of the angle between the two vectors is zero, which implies that the two vectors are orthogonal (i.e., they are at right angles to each other).

Therefore, if v · v = 0, it follows that the vector v is orthogonal to itself, which is possible only if all its components are equal to zero. Hence, in this case, v must be the zero vector.

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physics formula
Work Formula The work formula measures the multiplication of magnitude of displacement d and the component of the force. W = F × d × cosθ

Answers

W = fd means that the work is equal to the force f times the distance d. The work is W = fd cosФ if the force is applied at an angle of Ф to the displacement.

What are work state and its SI unit?

Work is a unit of energy that is generated when a force is applied to the body and the body is moved. The Joule is the SI unit of work.

Is there no displacement while work?

A displacement and the force that triggered it are necessary for a force to be considered to have accomplished work on an item.

How does relocation impact the work?

The displacement of the body: At constant load and constant angle between force and displacement, work is directly proportional to the displacement.

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The work formula is used to calculate the amount of energy required to move an object a certain distance.

What is energy ?

Energy is a fundamental concept in physics. It is defined as the capacity for doing work or the ability to produce change. Energy can be found in many forms, such as thermal, kinetic, chemical, electrical, gravitational, and nuclear. It can be converted from one form to another and can be transferred from one object to another. Energy is neither created nor destroyed, but can be changed from one form to another. This concept is known as the law of conservation of energy. In physics, energy is used to describe the ability to do work.

It is expressed as the multiplication of the magnitude of displacement (d) and the component of the force (F) acting on the object. The angle θ is the angle between the direction of the force and the direction of the displacement. The cosine of this angle (cosθ) is used to account for the fact that the force does not always act in the same direction as the displacement. The work formula can be expressed
as:  W = F × d × cosθ.

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how are the borders of the earth’s tectonic plates defined?

Answers

Three types of plate motion are convergence, divergence, and transformation. Convergence is the movement of plates into one another; divergence is the movement of plates apart.

In what ways do tectonic systems differ?

Three different types of continental boundaries are produced by the movement of the plates: convergent boundaries, where plates move toward one another; divergent boundaries, whereby plates move apart; & transform boundaries, where plates move laterally with respect to one another.

What is tectonic's equivalent in Greek?

Greek term tekton, which means builder, is the origin of the word "tectonics." The deformation of the lithosphere, or solid portion of the earth's crust, is a subject of study in the science of geology, including both its causes and effects.

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the scalar value that describes how far an object travels between point a and b

Answers

The distance is a scalar quantity that describes how far an object travels between point a and b.

What is the distance scalar?

Distance is not a vector quantity, instead it is a scalar quantity having simply magnitude. It implies that only the size of the distance travelled is taken into consideration when an object travels, regardless of its direction.

What in physics is a scalar value?

A scalar is a physical quantity whose magnitude is a complete description of it. Volume, density, speed, energy, mass, and time are a few examples of scalars. Scalar quantities can be represented by their size or magnitude and do not require any other information.

What is the value of the vector?

A physical quantity that includes both directions and magnitude is known to as a vector quantity. A letter script with a "hat" circumflex, such as "û," is used to represent a vectors with a value equal to one. This form of vector is termed as a unit vector.

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The scalar value that describes how far an object travels between point a and b is the distance, which is a scalar quantity.

What is  scalar quantity ?

A scalar quantity is a physical quantity that is completely described by a magnitude or numerical value. It does not have any direction or orientation associated with it and is completely independent of the coordinate system used. Examples of scalar quantities include temperature, mass, volume, speed, energy and time. Scalar quantities are represented mathematically by real numbers and are usually denoted using lowercase letters.

It is defined as the absolute value of the difference between the two points and is measured in units such as meters, feet, or kilometers. Distance is a measure of length and does not take into account direction or any other factors, like time.


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if the height of the building is 19.2 m , what must the initial speed be of the first ball if both are to hit the ground at the same time?

Answers

The initial speed of the first ball must be 19.6 m/s if both are to hit the ground at the same time.

The time it takes for a ball to fall from a height h to the ground can be calculated using the formula:

t = √(2h / g)

where:

   t is the time it takes for the ball to fall

   h is the height of the building (19.2 m)

   g is the acceleration due to gravity (9.8 m/s^2)

So, the time it takes for the first ball to fall 19.2 m is:

t = √(2 * 19.2 m / 9.8 m/s^2) ≈ 2.67 s

Since both balls must hit the ground at the same time, the time for the second ball to fall the same distance must also be 2.67 s.

The initial velocity of an object that falls for a time t from a height h can be calculated using the formula:

v = √(2gh)

where:

   v is the initial velocity of the ball

   h is the height of the building (19.2 m)

   g is the acceleration due to gravity (9.8 m/s^2)

So, the initial velocity of the first ball must be:

v = √(2 * 9.8 m/s^2 * 19.2 m) ≈ 19.6 m/s is the initial speed of the first ball.

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Two vectors 10cm and 8cm form an angle of 60 degrees. find the magnitude of difference and the angle with respect to the larger vector.

Answers

The magnitude of difference and angle is 86.48°.

How to calculate magnitude?

To find the magnitude of the difference between two vectors, subtract the magnitude of the smaller vector from the magnitude of the larger vector. The magnitude of the larger vector is 10 cm and the magnitude of the smaller vector is 8 cm, so the magnitude of the difference is 10 - 8 = 2 cm.

To find the angle with respect to the larger vector, use the dot product. Let's denote the larger vector as A and the smaller vector as B. The dot product of A and B is given by: A•B = |A||B|cos(Θ)

Where Θ is the angle between the two vectors. From the problem, the angle between the two vectors is 60 degrees, so substitute that value into the equation:

A•B = 10 x 8 x cos(60)

A•B = 10 x 8 x 0.5

A•B = 40

Now, find the angle Θ between the difference vector (A - B) and the larger vector (A) by using the dot product formula:

(A - B)•A = |A - B||A|cos(Θ)

Simplify this expression by substituting the known values:

(A - B)•A = 2 x 10 x cos(Θ)

Divide both sides by 20 to isolate cos(Θ):

cos(Θ) = (A - B)•A / (2 x 10)

cos(Θ) = (A - B)•A / 20

cos(Θ) = (A•A - B•A) / 20

cos(Θ) = (A•A - (A•B / |A|)) / 20

cos(Θ) = (A•A - (40 / 10)) / 20

cos(Θ) = (A•A - 4) / 20

cos(Θ) = (100 - 4) / 20

cos(Θ) = 96 / 20

cos(Θ) = 4.8

Finally, we can use the inverse cosine function to find the angle Θ:

Θ = acos(cos(Θ))

Θ = acos(4.8)

The angle Θ is approximately 86.48°, which is with respect to the larger vector.

In summary, the magnitude of the difference between the two vectors is 2 cm and the angle with respect to the larger vector is approximately 86.48°.

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if your tape pieces stop attracting or repelling each other, you should...

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Due to the identical charge on both pieces of tape  repel , they will repel one another.

How is tape used?

A coating of an adhesive comprised of big molecules known as polymers is applied to pressure-sensitive adhesive tapes. These substantial polymers expand out when the tape is pressed against a surface. The interaction and bonding between the surface and the spread-out glue now makes the tape adhere.

What advantages does tape offer?

The longest-lasting magnetic medium in the IT sector is tape, which has a variety of advantages over rotating drum and flash technology. Cost and capacity are two of these. Once set up, a tape network is inexpensive to run and simple to expand. Tape is now almost as simple to use as NAS since it integrates directly with file systems

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if a nucleus were the size of the eraser on the end of a pencil (diameter = 0.125 in) what is the diameter of the ""atom"" with a nucleus this size? (give your answer in feet.)

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The size of an atom is primarily determined by the size of its electron cloud, which is much larger than the size of its nucleus.

The diameter of an atom can be estimated using the Bohr model, which states that the electron orbits the nucleus at a distance proportional to the square of the principal quantum number. For a hydrogen atom, the most basic and simplest atom, the radius of the first orbital is approximately 0.0529 nanometers.

To convert this value to feet, we can use the conversion factor of 1 foot = 30.48 cm = 30.48 x 10^-2 m = 30.48 x 10^8 nm. Therefore, the diameter of a hydrogen atom in feet can be estimated as:

2 * 0.0529 nm * (30.48 x 10^8 nm/foot) = 3.29 x 10^-10 feet

Note that this is an estimate and the actual size of an atom may vary slightly depending on the atom's structure and the conditions in which it is observed. However, this estimate can give us a rough idea of the scale of an atom in comparison to a pencil eraser, which is much larger.

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According to the video, what types of substances should be used under a fume hood? Choose all that apply. volatile toxic concentrated all substances

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Compounds with a limited solubility in water and a high vapour pressure are known as volatile organic compounds. Many VOCs are compounds created by humans and employed in the production of paints, medications, and refrigerants

Thus, VOCs are often fuel oxygenates like methyl tert-butyl ether (MTBE), industrial solvents like trichloroethylene, or byproducts of chlorination in water treatment like chloroform and solubility.

Petroleum fuels, hydraulic fluids, paint thinners, and dry cleaning products all frequently include VOCs. VOCs are typical pollutants in groundwater.

Certain solids or liquids emit volatile organic compounds (VOCs) as gases. Many different compounds are included in VOCs, some of which may have negative short- and long-term health impacts.

Thus, Compounds with a limited solubility in water and a high vapour pressure are known as volatile organic compounds. Many VOCs are compounds created by humans and employed in the production of paints, medications, and refrigerants.

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Determine a so that the vector u = <−3 −8 > is a linear combination u = av+ bw of vector
v = <−3 −1>, w = <−2 −3 >

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The value of a is calculated to be -1 from the equation of linear combination of vectors.

The given vectors are,

v = <−3 −1>, w = <−2 −3 >, u = <−3 −8 >

To find the value of a substitute the value of the vectors in the given equation,

u = av + bw

<-3, -8 > = a <-3, -1> + b <-2, -3>

The vector can be written as follows,

-3a -2b = -3 ----(1)

-a -3b = -8 ----(2)

Solving the equations, we have

-3a -2b = -3  

a + 3b = 8 ⇒ 3a +9b = 24

7 b = 21

b = 3 and a = -1

Thus, the value of a is determined to be -1.

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what is the difference between the solar and lunar calendars?

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The solar calendar is based on the earth's orbit around the sun, with a year being 365 or 366 days long, depending on whether it's a leap year. The lunar calendar is based on the phases of the moon, with a month being 29.5 or 29.53 days long.

The solar calendar has a fixed year length, while the lunar calendar has 12 or 13 lunar months in a year, which is about 11 days shorter than a solar year. The difference between the two calendars leads to the occurrence of lunar holidays like the Islamic and Jewish calendars, which drift through the solar calendar year. The solar calendar is used in most countries around the world, while the lunar calendar is still used in some countries, especially those with religious traditions linked to the phases of the moon.

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as the frequency of a wave decreases, what happens to the wavelength and energy?

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As the frequency of a wave decreases, the wavelength increases, and the energy decreases.

What is Wavelength ?

The wavelength and energy of a wave are inversely proportional, meaning that as one increases, the other decreases, and vice versa.

In the case of a wave, as the frequency decreases, the wavelength increases. This is ecause the speed of a wave is constant, and it is equal to the frequency multiplied by the wavelength (v = fλ). As the frequency decreases, the wavelength must increase in order to keep the product (v) constant.

At the same time, as the frequency decreases, the energy of the wave decreases as well. This is because the energy of a wave is proportional to the square of its frequency (E ∝ f^2). As the frequency decreases, the energy decreases in proportion to the square of the decrease in frequency.

Therefore, as the frequency of a wave decreases, the wavelength increases, and the energy decreases.

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