how much energy is required to remove a proton from 157n ? the masses of the atoms 157n , 146c and 11h are 15.000109 u , 14.003242 u and 1.007825 u , respectively.

Answers

Answer 1

Energy is required to remove a proton from ¹⁵N₇ with the masses of the atoms ¹⁵N₇, ¹⁴C₆ and H are 15.000109 u, 14.003242 u, and 1.007825 u, respectively is 10.2046375 MeV.

The energy required to remove a proton from ¹⁵N₇ is

The reaction to remove the proton is given as follows :

¹⁵N₇  ---->   ¹⁴C₆  +  H

The mass of ¹⁵N₇   =  15.000109

the mass of ¹⁴C₆ = 14.003242

The mass of H = 1.007825

The energy requires to remove a proton is given as:

E = ( 14.003242 + 1.007825 - 15.000109) u

E = 0.010958 × 9312.5 MeV

E = 10.2046375 MeV

A proton is a subatomic particle discovered within the nucleus of every atom. The particle has a fine electrical charge, identical and contrary to that of the electron. If isolated, a single proton might have a mass of the most effective 1.673. 10-27 kilogram, just barely less than the mass of a neutron.

A strong subatomic particle that has a positive rate equal in significance to a unit of electron fee and a relaxation mass of one.67262 × 10−27 kg, that's 1,836 times the mass of an electron. The proton become observed by Ernest Rutherford in the early 1900s. throughout this period, his research resulted in a nuclear response that led to the first 'splitting' of the atom, where he determined protons. He named his discovery “protons” based totally on the Greek word “protos” because of this first. Protons incorporate two up quarks and one down quark. Neutrons include one up quark and down quarks.

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Related Questions

What is K in elastic potential energy formula?

Answers

k in elastic potential energy is the spring constant. It is also known as a proportionality constant that describes the relationship between the strain in the spring and the force that causes it.

Elastic potential energy is the potential energy stored by stretching or compressing an elastic object by an external force such as the stretching of a spring. It is equal to the work done to stretch the spring which depends on the spring constant k and the distance stretched.

The spring constant is the measure of stiffness of the spring. The spring constant tells us, how many newtons of force it takes to stretch the spring by one meter.

The spring constant depends on the stiffness of the spring material, the thickness of the wire from which the spring is wound, the diameter of the turns of the coil, the number of turns per unit length and the overall length of the spring.

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treasure searching pirates walked due north for 2 hours through 4 miles of swamp. afterwards, they stopped for an hour of rest before continuing eastward for another 4 hours to cross 5-miles of jungle. calculate the average velocity in miles per hour of the above pirates. do not enter the unit with your answer.

Answers

The average velocity of the pirates is 1.44 miles/hr.

A vector quantity is an average velocity. The change in position or displacement (x) divided by the time intervals (t) in which the displacement happens yields the average velocity. Depending on the sign of the displacement, the average velocity can be positive or negative. Meters per second (m/s or ms-1) is the SI measure of average velocity.

total time = t₁ + 1 + t₂

T = 1 + 1 + 3

T = 5hr

Displacement = AC = √(4² + 6²)

S = √16+36

S = √52

Average velocity = Displacement/ Time

v = S/t

substituting the value in the above equation, we get

v = 7.2/5

v = 1.44 mile/hr

Thus, the average velocity of the pirates is 1.44 miles/hr.

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Jack is testing how sound travels. Damon stood on the opposite side of the room and whispered a sentence to him. Then, jack held a balloon to his own ear as damon whispered the sentence to him again. Jack heard the sentence better the second time. How did the balloon affect the sound of damon's whisper?.

Answers

Answer:

Sound travels better through the compact molecules of air inside the balloon than the less compact molecules on the outside.

Explanation:

How does mass affect the amount of kinetic energy in a moving object? Explain how you know by stating your claim, the evidence for your claim, and your reason why this evidence supports your claim.

Answers

A moving object's kinetic energy is inversely correlated with its mass and inversely correlated with the square of its speed.

What is the impact of mass on kinetic energy?

If all other variables are maintained constant, mass and kinetic energy have a positive relationship, which indicates that as mass grows, kinetic energy increases. Accordingly, an object with the same mass and speed as another object will have twice the kinetic energy, and another object with the same mass and speed as another object will have four times the initial kinetic energy.

It is more difficult to move and stop heavier objects (i.e., items with more mass). Greater mass, or heavier items, resist change more than lighter ones do. Using a bicycle or a Cadillac while being pushed, or stopping them once they are moving. The difficulty of starting or stopping an object increases with its mass (or inertia).

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With respect to saving energy, what aspect of using two-sided printing was discussed in class as providing the most signifiant benefit?

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The benefit of employing two-sided printing that was highlighted in class as being the most important is that it only requires one sheet of paper as opposed to two when printing a two-sided document.

What does two-sided printing mean?

Standard 2-sided printing can be used to print on both sides of a sheet. You can choose between manual and automatic printing. When printing by hand, even-numbered pages are printed first. After printing these pages, you may simply reload them to print the odd-numbered pages on the opposite side of the paper.

Therefore, double-sided printing can save your business about half as much money as single-sided printing, according to certain important estimates. Due to the fact that duplex printing uses only half as much paper as one-sided printing, businesses can reduce their material costs.

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What is the wavelength of a radio wave with frequency 8.95 x107 Hz?

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The wavelength of a radio wave is 3.352m .

Planck himself originally imagined it to be the constant of proportionality.

Like every other wave, electromagnetic radiation consists of a frequency and a wavelength, and the product of these is continually identical to ​c​, the speed of light.

Electromagnetic waves are all round us, and in addition to visible radiation, different wavelengths are generally known as radio waves, microwaves, infrared, ultraviolet, X-rays, and gamma rays.

All of these varieties of electromagnetic radiation have a similar basic type as defined by using Maxwell’s equations; however, their energies range with frequency (i.e., a higher frequency means that better electricity).

As he knew from Maxwell, the energy of a wave is proportional to its frequency.

So E ∝ v

Inserting the constant of proportionality gives: E=hv

Using this equation, we can calculate the energy of only single wave particles: photons, electrons, protons, neutrinos, muons, etc.

The Frequency of radio wave is 8.95 x 10⁷Hz.

The speed of light wave is 3 x 10⁸m/s

y=c/v

y=3 x 10⁸m/s/8.95 x  x 10⁷Hz=3.352m

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Currently failing the class

Distinguish between vector and scalar quantities providing examples of each

Answers

Answer:

Distinguish between vector and scalar quantities providing examples of each

Explanation:

an intergalactic spaceship arrives at a distant planet that rotates on its axis with a period of t. the spaceship enters a geosynchronous orbit at a distance of r.

Answers

The answer is M = 4π 2 R 3 /GT 2 M = 1.35 × 10²⁸ kg.

A geostationary orbit is a low-inclination prograde orbit around the Earth lasting 23 hours 56 minutes and 4 seconds. A spacecraft in a geostationary orbit appears to move north and south but appears to stay at a fixed longitude on Earth. A geostationary orbit is a geostationary orbit.

A geostationary satellite orbit is an orbit around the Earth that intentionally has an orbital period of one sidereal day equal to the Earth's sidereal rotation period, with the satellite returning to the same position in the sky after each sidereal day. Geostationary means that the satellite orbits with the same angular velocity as the earth.

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(a) your pendulum clock which advances 1.0 s for every complete oscillation of the pendulum is running perfectly on earth at a site where the magnitude of the acceleration due to gravity is 9.80 m/s2. you send the clock to a location on the moon where the magnitude of the acceleration due to gravity is 1.65 m/s2. does the clock run fast or slow on the moon?

Answers

The clock runs slower on moon than on earth.

As we know that time period of simple pendulum will be

T = 2π√(L/G)

Now we will have,

time period of a clock on the surface of earth will be 1 s where we have acceleration due to gravity is g = 9.8 m/s².

Now if we took the pendulum to the surface of moon where acceleration due to gravity will be 1.65 m/s² then this time period will change

so we will say by above equation;

T(earth)/T(moon) = √(G(moon) / G(earth)

From above equation we get;

T(moon) = √(9.80/1.65) * 1 sec

T(moon) = 2.44 sec

So, time period on moon will be 2.44 sec.

Therefore, clock runs slow on the moon.

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What is the best description of the order of events in the animation? the viewer travels through the electron cloud, then the protons, and then the nucleus. The viewer travels through the nucleus, then the electron cloud, and then the nucleus again. The viewer travels through the electron cloud, then the neutrons, and then the protons. The viewer travels through the electron cloud, then the nucleus, and then the electron cloud again.

Answers

The viewer travels through the electron cloud, then the nucleus, and then the electron cloud again

what is nucleus?

In terms of genomics, a nucleus is the organelle within a cell that is membrane-enclosed and houses the chromosomes. Certain substances (including proteins and nucleic acids) can selectively move through or out of the nucleus thanks to a variety of holes, or pores, in the nuclear membrane.

The viewer travels through the electron cloud, then the nucleus, and then the electron cloud again.

The electron cloud and the nucleus make up an atom.

In an atom's nucleus are protons (positive particles), neutrons (neutral particles), and electrons (negative particles), which are found in the electron cloud.

The atom's nucleus is located at its centroid, and an electron cloud surrounds it.

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A gray kangaroo can bound across a flat stretch of ground with each jump carrying it 8.0 m from the takeoff point.

If the kangaroo leaves the ground at a 22˚ angle, what is its takeoff speed?
What is its horizontal speed?

Answers

The kangaroo's horizontal speed will be 9.7 m/s and its departure speed will indeed be 10.65 m/s.

What is the sound's velocity?

By observing the pace at which this compressed region moves through the medium, we may determine the sound speed. The sound wave travels at a speed of around 343 meters per second in low humidity at 20 degrees Celsius.

Briefing:

The following equation relates the distance to the direction and initial velocity:

d = [v₀²sin2θ]/g, where θ – the angle of the jump.

Thus, v₀² = gd / (sin2θ) = (9.8×8)/0.69 = 113.62

v₀ = 10.65 m/s ( the take off speed).

The horizontal velocity equals:

vₓ = v₀cos 22° = 10.65 m/s × 0.92 = 9.7 m/s

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Find the binding energy of carbon-12 per nucleon. The mass of a proton is 1.007276 u, of a neutron 1.008665 u, and of carbon 11.996706 u.

Answers

The biding energy of carbon-12 per nucleon is 5.34 MeV.

What practical applications exist for carbon-12?

Given that it serves as the reference point for calculating the atomic masses of all other nuclides, carbon-12 is particularly significant by definition, it has an atomic mass of carbon 12.

Where can you find carbon-12?

Numerous naturally occurring substances, including rocks like limestone, coral, as well as the shells or animals like clams, contain carbon-12.Coal and petroleum, two significant fuels, both contain carbon.

Binding energy of C-13 - BE of C-12

= (7.5 * 13 ) - (7.68 * 12)

= 97.5 - 92.16

= 5.34 MeV.

Therefore, the binding energy of carbon-12 per nucleon is 5.34 MeV.

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Brandon is on one side of a river that is 80 m wide and wants to reach a point 250 m downstream on the opposite side as quickly as possible by swimming diagonally across the river and then running the rest of the way. Find the minimum amount of time if brandon can swim at 2 m/s and run at 4 m/s.

Answers

The minimum amount of time Brandon needs to reacha point 250m downstream is 97.20 seconds.

Please refer to the picture bellow for better  understanding.

From the case, we have some informations such:

river wide = 80 m

river length = 250m

v1 = v swim = 2 m/s

v2 = v run = 4 m/s

Using the velocity formula, we know the relationship between velocity, distance, and time is:

v = s/t

where:

v = velocity

s = distance

t = time

Hence, we could rewrite the velocity formula in terms of time such:

t = s/v ... (i)

Now, let's try to find the time Brandon needs for swimming diagonally.

We assume that Brandon's swimming distance is r with wide 80m and length x m. Hence:

r = [tex]\sqrt{80^{2} +x^{2} }[/tex] ... (ii)

The time Brandong spends swimming is:

t1 = s1/v1

t1 = r/v1

t1 = √(80²+x²) ... (iii)

             2

Meanwhile the time Bradon spends for running is:

t2 = (250-x)/4 ... (iv)

We know that the total time would be:

t total = t1 + t2

t total =  √(80²+x²) + 250 - x

                     2                   4

To find the minimum time, we will use derivative function of t:

t total' = 0

d (√(80²+x²) + 250 - x ) dx = 0

          2                    4

        x           -  1    = 0

2[√(80²+x²)]     4

      2x       = 1

√(80²+x²)

2x = √(80²+x²)

4x² = 80² + x²

x ≈ 46.2m ... (v)

We will subtitute the value of x to the equations (iii) and (iv):

t1 = √(80²+x²) / 2

t1 = 92.4 / 2

t1 = 46.25s

t2 = (250-x) /4

t2 = 203.8 / 4

t2 = 50.95s

The minimum amount of time for Brandon to reach his targeted point is:

t total = t1 + t2

t total = 46.25 + 50.95

t total = 97.20 s

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The threshold of hearing is defined as the minimum discernible intensity of the sound. it is approximately 10^−12w/m^2. Find the distance d from the car at which the sound from the stereo can still be discerned. assume that the windows are rolled down and that each speaker actually produces 0.06 w of sound, as suggested in the last follow-up comment.

Answers

The threshold of hearing is the minimum intensity of sound that can still be discerned and is approximately 10^−12w/m^2. Therefore the distance from the car at which the sound from the stereo can still be discerned is 6x10^11 m.

Calculate the intensity of the sound at the car:

Intensity = Power/Area

Intensity = 0.06W/1m^2

Intensity = 0.06W/m^2

Calculate the distance d at which the intensity of the sound is equal to the threshold of hearing:

Threshold of hearing = 10^−12w/m^2

Intensity = 0.06W/m^2

d = (0.06W/m^2)/(10^−12w/m^2)

d = 6x10^11 m

Therefore, the distance from the car at which the sound from the stereo can still be discerned is 6x10^11 m.

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which phenomenon that goes unexplained by lewis structures is solved by applying molecular orbital theory?

Answers

In terms of combinations of the atomic wave functions, the Molecular Orbital (MO) Theory defines how electrons behave in molecules. All of the atoms in the molecule may be covered by the resulting molecular orbitals.

A molecule is stabilized by the presence of electrons in bonding molecular orbitals, which are created by in-phase combinations of atomic wave functions. A molecule becomes less stable when electrons are located in antibonding molecular orbitals, which are produced by out-of-phase combinations of atomic wave functions. MOs are atomic orbitals that are situated along an internuclear axis. S orbitals or p orbitals orientated end to end can be used to create them.The electron density of orbitals, which are produced from p orbitals positioned side by side, is on the opposite side of the internuclear axis. By using the valence electrons of the atoms in conjunction with molecular orbital theory, we can describe the electronic structure of diatomic molecules.

Although there are two unpaired electrons in the molecule's molecular orbital description, the electrons in the Lewis structure are all paired. As a result, by examining how a magnetic field affects oxygen, we can test the predictions of these theories.

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A gas is enclosed in a cylinder fitted with a light frictionless piston and maintained at atmospheric pressure. When 254 kcal of heat is added to the gas, the volume is observed to increase slowly from 12.0 m^3 to 16.2 m^3.
a. Calculate the work done by the gas.
b. Calculate the change in internal energy of the gas.

Answers

The work done by the gas for question A will be 4.2 * 10^5 J.

The change in internal energy of the gas for question B is 6.43 * 10^5 J.

What is work (in gas)?

For a gas, it is the product of the pressure P and the volume V during a change of volume. The formula for work done in gas is W (work) = P (pressure) * V (volume)

Now, let's calculate the work done by gas to answer question A.

Work = Pressure * (Volume 2 - Volume 1)

= 1 atm * (16.2 - 12)

= 10^5 Pa * 4.2

= 4.2 * 10^5 J

So the work done by the gas is 4.2 * 10^5 J.

Now, let's find the change in internal energy of the gas.

The heat energy added to the system is

Q = 254kcal

= 254kcal * (4184J / 1 kcal)

= 1.063 * 10^6 J

The change in internal energy of gas is

ΔU = Q (the heat energy added) - W (work done by gas)

= 1.063 * 10^6 J - 4.2*10^5 J

= 6.43 * 10^5 J

Therefore, the change in internal energy of the gas is 6.43 * 10^5 J

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A tennis ball is hit with a tennis racket. Compared to the magnitude of the force of the racket on the ball, the magnitude of the force of the ball on the racket is.

Answers

The force of the racket on the ball compared to the force of the ball on the racket is the same.

The  force in physics is defined  as ;

The push or pull on a mass-containing item changes its velocity.

An external force is an agent with the ability to change a body's resting or moving state. It has a magnitude and a direction. The application of force is the location at which force is applied, and the direction in which the force is applied is known as the direction of the force.

Every time one object applies force to another, the other object applies an equal and opposing force to the first.

According to Newton's third law,

Action and reaction are always equal in magnitude but opposite in direction.

In other words, interactions lead to forces. So, the force of the racket on the ball compared to the force of the ball on the racket is the same. So according to the question option 3 is correct.

Your question is incomplete but most probably your full question was

A tennis ball is hit with a tennis racket. The force of the racket on the ball compared to the force of the ball on the racket is

1- smaller

2- Larger

3- The same

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a simple pendulum consisting of a bob of mass m attached to a string of length l swings with a period t.

Answers

The new period of oscillation if the mass of the bob is reduced by half is [tex]\frac{T}{\sqrt{2}}[/tex] or T/√2.

Look at the attachment for a complete question. The period of oscillation of the simple pendulum

[tex]T \:=\: 2 \pi \sqrt{\frac{m}{k}}[/tex][tex]T \:=\: 2 \pi \sqrt{\frac{L}{g}}[/tex]

where

π = 3.14m = the mass of the bob (kg)k = the rope constant (N/m)L = the length of the swing (m)g = the acceleration due to gravity (m/s²)

If we change the mass of the bob and didn't change the rope, the period also will change but the rope constant will not. The ratio of the period between the two condition

m₁ = mT₁ = Tm₂ = 0.50 m

T² = 4π²m/k

T₁²: T₂² = m₁ : m₂

T²: T₂² = m : 0.50 m

T²: T₂² = 1 : 0.5

T₂² = 0.5T²

[tex]T_2 \:=\: \sqrt{0.5T}[/tex]

[tex]T_2 \:=\: \sqrt{\frac{T}{2}}[/tex]

T₂ = T/√2

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Noise cancelling headphones are a kind of headphones which decrease the amount of background noise that get into your ears when you wear them. On what physical phenomena do these headphones depend on?

Answers

The theory of destructive interference underlies the operation of noise-cancelling headphones.

The process of using passive and active noise control techniques to reduce undesired background and ambient noises is known as noise cancellation.

Active noise cancelling (ANC) adopts a different strategy from passive noise cancellation by "neutralising" incoming sound waves from your surroundings. Passive noise cancellation reduces ambient noise by erecting a "physical shield" to mask sound.

Small microphones built into ANC headphones send out sound waves that interfere with incoming sound waves from the environment, cancelling each other out. It's comparable to adding +3 and -3, where the result is zero (silence).

Both inside and outside the headphones' walls are picked up by the microphones.

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What activity is a good way to measure your muscular strength and endurance?

Answers

We can use push-up tests to measure muscular strength and endurance.

Muscular endurance is defined as the potential of a muscle or group of muscles that have the ability to have sustained repeated contractions against a resistance for a longer period.

Muscular endurance can also be seen in the number of repetitions of a single exercise that can be done without stopping and resting.

Doing push up tests the whole body and muscle groups everywhere in the arms, chest, abdomen, hips, and legs. Doing push up requires the body to be tight, like a plank with toes and palms on the floor. So, push up is considered the best test for muscular endurance.

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when the lobes of two p orbitals are in the same phase and overlap side-by-side, the orbital that is formed has a _____ dissociation energy compared to the σ∗ molecular orbital formed from the out-of-phase direct overlap of the two p orbitals.

Answers

when the lobes of two p orbitals are in the same phase and overlap side-by-side, the orbital that is formed has a bonding dissociation energy compared to the σ∗ molecular orbital formed from the out-of-phase direct overlap of the two p orbitals.

What scientific theory describes how covalent bonds develop when specific elements' valence orbitals overlap?

Bonding arise when two unique atomic orbitals on different atoms cross across, generating an area where the two atoms share one pair of electrons, according to the theory of valence bonds. When orbitals intersect over an axis containing nuclei, a bond is formed.

A covalent bond is formed by two atoms that share a pair of electrons. The atoms are held together because the electron pair is pulled to both nuclei.

When two atoms exchange one or more pairs of electrons, a covalent connection is established.

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A family car has a mass of 1400 kg. In an accident it hits a wall and goes from a speed of 27 m/s to a standstill in 1. 5 seconds. Calculate the force involved.

Answers

The force involved is = 25200 Newton

Given the values in the questions,

Mass = 1400 kg

Speed or velocity of the car = 27 m/s

Time is given = 1.5 seconds

According to the formula of force,

⇒ Force = Mass x Acceleration

⇒ Force = 1400 x Acceleration ----- equation 1

Now to calculate the value of acceleration we will use,

⇒ Acceleration = (Velocity or Speed) / Time

⇒ Acceleration = 27 / 1.5

⇒ Acceleration = 18 m/[tex]s^{2}[/tex]

Putting the value of acceleration in equation 1,

⇒ Force = 1400 x 18

⇒ Force = 25200 Newton

Therefore, the force involved is = 25200 Newton

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a magnetic field near the ceiling points down and is increasing. looking up at the ceiling, does the non-coulomb electric field curl clockwise or counter-clockwise?

Answers

The Non-coulomb electric field curls will be counterclockwise

Electric field can be defined as force per unit charge.

Non columbic field formula is

Fnc = qEnc

It is created by a change in magnetic field.

when the magnetic field near the ceiling point is increasing, the non coulomb force will curl counterclockwise by applying right hand thumb rule.

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a baseball playe rhits a ball that soars high into the air. after the ball has left the bat, and while it is traveling upward, what is the direction of accerlation

Answers

The direction of acceleration of the ball hit by baseball player is downwards.

When an object is launched at an angle, it follows a curved path, which is called the trajectory under the action of acceleration due to gravity. At the center of the path at the maximum height, the acceleration due to gravity is g. The particle's velocity is always tangential, and at maximum height, the vertical component of the velocity is zero.

The air resistance opposes the relative motion of the object in the air. It depends on the mass and velocity of the object. After ignoring the air resistance, the ball would travel on its own. Thus, the direction of acceleration of the ball is downwards.

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When forces are not in equilibrium (unbalanced) the object's can be described as __________.

Answers

Answer: Unbalanced forces

Explanation: When the forces acting on an object are unbalanced, they do not cancel out one another

What is the kinetic energy of a 1400 kg sports car Travelling down the road with a speed of 30 m s?

Answers

The kinetic energy of the sports car is 630 KJ.

The kinetic energy is the energy possessed by the system by virtue of its motion.

Also kinetic energy is equal to the net work done on the object.

KE = ΔW

The SI unit of the kinetic energy is joule (J).The formula to calculate the kinetic energy is KE = (1/2)*m*v²

Where,

m = mass of the object

v = speed at which the object is moving

Kinetic energy depends on the speed squared of the object. This means that when an object's speed is doubled, its kinetic energy is quadrupled.

Mass of the car = 1400 Kg

Velocity of the car = 30 m/sec

KE = (1/2)*1400*(30)²

KE = (1/2)*1400*900

KE = 630000 J

KE = 630 KJ

The kinetic energy of a 1400 kg sports car travelling down the road with a speed of 30 m/s 630 KJ.

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Need help! Thanks lots!

Answers

The final momentum of the ball after collision is 13 kg(m/s) because this is closed isolated system and in this the momentum is conserved .

How is the final momentum calculated ?

The given parameters;

initial momentum of the box (P₁)

initial momentum of the ball (P₂)

final momentum of the ball (P₃)

final momentum of ball after collision (P₄)

∴ P₁ = 15 kg(m/s)

∴ P₂ = 3 kg(m/s)

∴ P₃ = 5 kg(m/s)

Apply the principle of conservation of linear momentum to determine the final momentum of the ball after collision;

total momentum before collision = total momentum after collision

∴ P₁ + P₂ = P₃ + P₄

∴ 15 + 3 = 5 + P₄

∴ 18 = 5 + P₄

∴ 18 - 5 = P₄

∴  P₄ = 13

Hence, the final momentum is 13 kg(m/s)

What is the law of conservation of momentum ?

The law states that the sum of two bodies' momentums before contact equals the sum of their momentums after impact. Both bodies move at different speeds before colliding, yet in some circumstances, the bodies move at the same speed after colliding.

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In a binary-star system that produces a nova, the white dwarf pulls matter from the companion star. the matter forms an accretion disk that orbits the white dwarf. then a specific sequence of events must take place for a nova event to occur.1. Material accumulates onto the white dwarf's surface, increasing in temperature and density. 2. At a temperature of 10 million K, the accumulated surface hydrogen begins nuclear fusion. 3. Nuclear fusion reactions cause an enormous but temporary increase in luminosity. 4. As nuclear fuel is burned up or blown into space, fusion ceases and the star dims.

Answers

As a head-up, it is important to notice that a white dwarf only shine to the stored energy and light, because a white dwarf doesn't have any hydrogen left to perform nuclear fusion.

Now, the process:

First, the white dwarf accumulates all the extracted matter from its companion onto its own surface. This extra matter increases the white dwarf's temperature and density.

After a while, the start reaches about 10 million K, so nuclear fusion can begin. The hydrogen that has been stolen from the other start and accumulated in white dwarf's surface it is used for the fusion, dramatically increasing the star's brightness for a short time, causing what we know as a nova.

As this fuel, it is quickly burnt out or blown into space, the star goes back to its natural white dwarf state. Since the white dwarf nor the companion star are destroyed in this process, it can happen countless of times during their lifespan.

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A nurse applies a rightward horizontal force on a bed with a mass of 152 kg. What is the magnitude of the normal force acting on the bed?.

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The magnitude of the normal force acting on the bed is 1489.6 Newton.

The nurse is applying a rightward horizontal force on a bed which has a mass of 152 kg.

If the mass of the bed is 152 kg then the force of gravity on the bed is,

W = Mg

M is mass of bed and g is gravitational acceleration.

Putting values,

W = 152×9.8

W =  1489.6 N.

The normal force is always perpendicular to the surface of the bed so, the normal force on the bed will be equal to the weight of the bed which is 1489.6N.

So, the normal force on the bed is 1489.6N.

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Describe how the law of inertia relates to the following scenario: you are riding in a car, and your body is thrown to the right as the car turns to the left.

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My body is thrown to the right as the car turns to the left is because of inertia of direction .

A body moving in a specific heading can't adjust its course with practically no force being applied on it. It is the property because of which a body keeps up with its internal compass. eg When we travel by a motorcar and in the event that it makes a sharp turn at a fast, we will quite often get tossed aside.

Inertia of direction states that a body is unable to change its position until an external force acts on the body. Since during turning to left whole car mass is towards left side, to counter the effect of car's mass my body moves to opposite position i.e to the right side.

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