a 1810 kg pile driver is used to drive a steel i-beam into the ground. the pile driver falls 2.04 m before contacting the beam, and it drives the beam 16.4 cm into the ground before coming to rest. find the magnitude of the average force the beam exerts on the pile driver while the pile driver is brought to rest. the acceleration of gravity is 9.8 m/s 2 . answer in units of n.

Answers

Answer 1

The magnitude of the average force the beam exerts on the pile driver while the pile driver is brought to rest is 17,738 N.

What is the average force the beam exerts on the pile driver?

The average force the beam exerts on the pile driver is determined by applying Newton's third law of motion.

Newton's third law of motion states that action and reaction forces are always equal and opposite.

Mathematically, Newton's third law of motion is given as;

Fa = Fb

where;

Fa is the force applied by object AFb is the reaction experienced by object B

The magnitude of the average force the beam exerts on the pile driver while the pile driver is brought to rest is equal to the weight of the driver acting downwards.

Downward force exerted by the driver = 1810 kg x 9.8 m/s² = 17,738 N

Upward force exerted on the driver by the beam = -17,738 N

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Related Questions

at the moment that the hammer thrower shown above is spinning at an angular rate of 3.57 revolutions per second, with the ball located 1.19 m from the center axis of the spin, what is the tangential velocity of ball?

Answers

The tangential velocity of the ball is 4.25 m/s.

The information given to us is the hammer thrower shown above is spinning at an angular rate of 3.57 revolutions per second, with the ball located 1.19 m from the center axis of the spin. The tangential velocity of the ball can be calculated by multiplying the angular rate (3.57 revolutions per second) with the radius of the ball (1.19 m) from the center axis of the spin. the formula for calculating it: Tangential velocity = angular rate * radius = 3.57 * 1.19 = 4.25 m/s . This results in a tangential velocity of 4.25 m/s.

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What event made it possible for photons to begin to travel freely through the universe when the universe was about 380,000 years old?

Answers

The universe had expanded and cooled enough for electrons to combine with nuclei to form neutral atoms.

The universe is all of space and time and its contents, along with planets, stars, galaxies, and all other forms of count number and strength. The huge Bang theory is the winning cosmological description of the improvement of the universe.

When the universe was about 380,000 years old universe had expanded and cooled enough for electrons to combine with nuclei to form neutral atoms.

It took 380,000 years for electrons to be trapped in orbits around nuclei, forming the primary atoms. These were mainly helium and hydrogen, that is still by means of far the maximum abundant factors in the universe. Gift observations propose that the primary stars fashioned from clouds of gasoline around hundred and fifty–200 million years after the Big Bang. Heavier atoms such as carbon, oxygen, and iron, have in view that been constantly produced in the hearts of stars and catapulted at some stage in the universe in marvelous stellar explosions known as supernovae.

Therefore, the event that made photon move freely in the universe as the universe had expanded and cooled enough for electrons to combine with nuclei to form neutral atoms.

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A rocket burns fuel at a rate of 283 kg/s and
exhausts the gas at a relative speed of 8 km/s.
Find the thrust of the rocket.
Answer in units of MN.

Answers

Thrust force of the rocket is, T = 2.264 MN

Thus, the force required to move the rocket through the air is 2.264MN. This force is generated because of Newton's third law of motion.

What is thrust?

Thrust is the force which moves the rocket through the air, and through space. Thrust is generated by the application of Newton's third law of motion; "For every action there is an equal and opposite re-action. "

Calculation:

The formula for calculating, thrust force of the rocket is T= vdm/dt

Where, T is the thrust of the rocket

v is th relative speed = 8km/s (given in question)

dm/dt is the mass flow rate = 283kg/s (given in question)

Substituting the values,

T = 8km/s × 1000m/1km × 283kg/s

= 2.264 (10^6N=2.264MN)

Therefore, main answer is that

Thrust force is, T = 2.264 MN

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A massive tractor is rolling down a country road. In a perfectly inelastic collision, a small sports car runs into the tractor from behind. Which vehicle experiences a larger change in kinetic energy?.

Answers

Small sports car will experience a larger change in kinetic energy during inelastic collision.

In inelastic collision we know that loss of energy is possible. It means law of conservation of energy is not possible. An inelastic collision is an impact where there is a deficiency of motor energy. While force of the framework is moderated in an inelastic collision, motor energy isn't. This is on the grounds that some dynamic energy had been moved to something different. Nuclear power, sound energy, and material distortion are reasonable offenders.

Car has small mass as compared to a massive tractor. Due to its high mass car have greater speed as compared to massive tractor. During inelastic collision when a small mass car is collided with large massive tractor ,it transfers most of its energy to a massive tractor and lost that energy in form of heat.

Hence, a small sports car experience a larger change in kinetic energy.

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a uniform beam is suspended horizontally by two identical vertical springs that are attached between the ceiling and each end of the beam. the beam has mass 225 kg, and a 175-kg sack of gravel sits on the middle of it. the beam is oscillating in shm, with an amplitude of 40.0 cm and a frequency of 0.60 cycles/s.What is the frequency of the subsequent SHM of the beam?
1. What is the amplitude of the subsequent SHM of the beam?
2. If the gravel instead falls off when the beam has its maximum speed, what is the frequency of the subsequent SHM of the beam?
3. What is the amplitude of the subsequent SHM of the beam?

Answers

The frequency and amplitude of the SHM beam is 0.8 Hz and 0.098 m. The frequency of the SHM wave when gravel falls is 0.8 Hz and the amplitude of subsequent SHM beam is 0.4m.

(a) Mass of the spring = 225 Kg

Mass of the sack = 175 Kg

Amplitude of the beam = 40 cm = 0.40 m

Frequency of the beam = F = 0.60 cycles/s

The formula for frequency of oscillation =

= f = (1/2π) X √(k/m)

where, k = 2π²F²m

= k = 2 X (3.14)² X 0.6² X (225 + 175)

= k = 5685.37 N/m

Strength of the spring before gravels fall = x =

= x = mg / k

= x = [ (225 + 175 ) X 9.8 ] / 5685.37

= x = 0.689 m

But, the spring is stretched by the distance of x' which is expressed as,

= X = x - x'

= X = 0.689 - 0.40

= X = 0.289 m

Now, since we know that the gravel falls, thus frequency = f =

= f = (1/2π) X √(k/m)

= f= (1/ 2 X 3.14) X √ 5685.37 / 225

= f = 0.8 Hz

(b) Assuming that the spring is stretched, x = mg/k =

= x = (225 X 9.8) / 5685.37

= x = 0.3878 m

Thus, the amplitude of the sack = A = 0.3878 - 0.289

= A = 0.098 m

(c) If the gravel falls, the speed is maximum hence speed = s =

= s = A X √(k/m)

= s = 0.4 X √(5685.37/400)

= s = 1.508 m/s

The frequency = f' =

= f' = (1/2π) X √(k/m)

= f' = (1/2 X 2.14) X √(5685.37/225)

= f' = 0.8 Hz

(d) New amplitude = A' =

= A' = 0.38 + 0.038   (after calculating the new distance)

= A' = 0.4 m

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A truck is traveling at 15 m/s on a slippery road. The driver slams on the brakes and the truck starts to skid. If the coefficient of kinetic friction between the tires and the road is 0. 20, how far will the truck skid before stopping?.

Answers

A truck is traveling at speed of 15 m/s on a slippery road. It will travel a distance of 57.4 meters before finally stop.

Using the Newton's 2nd law of motion:

Fs = m . a

Where:

Fs = friction force

m = mass of the truck

a = acceleration

Fs = μ . N

    = μ . mg

Where:

μ = coefficient of kinetic friction the tires and the road = 0.2

N = normal force = m . g

Hence,

μ . mg = m . a

a = μ . g

  = 0.2 x 9.8 = 1.96 m/s²

Using the equation of motion for a decelerated motion:

v² = u² - 2as

Where:

v = final speed = 0 (since the truck finally stop)

u = initial speed

s = distance

Hence,

0 = 15² - 2 x 1.96 x s

s = 225 / 3.92 = 57.4

Hence, the truck will travel a distance of 57.4 meters before finally stop.

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in a lab experiment, a sensor is placed to detect the motion of an object relative to the sensor. the sensor was set up to identify the direction away from it as positive. a set of data including the velocity, and acceleration of the object at every 0.01s was recorded. if the values of both, velocity and acceleration, are negative, what statement below about the motion of the object is correct?

Answers

The statement below concerning the item's motion is true since the object was edging farther away from the sensor while slowing down.

What are the three categories of acceleration?

The three main categories of accelerated movements are uniform, non-uniform, and average acceleration. When an item moves in a straight path with an increase in speed occurring at regular intervals of time, this motion is referred to as having uniform acceleration.

How do acceleration and velocity compare?

Velocity is the rate at which displacement changes. The pace at which speed changes is known as acceleration. Because it consists of both magnitude and direction, velocity is a vector quantity. Since acceleration is only the rate at which velocity changes, it too is a vector quantity.

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an insulating sphere with a radius of 20 cm carries a uniform volume charge density of 1.5 x 10-6 c/m3. find the magnitude of the electric field at a point inside the sphere that lies 8.0 cm from the center.

Answers

The magnitude of the electric field at a point inside the sphere that lies 8.0 cm from the center is  4.5 × [tex]10^{3}[/tex]

Given

Radius = 20 cm

Electric field at a point inside the sphere that lies 8.0 cm from the center.

ρ =  1.5 x 10-6 c/m3

E (r) = ρr / 3εο = 1.5 × [tex]10^{-6}[/tex] × 8 × [tex]10^{-2}[/tex]/ 3 × 8.85 × [tex]10^{-12}[/tex]  = 4.5 × [tex]10^{3}[/tex]

The physical field that surrounds electrically charged particles and exerts force on all other charged particles in the field, either attracting or repelling them, is known as an electric field (also referred to as an E-field[1]). [2] It also describes the physical field of a system of charged particles. [3] Electric charges and time-varying electric currents are the basis of electric fields. A manifestation of the electromagnetic field, one of the four fundamental interactions (sometimes known as forces) of nature, is electromagnetic fields, which also include electric and magnetic fields.

Electric fields play a significant role in many branches of physics and are used in electrical engineering. For instance, in atomic physics and chemistry, the electric field acts as the attracting force that holds the atomic nucleus and electrons together in atoms. Additionally, it is the driving force for atoms' chemical bonds.

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an astronaut weighs 600 newtons at the earth's surface. if he doubles his distance from the earth's center, his weight will be

Answers

if the astronaut doubles his distance from the  earth's surface, his weight will Decrease

Newton (N) is the Unit of force. And 1 N is the force needed to accelerate 1 kilogram of mass at the rate of 1 meter/second..

In earth; 1 kg mass produce 9.81 N force in direction to the center of gravity of earth. In an other words, if mass produce 9.81 N force in  earth's surface that mass is must be 1 kg.

In your question; 600 N force is always 600N force.

When you measure the force of mass is 600 N on earth's surface, same mass is produce 600x(1.62/9.81) = 99.08 N on Moon, and 600x(3.71/9,81)= 226.91 N on Mars.

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Displacement is a measure of __________ in ________.

Answers

Displacement is a measure of the shortest distance between a starting point and an ending point in meters.

What is displacement?

The displacement can be described as the change in the position of an object. The displacement can be described as the minimum length between the initial and the final point.

The displacement is the vector parameter that exhibits both distance and magnitude. Therefore, the measurement of the displacement of an object involves the direction.

Displacement can also be defined as the shortest distance between a starting point of an object and an ending point. Displacement can be measured as a straight line and the SI unit of the displacement is meters and the C.G.S. unit is centimeters.

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what is the de broglie wavelength (in m) of the 1.00 tev protons accelerated in the fermilab tevatron accelerator? these high-energy protons are needed to probe elementary particles.

Answers

The de Broglie wavelength is 1.24 × 10⁻¹⁸ m.

What is de Broglie equation?

Specifically, the wave character of the electron is described by the de Broglie equation, which is an equation used to describe the wave aspects of matter. De Broglie proposed that particles can display characteristics of waves using the formula λ= h/mv, where λ is the wavelength, h is Planck's constant, and m is the mass of a particle travelling at a velocity of v.

Given,

K = 1.0 TeV

The energy of particle moving with a high speed is

=E² = p²c² + (m₀c²)²

Where,

p = momentum of the particle

m₀ = rest mass

∴ Momentum of the particle=

p²c² = E² - (m₀c²)² = p²

So, the de Broglie wavelength for the given particle,

λ = [tex]\frac{h}{p}[/tex] = [tex]\frac{hc}{\sqrt{E^{2}-(m_{0}c^{2})^{2}} }[/tex]

Now, the total energy of the particle is

= E = K + [tex]m_{0}[/tex]c²

Where,

K = Kinetic energy of the particle

λ[tex]_{p}[/tex] = [tex]\frac{hc}{\sqrt{E^{2}- (m_{0}c^{2})^{2}} }[/tex]

   = [tex]\frac{hc}{\sqrt{(K + m_{0}c^{2})^{2} - (m_{0}c^{2})^{2}} }[/tex]

   = [tex]\frac{hc}{\sqrt{K^{2} + 2Km_{0}c^{2} + (m_{0}c^{2})^{2} - (m_{0}c^{2})^{2}} }[/tex]

   = [tex]\frac{hc}{\sqrt{K^{2} + 2Km_{0}c^{2}} }[/tex]

   = [tex]\frac{4.1357 X 10^{-15}eVs X 3 X 10^{8}ms^{-1}}{\sqrt{(1.0 X 10^{12})^{2} + 2 X 1.0 X 10^{12} X 938.28 X 10^{6}eV^{2}} }[/tex]

   = 1.24 × 10⁻¹⁸ m

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13 points just to answer this question.

just type it in like a normal sentence if you can.

Answers

The words that fill in the blanks are;

1) Force

2) direction

3) Energy

4) Conservation of energy

5) Simple machines

6) Work

7) Work output

What is the work?

We know that work is said to be done when the force that is applied is known to  move a distance in the direction of the force. Now we know that the application of force is what would make an object to male movement. It the follows that force is the reason for motion.

The whole essence of the simple machine is that the force that is applied at one end of the machine can be able to overcome a load that is found at another point of the machine.

The work out put of the simple machine would always exceed the work input of a simple machine and by so doing the machine would now be able to make our work much easier.

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at what temperature is the fahrenheit scale reading equal to (a) twice that of the celsius scale and (b) half that of the celsius scale?

Answers

At 320° Fahrenheit, which is equal to 160° Celsius, the temperature is precisely double what it is in Celsius.

24.6C is the temperature at which a reading on the Fahrenheit scale corresponds to half of a reading on the Celsius scale.

The unit of temperature on the Celsius scale—one of the two temperature scales used by the International System of Units (SI)—is the degree Celsius. The Kelvin scale is the other temperature scale. The symbol "degree Celsius" (°C) is used to indicate both a specific temperature on the Celsius scale and a measurement of the distance or range between two temperatures. It carries the name of Anders Celsius, a Swedish astronomer who invented a scale for measuring temperature in 1742 and was born in 1701–1744.

Centigrade, which derives from the Latin centum, which means "one hundred," and gradus, which means "steps," was the name of the measurement until 1948, when Anders Celsius was honoured with the new moniker. Most powerful countries utilise this scale.

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an fm radio transmitter has a power output of 170 kw and operates at a frequency of 105.5 mhz. how many photons per second does the transmitter emit?'

Answers

An FM radio transmitter has a power output of 170 kW and operates at a frequency of 105.5 MHz. The total number of photons emitted per second by the transmitter will be 0.229* 10³¹.

Given that, power of the transmitter p = 160 kW = 160* 10³ W

Frequency of the transmitter = 105.5 MHz = 105.5* 10⁶ Hz

Number of photons emitted per second is given by the formula,

N = p / h * v = 160* 10³/(6.6* 10⁻³⁴ * 105.5* 10⁶) = 160* 10³¹/(696.3) = 0.229* 10³¹

Thus, the total number of photons emitted by the transmitter will be 0.229* 10³¹.

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the ratio of the speed of light in a vacuum to the speed of light in a transparent material is called the a. index of deflection. b. index of reflection. c. index of refraction. d. index of diffusion.

Answers

The ratio of the speed of light in a vacuum to the speed of light in a transparent material is called the index of refraction

b) index of refraction

Three light-related phenomena are the subject of extensive research.

1) Rainfall's ability to disperse sunlight in the atmosphere.

2) The changing degrees of refraction of white light, which results in the construction of a rainbow arch.

3) The complete interior reflection of the raindrop. Refraction happens when light enters one medium and then exits another, producing our reaction.

Refraction, which is indicated by the light's bending or change in direction, can occur when electromagnetic energy in the form of visible light passes from one substance or medium to another.

Total internal reflection happens when light rays enter a right-angled glass prism at an angle of incidence larger than the critical angle.

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how do population of juvenile salmon alter respond to changes in salinity

Answers

Poorly Understood

The influence of salinity, temperature and physiological development on habitat choice by juvenile salmon is poorly understood.

Answer:

Below

Explanation:

It is likely that changes in salinity can affect the population of juvenile salmon in a number of ways. For example, if the salinity of the water increases, it can lead to increased stress on the fish and make it more difficult for them to survive.

This can lead to a decrease in the population of juvenile salmon. On the other hand, if the salinity decreases, it can make it easier for the fish to survive and potentially lead to an increase in the population.

It is important to note, however, that the exact response of the population to changes in salinity will depend on a variety of factors, such as the species of salmon, the specific environment in which they are living, and the magnitude of the change in salinity.

What is the formula of energy store?

Answers

The formula for stored energy in capacitor is  1/2 QV where Q = charge and V = voltage. This is the work done to transfer charge from one plate to other plate against the force of repulsion of already present charges.

Let charge is transferred from the plate B to A. the charge on the plates is Q’ and –Q’.  To transfer a charge of dQ’ from B to A, the work done will be

dW = V dQ = Q/C dQ

After doing integration on it

Energy stored in capacitor = [tex]Q{2}[/tex]/2C = 1/2 C[tex]V^{2}[/tex] = 1/2 QV

capacitor is a device for storing electrical energy. It consists of two conductors in close proximity which are insulated from each other. Example, the parallel-plate capacitor.

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How do you find the image vertices for dilation with center 0 0 and scale factor 4?

Answers

Resolving scaling factor you find the image vertices for dilation with center 0 0

Magnification is defined as a number or conversion factor used to change the size of a shape without changing its shape. Used to increase or decrease the size of an object. If you know the dimensions of the original shape and the dimensions of the enlarged (scaled up or down) shape, you can calculate the scale factor.

For example, a rectangle is 5 units long and 2 units wide. If you scale this rectangle by a factor of two, the sides are 10 and 4 units, respectively. So you can use the scale factor to get the dimensions of the modified figure.

The coordinates of the image vertices can be calculated as follows:

For vertex A (-3, 1) then A' (4 × -3, 4 × 1) = A' (-12, 4)

For vertex B then (4, -3) then B' (4 × 4, 4 × -3) = B' (16, -12)

For vertex C (2, 3), C' ( 4 × 2, 4 × 3) = C' (8, 12)

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this imposes another condition on the charge densities on the surfaces of the plates. how can this condition be expressed?

Answers

The requirement of the charge densities on the surfaces of the plates is that the charge on the plates must be of the same amount but in the opposite direction in order to complete this field. This condition requires that the charge on the plates be of the same amount but in the opposite direction.

What is an electric field?

It is a physical field that a charged particle occupies on another particle in its environment. In order to form this field, the charge on the plates must be the same amount but going in the opposite direction.

The parallel plate capacitor is the term given to the device that holds a charge. The charge concentrations on the plate surfaces will be under the following conditions:

The charges on the plates must be identical in size and directed in the opposite direction.

This enables the addition of fields to the inside of the plates and the removal of fields from the outside.

Therefore, in order to form this field, the charge on the plates must be the same amount but applied in the opposite direction.

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what is the dvd's moment of inertia for rotation about a perpendicular axis through the edge of the disk?

Answers

The DVD's moment of inertia for rotation about a perpendicular axis through the edge of the disk is

[tex]I = \frac{3}{2}MR^{2}[/tex]

Where, M = the mass of the disk and

            R = the radius of the disk.

The parallel axis theorem connects a shape's moment of inertia about a parallel centroidal axis to its moment of inertia about any other axis.

This theorem is particularly helpful since it allows us to compute a shape's moment of inertia around any parallel axis by adding the appropriate correction factor to our knowledge of the shape's centroidal moment of inertia. Alternatively, by deducting the same factor from the moment of inertia about an axis, we can determine the related centroidal moment of inertia.

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which of these stars will take the shortest time to go from the earliest protostar stage to the main sequence?

Answers

The stars are ten times the mass of our sun will take the shortest time to progress from the earliest protostar stage to the main sequence.

What is a star?A star is simply a luminous body that is typically, frequently, and most of the time found in the night sky. A star, like the sun, is an incandescent body with a fixed point of rotation. Stars are massive celestial bodies composed primarily of hydrogen and helium that generate light and heat from the churning nuclear forges inside their cores.

The following are some of the star's characteristics:

A star is enormous.A celestial body is a star.Radiation causes a star to shine.Gravity holds a star together.A star also produce Its own lightIt also generates its own heat energy.Finally, it is clear from the preceding explanation that stars are luminous and massive bodies.

The complete question:

"Which of these stars will take the shortest time to go from the earliest    protostar stage to the main sequence?

a. the star which has the same mass as our sun.

b. the star ten times the mass of our sun.

c. the star six times the mass of our sun.

d. none of the above."

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How fast is a wave traveling that has a wavelength of 2 m and a frequency of 10 Hz?

Answers

The speed of the travelling wave is found to be 20m/s.

The relationship between the frequency of the wave, the wavelength of the wave and the speed of the wave is given by

V = fy

Where,

V is the speed of the travelling wave,

F is the frequency of the travelling wave,

y is the wavelength of the travelling wave.

The frequency of the travelling wave is given to be 10Hz and the wavelength of the travelling wave is 2m.

Now, putting all the values,

V = 10(2)

V = 20m/s

So, the speed of the travelling wave is 20m/s.

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What is a type of kinetic energy?

Answers

Kinetic energy is a type of mechanical energy.

Kinetic energy is defined as the energy produced by a body in motion. When an object is accelerated it is imperative that a certain force is applied. Applying a force requires work, and after the work is done, the energy is transferred to the object, causing it to move at a constant speed.

The energy transferred is called kinetic energy and depends on the velocity and mass of the body in motion.

Considering the kinetic energy equation above, let us consider some practical examples.

Airplanes have a lot of kinetic energy in flight because of their high speed and mass.Despite its small size and mass, a baseball has a large amount of kinetic energy after being thrown at high speed.Skiers coming down from above exhibit enormous kinetic energy due to their high speed and mass.Before hitting a golf ball, it has zero velocity and therefore no kinetic energy.When an asteroid falls at incredible speed, it has a huge amount of kinetic energy.Cars have less mass than trucks, so they have less kinetic energy on the road than trailer trucks.

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10 kg of liquid water is in a container maintained at atmospheric pressure, 101325 pa. The water is initially at 373. 15 k, the boiling point at that pressure. The latent heat of water -> water vapor is 2230 j/g. The molecular weight of water is 18 g. 103 j of heat is added to the water.

Answers

Water is transformed into vapour at m is 0.0462 g. Be aware that even at lower temperatures, some water molecules will leave the water's surface since they have high kinetic energy.

What exactly is water vaporization heat?

At 100 °C, where water boils, the heat of vaporization for water is around 540 cal/g. Be aware that even at lower temperatures, some water molecules will leave the water's surface since they have high kinetic energy.

Water has a mass of 10 kg, a pressure of 101325 Pa, a temperature of 373.15 K, and a latent heat of vapourization of 2230 J.g-1. This water has received 103 J of heat energy.

Now, applying solely the latent heat principle to the heat equation: (since water already at boiling point at atmospheric temperature).

Q = m. The amount of water that becomes vapour is L 103 = m * 2230 m = 0.0462 g.

The complete question is,

A container containing 10 kg of liquid water is kept at 101325 Pa atmospheric pressure. At that pressure, the water is originally at its boiling point of 373.15 K. Water to water vapor has a latent heat of 2230 J/g. Water has a molecular weight of 18 g. The water receives 103 J of heat. 1) How much water evaporates into vapor? mass(vapor)=    

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if two separate containers a and b have the same volume and temperature, but container a has more gaseous molecules than b, then container a will have: a) higher pressure b) lower pressure c) a greater universal gas constant d) a smaller universal gas constant

Answers

If two separate containers A and B have the same volume and temperature, but container A has more gaseous molecules than B, then the container A will have higher pressure than container B.

According to the approximations of ideal gas conditions, the pressure of a gas is directly proportional to the number of molecules of a gas at constant temperature and volume.

Having this in mind, at constant temperature and volume, container A has more gaseous molecules than B, then container A will have higher pressure than container B.

Below is the calculation for proof that shows which container has the higher pressure while keeping the volume and temperature the same.

So, V a = V b

n a* T a/ P a = n b* T b/ P b

Here, T a = T b

P a = n a/n b * P b

n a/n b > 1

P a/ P b > 1

P a > P b

Thus, the container A will have higher pressure than container B.

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the structure of a solid can be determined by diffraction of radiation in which region of the electromagnetic radiation spectrum?

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Atoms' surrounding electron clouds can serve as diffraction gratings and x-ray scattering sites. This makes it possible to determine the structure of molecules as well as the solid-state structure (i.e., the lattice types and unit cell dimensions).

The principles of diffraction are based on Bragg's Law:

nλ=2dsinθ

n is the diffraction order, which is typically 1.

lambda is the radiation's wavelength of incidence

d is the distance between the lattice planes, where

is the angle between the incident radiation and the scattering plane.

Powder x-ray diffraction (PXRD), which gives the cell constants for the solid's unit cell, is used when the material is a powder.

The intensity of the diffraction peaks is utilised to determine all atom locations when the sample is a single crystal, which provides bond lengths and bond angles.

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How could one travel faster than the old speed limit without violating the new velocity limit.

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Without violating the new speed limit rules, one can go faster than the old limit.

Because c=velocity includes displacement as it is a vector, one may move faster with a velocity meter than the traditional speed restriction. As a result, it will enable the passengers to go in a straight line without veering off the road, and it will assist them get there much quicker than the old approach without breaking the law.

As indicated above, following the displacement rather than the actual distance might let someone arrive at their goal considerably more quickly without violating the new velocity limit.

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how are rotation curves of spiral galaxies determined beyond radii where starlight can be detected?

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Rotation curves of spiral galaxies are a measure of the velocity of the stars and gas in the galaxy as a function of distance from the center. These curves are important for understanding the mass distribution of the galaxy, which in turn helps us understand the structure of the galaxy and its evolution.

In order to determine the rotation curves beyond the radii where starlight can be detected, we must use indirect methods. One of the most important indirect methods is the use of neutral hydrogen gas, which is typically found in the outer regions of galaxies. By measuring the Doppler shifts of the hydrogen gas using radio telescopes, we can determine the velocity of the gas as a function of distance. This allows us to trace the rotation curve out to much larger radii than just the starlight.

Another method for determining the rotation curves beyond the radii where starlight can be detected is to use gravitational lensing. This method relies on the fact that the gravity of a massive object, such as a spiral galaxy, can bend and focus the light from more distant objects. By measuring the distortions of the light from those distant objects, we can infer the mass distribution of the galaxy and thus its rotation curve.

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you have a series circuit with a battery and two resistors, one of which is three times the other. how would the results be affected if you interchange the order of the resistors?

Answers

When the current is the same through all the resistors and the batteries of a circuit, you have resistors in series. Option B is correct.

What is series circuit?

In the series circuit, the amount of current flowing through any component in a series circuit is the same and the sum of the individual resistances equals the overall resistance of any series circuit.

The voltage in a series circuit, the supply voltage, is equal to the total of the individual voltage drops.

Components linked in series share a single “electrical route,” and each component receives the same current, which is equal to the network's current.

Therefore, when the current is the same through all the resistors and the batteries of a circuit, you have series circuit.

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what is one way you can tell that the force of gravity and mass have a direct relationship

Answers

Answer:

F

Explanation:

The relationship between gravity and the mass of two interacting bodies can be shown by the following equation: F = G x m1 x m2 / r2,

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