how much charge must pass by a point in a wire in 10 s for the current inb the wire to be 0.50 a? A.20 CB.2.0 CC.5.0 CD.0.050 C

Answers

Answer 1

Answer:

I = Q / t       definition of electric current

Q = I * t = .5 C/s * 10 s = 5 Coulombs

(C) 5 Coulombs


Related Questions

how much cooler is the universe now (at an age of 4 × 1017 s) than it was at an age of 1 second?

Answers

Its temperature right now is ten billionths (1010) of what it was at one second ago.

After the Big Bang, the universe expands and cools, reaching a temperature of around T=1013 K 0.0001 seconds later. Antiprotons destroy protons, leaving only matter behind, but with a huge amount of photons for each neutron and proton that survive. Until one second after the Big Bang, the universe expands and cools, reaching a temperature of 1010 K.

According to the study, the average temperature of gas in the cosmos has increased more than 10 times during that time and is currently around 2 million Kelvin, or 4 million Fahrenheit. An updated study has revealed that the universe is heating up.

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How much kinetic energy does a skater have velocity of 5m/s mass of 65 kg

Answers

Answer:

its 812.5

Explanation:

the formula of kinetic energy is 1/2 mv^2

Answer:

given

v=5m/s

m=65

kinetic energy=1/2mv²

=1÷2×65×5²

=81.5

A horizontal, 2. 00 m long, 3. 00 kg uniform beam that lies along the east-west direction is acted on by two forces. At the east end of the beam, a 200 n force pushes downward. At the west end of the beam, a 200 n force pushed upward. What is the torque about the center of mass of the beam?.

Answers

The torque about the center of mass of the beam is calculated as -400 Nm.

What is torque?

A measure of the force that can cause an object to rotate about an axis is known as torque. Just as force causes an object to accelerate in linear kinematics, torque causes an object to acquire an angular acceleration.

Given ; Force = 200 N; Length = 2.00 m and Mass = 3.00 kg

As we know that angular acceleration, α= τ/I rad/s²

The formula for moment of inertia is ;

I = ML²/12

Torque, τ =  F * r

= ( 200 N * -1 m) + (-200 N * 1 m)

Torque = -400 Nm

Torque about the center of mass of the beam is -400 Nm.

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You build a pendulum with a mass of 0.40 kg attached to the end of a string with a length of 1.8 m. If you release the pendulum from an angle of 50° from equilibrium (which would be 40° below the horizontal,) what is the ball’s fastest velocity?
Please show your work

Answers

The fastest velocity of the ball is approximately 5.95 m/s.

To solve this problem, we can use the conservation of mechanical energy. When the pendulum is released, the total mechanical energy is given by the potential energy at the starting point plus the kinetic energy at that point:

E = PE + KE

The potential energy of the pendulum at the starting point is given by its mass, the acceleration due to gravity, and its height above the starting point:

PE = mgh

The kinetic energy of the pendulum at the starting point is given by its mass, the velocity squared:

KE = 1/2 mv²

At the starting point, the velocity is 0, so the kinetic energy is also 0. Therefore, the total mechanical energy at the starting point is equal to the potential energy:

E = mgh

As the pendulum swings, the potential energy decreases and the kinetic energy increases. However, the total mechanical energy remains constant. When the pendulum reaches its lowest point, the velocity is at its maximum and the potential energy is at its minimum. Therefore, at the lowest point, the total mechanical energy is equal to the kinetic energy:

E = KE

Substituting the expressions for potential energy and kinetic energy, we get:

mgh = 1/2 mv²

Solving for v, we get:

v = sqrt(2gh)

Substituting the given values, we get:

v = sqrt(2 * 9.8 m/s² * 1.8 m)

= sqrt(35.28 m²/s²)

= 5.95 m/s

So the fastest velocity of the ball is approximately 5.95 m/s.

What are the values of a and b in the relative frequency table for the survey results? round answers to the nearest percent.

Answers

Rounding to the nearest percent, the quantities of a and b inside this relative table format for the survey findings are: 38% for a and 3% for b.

Who defines frequency?

The quantity of occurrences of a recurring event per unit of time is its frequency. For clarity, it is sometimes referred to those as precision and differentiates from angular frequency. One occurrence per second, or hertz (Hz), is the unit of frequency.

Given that even a residential area surveyed residents to determine whether they preferred cable or satellite for their TV feed.

Considering the Venn diagram's findings, which reveal that 55 individuals want satellite service, 75 want cable service, 12 want those satellite and cable service, and 4 don't want either, we can see that the number of individuals who want either service is 55.

Thus, 146 persons in all were surveyed.

Remember that relative frequency is the proportion of an event's result to all other possible scenarios (sometimes expressed as a percentage).

According to the table, a represents the proportion of individuals who choose satellite over cable.

Therefore, a = 55/146 Or 0.38 = 38%

According to the table, b is indeed the proportion of persons who choose neither satellite television nor cable.

Therefore, b = 4/146 ≈ 0.03 = 3%

So, rounding to the nearest percent, the value a and b in the relation statistic for the survey findings are: a = 38%, b = 3%.

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The complete question is-

What are the values of a and b in the relative frequency table for the survey results? Round answers to the nearest percent.

a = 82%, b = 3% a = 38%, b = 50% a = 38%, b = 3% a = 93%, b = 19%

Ahmed applies a force of 100N to the right on a table and Salem applies a force of 20N to the left on the same table, then the net force acting on the table is --------------

Answers

The net force acting on the table is 80 N to the right.

What is force?

The definition of force in physics is: The push or pull on a mass-containing item changes its velocity. A spring balance can be used to calculate the Force. The Newton is the SI unit of force.

It has a direction and a magnitude

Ahmed applies a force of 100N to the right on a table.

Salem applies a force of 20N to the left on the same table,

Hence, the net force acting on the table is = (100 N -20N)  to the right.

= 80 N to the right.

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Where is image of concave mirror formed?

Answers

A real image of the real thing will always be formed by a concave spherical mirror. The point in which a continuous light ray is "focused" during reflection in the concave mirror is known as the focal point (F).

Concave mirror: what is it?

The reflective surface of a concave mirror is curled inward or away first from light source. Light is reflected inward to a single focal point via concave mirrors. Contrary to convex mirrors, concave mirrors provide a variety of images based on the object's distance from the mirror.

Is the concave mirror a true mirror?

Contrarily, genuine images can be seen in concave mirrors. The impression will be long term value and actual, which means that it will appear on the opposite side of the camera from the object, if the item is farther away from the tv than the focal point.

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state the property that allows plastic to become electrostatically charged

Answers

Answer: Static is the property of plastics that allows them to become electrostatically charged. Explanation: When two objects are rubbed together, the movement of electrons from one object to another object happens

An object is spun around in circular motion such that its frequency is 50 hz. A. What is the period of its rotation? b. How much time will be required to complete 250 rotations?.

Answers

Answer:

A.0.02 Seconds

B.5 Seconds

Explanation:

A. The period of a rotating object is, the amount of time it takes to complete one full rotation.  

Therefore,

Period = 1 / Frequency

So for an object that has a frequency of 50 Hz, its period would be:

Period = 1 / 50 Hz = 0.02 seconds

So the answer is 0.02seconds

B. To find out how much time it takes to complete 250 rotations, we  use the period of the rotation,  0.02 seconds. Since the period is the time it takes to complete one rotation, we  find the time  to complete 250 rotations by,

multiplying the period by the number of rotations:

Hence,

Time = Period x Number of Rotations

Time = 0.02 seconds x 250 = 5 seconds

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select the ester that could be used to make 4,6-nonanedione by acylation of 2-pentanone.? A Ethyl hexanoate. B Ethyl ethanoate. C Ethyl butanoate. Ethylpropanoate. E Ethyl pentanoate.

Answers

E. Ethyl pentanoate is the ester that can be used to make 4,6-nonanedione by acylation of 2-pentanone. Acylation is the process of introducing an acyl group into a molecule by replacing a hydroxyl group.

In this case, the hydroxyl group of 2-pentanone will be replaced by an acyl group. Ethyl pentanoate contains an acyl group, ethanoic acid, which is the same as the acyl group of 4,6-nonanedione. Therefore, by acylating 2-pentanone with ethyl pentanoate, 4,6-nonanedione is produced. The reaction involves the nucleophilic attack of the hydroxyl group of 2-pentanone on the ethyl pentanoate, forming an alkoxide intermediate, which undergoes  v to give the 4,6-nonanedione.

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The force that acts between the electron and nucleus of an atom is the same force that keeps the planets in their orbits.

Answers

While the electric force that propels electrons into their orbits around the nucleus is the force acting between the electrons and the nucleus. The gravitational attraction between the planets is that causes them to circle in their elliptical orbits.

The forces that exist between two or more nucleons are referred to as nuclear forces (also known as nuclear interactions). They join the nucleons—protons and neutrons collectively—into the atomic nuclei. The stability of the nucleus is brought about by the nuclear force, which is a short-range force.

The force that holds protons and neutrons in a nucleus together is known as the nuclear force. Protons and protons, neutrons and neutrons, or neutrons and neutrons can all be affected by this force. The nucleus is held together by this force.

According to Coulomb's rule, the protons' charge of +1e tends to repel one another strongly with a strong electric field. However, the nuclear force is potent enough to hold them together and go over that obstruction at close range.

The gravitational pull is substantially weaker than the electric force. As a result, the two instances of force are distinct.

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The force acting between the electrons and the nucleus, on the other hand, is the electric force that drives electrons into their orbits around the nucleus. The planets' eccentric orbits are a result of their gravitational pull to one another.

Nuclear forces are the forces that exist between two or more nucleons (also known as nuclear interactions). They combine the protons and neutrons to form the nuclei of the atoms. The nuclear force, a short-range force, is responsible for the nucleus' stability.

The nuclear force is the force that binds protons and neutrons in a nucleus. This force can have an impact on protons and protons, neutrons and neutrons, or neutrons and neutrons. This force holds the nucleus together.

Coulomb's rule states that the protons' +1e charge has a strong tendency to repel one another with a strong electric field. The nuclear force, however, is strong enough to keep them together and pass right through that impediment.

The electromagnetic force is far stronger than the gravitational attraction. The two uses of force are thus different from one another.

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A dolphin has a kinetic energy of 2800 [J] and a mass of 75 [kg]. What is the velocity of the mammal?

Answers

velocity = square root of (2 x Kinetic Energy / Mass)

velocity = √(2KE/m)

velocity = √(2*2800/75)

velocity = 24.29 m/s

A positive charge is moving from the floor of a room toward the ceiling. A magnetic field runs from east to west. In what direction is the magnetic force on the moving positive charge?.

Answers

A positive charge is moving from floor of a room toward the ceiling. A magnetic field will run from east to west. Then, the magnetic force on the moving positive charge will move in the south direction.

The right-hand rule states:

To determine the direction of the magnetic force of a positive moving charge, point the thumb of your right hand in the direction of the velocity (V), the index finger in the direction of magnetic field (B), and the middle finger in the direction of the middle finger. The rules of three separate rules for the most common situations are very helpful. These apply to the laws of solenoids that are (1) long straight wires, (2) free-moving charges in a magnetic field, and (3) current loops.

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Any object above absolute zero gives off___________________radiation, which can be detected by a thermal imaging camera.

Answers

Any object above absolute zero gives off electromagnetic radiation, which can be detected by a thermal imaging camera.

What is electromagnetic radiation?

Electromagnetic radiation is made up of electromagnetic field waves that travel through space carrying momentum and electromagnetic radiant energy. Radio waves, microwaves, infrared, light, ultraviolet, X-rays, and gamma rays are all examples of electromagnetic waves. These waves are all part of the electromagnetic spectrum.

Electromagnetic radiation is traditionally composed of electromagnetic waves, which are synchronized oscillations of electric and magnetic fields that can be detected by a thermal imaging camera.

Therefore, electromagnetic radiation that any object above absolute zero gives off can be detected by a thermal imaging camera.

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Rachel is a stunt driver, and she's escaping from a building that is about to explode! ddd represents rachel's remaining distance (in meters) as a function of time ttt (in seconds). d=-38t 220d=−38t 220d, equals, minus, 38, t, plus, 220 what is rachel's speed?

Answers

Rachel's speed is -38 meters/second.

Speed is the rate at which distance changes over time, Rachel's speed is equal to the change in distance, divided by the change in time, which in this case is -38 meters/second.

Answer: 38 meters per second

Explanation: I got it right

ball is held 1.4 meters above the floor. If the ball is dropped, its ______ decreases as it falls and its ______ increases as it falls. Consider the concepts of kinetic energy (KE) and gravitational potential energy (GPE) as you complete this question

Answers

Ball is held 1.4 meters above the floor. If the ball is dropped, its gravitational potential energy decreases as it falls and its kinetic energy increases as it falls

The law of conservation of mechanical energy states that:

PE + KE = constant

Where:

PE = gravitational potential energy

KE = kinetic energy

The gravitational potential energy is given by:

PE = m gh

Where:

m = mass

g = acceleration due to gravity

h = height

Hence, the higher its position form the reference surface, the higher its potential energy.

When an object experiences a free-fall, the highest potential energy occurs at the highest position.

In the given problem, at the point when the ball was dropped, its potential energy is maximum, while its kinetic energy is zero.

As it falls, it is accelerated and it velocity increases, hence its kinetic energy increases.

Therefore, the correct answer:

Ball is held 1.4 meters above the floor. If the ball is dropped, its gravitational potential energy decreases as it falls and its kinetic energy increases as it falls

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On the construction site for a new skyscraper, a uniform beam of steel is suspended from one end. a) If the beam swings back and forth with a period of 5.00 s , what is its length?

Answers

The length of the beam should be 93 meters if it swings back and forth with a duration of 5 second.

Beam physics has an impact on many fields of physics, engineering, and the sciences. Generally speaking, beams are collections of particles whose motion is a weakly nonlinear disturbance of a chosen reference particle and which can be addressed collectively as a result of their beginning conditions. A pendulum is a weight that is suspended from a pivot so that it can freely swing. If a pendulum is sideways shifted from its resting, equilibrium position, gravity's restoring force will lead it to accelerate back toward that point.

Time period for a pendulum in the shape of rod is,

[tex]T=2\pi\sqrt\frac{2L}{3g}[/tex]

Then [tex]L=\frac{3gT^{2} }{8\pi^{2} }[/tex]

L=[tex]\frac{3\times 9.8 \times 5^{2} }{8\pi^{2} }[/tex]

L=93m

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By what factor is the rate of a reaction changed if an enzyme lowers the Ea by 9.0 kJ/mol at 37°C? 2.2 times 10.2 times 7.0 times 15.1 times 32.9 times

Answers

D). The rate of the reaction is increased by 32.9 times if an enzyme lowers the Ea by 9.0 kJ/mol at 37°C

B. The activation energy (Ea) is the energy required for a chemical reaction to occur. Lowering the Ea means that the reaction can occur at a lower energy, making it more likely to happen.

The rate of a reaction is related to the Ea through the Arrhenius equation, which states that the rate constant (k) of a reaction is related to the Ea by the equation:

k = A * e^(-Ea/RT)

where A is the pre-exponential factor and R is the gas constant.

At 37°C, the temperature is 310.15 K. So if an enzyme lowers the Ea by 9.0 kJ/mol, the rate of the reaction will increase by a factor of e^(9000/(8.314*310.15))=32.9.

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An object is moving in a circular path of radius 4.00 m. If the object moves through an angle of 30.0 degrees, then what is the tangential distance traveled by the object?
A) 3.66 m.
B) 3.21 m.
C) 2.84 m.
D) 2.09 m.
E) 1.75 m.

Answers

The Angle in Degrees and Radians:

To convert an angle in degrees to radians, use the following formulaθ(inradians)=θ(in degrees)×π180∘

To revert back to degrees, use the following formulaθ(in degrees)=A) 3.66 m.

Find the tangential distance by what method?

To calculate the tangential speed, divide the circumference by the time required to complete one spin. For instance, if it takes 12 seconds to complete one rotation, divide 18.84 by 12 to get 1.57 feet per second as the tangential velocity.

Is velocity the same as tangential speed?

A moving item around a circle at any point has tangential velocity, also known as tangential speed. At each point along the circular route, it is the linear component of angular velocity.

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The position of an object is given by x=At+Bt2, where x is in meters and t is in seconds.
What is the velocity at 2 s?

Answers

The velocity at 2s is 2B when the position of an object is given by x=At+Bt2 where x is in meters and t is in seconds.

Given the equation of position of object = x = At + Bt^2

Here t is time and x is displacement of object.

We know that rate of change in position is called velocity.

V = dx/dt

V = d/dt(At + Bt^2)

V = A + 2Bt

Acceleration is nothing but the rate of change in velocity.

It is represented as a = dV/dt = d/dt(A + 2Bt)

a = 2B

Hence we can see that the acceleration is independent of time. So the velocity is constant.

Therefore, the velocity at 2s is 2Bm/s.

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Consider the two electron arrangements for neutral atoms a and b. Which atom is more stable? a - 1s22s22p63s1 b - 1s22s22p65s1 b a indeterminate.

Answers

The more stable electron arrangements will be of A 1s²2s²2p⁶3s¹ because of the lower orbits are completely filled in compare with B.

Electron configuration is the arrangement of electrons around the nucleus of an atom based on their energy level. Electrons exist in different energy levels (previously described as “shells”) and the energy levels correspond to the horizontal rows on the periodic table.

Orbitals are areas within shells where the electrons are located These orbitals may have different shapes and There may be different numbers of orbitals within a shell. We know the electron is somewhere in the orbital, but we can’t know exactly where it is or how fast it is moving

Heisenberg’s Uncertainty Principle Each orbital can hold two electrons (Pauli Exclusion Principle). Electrons are added one at a time to the lowest energy levels first (Aufbau principle).

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A has a more stable electrical arrangement than B because all lower energy levels are filled before higher ones, which is  1s²2s²2p⁶3s¹.

The distribution of electrons at various energy levels is shown by an atom's electron configuration. The number of electrons in an atom is represented in the electron configuration as a superscript of atomic subshells.

The maximum number of electrons that may fill an electron shell is calculated using the primary quantum number. The number of electrons that can fit in a given shell as a whole is given by the formula 2n2.

Before filling an orbital with a higher energy level, the electrons in the atomic orbitals of a lower energy level must be entirely filled.

Therefore, the electronic configuration 1s²2s²2p⁶3s¹ of atom A is more stable than 1s²2s²2p⁶5s¹ of atom B.

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why is a 1 solar-mass red giant more luminous than a 1 solar-mass main sequence star?
A) The red giant is more massive.
B) The red giant has a hotter core.
C) Fusion reactions are producing energy at a greater rate in the red giant.
D) The red giant's surface is hotter.

Answers

Option c is Correct. Is a 1 solar mass red giant brighter than a 1 solar mass main sequence star because fusion reactions produce energy more quickly in the red giant.

Stars eventually move away from the main sequence as they get older and eventually turn into red giants or supergiants. As a result of hydrogen fusion occurring in a shell surrounding the red giant's core, the outer layers are expanding while the red giant's core is contracting.

The star grows, turns redder, and becomes brighter as it cools and expands. After the star first began to undergo nuclear reactions, it continued to lose mass as some mass was converted to energy and other material was lost in the winds. Therefore, even if a red giant is enormous.

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an iv is infusing at 77 mcgtt/min. what would this rate of flow equal in ml/h? A. 77 mL/hB. 12 mL/hC. 770 mL/hD. 7.7 mL/h

Answers

A 77mcgtt/min IV infusion is underway. 77 mL/h is the flow rate measured in mL/h. 3.00 mL/h is equivalent to 1 gtt/min. If all you need to do is calculate the infusion rate,

How can I calculate flow rate?

To determine the flow rate represented as Q, which is equal to Q = V/t, we must specify both the volume V and the instant in time that it is passing past represented by t. Additionally, flow rate and velocity are connected by the equation Q = Av.

How is flow rate influenced?

The qualities of the fluid, the rate of flow, and the geometry of the solid surface all affect the flow patterns in a fluid (gas or liquid). Viscosity, density, and compressibility are three properties of the fluid that bear special attention.

1 drop per minute to milliliters per hour = 3.00 mL/h

2 drops per minute to milliliters per hour = 6.00 mL/h

Change hours to minutes. Change milliliters to drops.

1 ml : 60mcgtt

1hr :60min

77mcgtt/min =77*60/60 ml/h

                 =77ml/h

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Who invented the chronometer and the captain who used it on his voyage?

Answers

The chronometer was invented by John Harrison, a British clockmaker and horologist, in 1761. Harrison's chronometer was tested on board the HMS Deptford, captained by Thomas Masterman, on a voyage to Jamaica in 1764.

The Revolutionary Inventions of John Harrison: An Exploration of the Chronometer and Its Role in Navigation

John Harrison's invention of the chronometer revolutionized the way that sailors navigated the world's seas and oceans. This essay will explore the history and development of the chronometer, the impact it had on navigation, and the significance of its use on the HMS Deptford voyage to Jamaica in 1764.

Harrison's work to perfect the chronometer began in 1730, when he was commissioned by the Board of Longitude to develop a method of determining longitude at sea with greater accuracy than had been achieved before. He spent the next three decades of his life building and perfecting a series of marine chronometers, which were the first to be accurate and reliable enough to be used in navigation. The chronometer was a remarkable feat of engineering and craftsmanship, consisting of a complex system of gears and balances that enabled the clock to keep accurate time even when exposed to the rolling of the seas.

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The energy change when 2 kg of aluminium melts is 132,000J. What is the Latent heat of fusion?

Answers

Answer:

The latent heat of fusion is the amount of energy needed to change a substance from a solid to a liquid without changing its temperature. In this case, the latent heat of fusion of aluminium is 132,000J per 2 kg of the substance.

A satellite orbiting Earth at an orbital radius r has a velocity v. What would the velocity be if the satellite is moved to an orbital radius of 6r

Answers

Orbital velocity of satellite

[tex]v = \sqrt{ \frac{gm}{r} } [/tex]

Radius of new orbit r' =6r

Thus new orbital velocity of satellite:

[tex]v = \sqrt{ \frac{gm}{6r} } = \frac{v}{ \sqrt{6} } [/tex]

About Orbital speed

For satellites in circular orbits, the relationship between orbital velocity and altitude is strict. The task of a satellite launch rocket is to release the satellite at a suitable place in space, with the appropriate speed and direction of movement to put it in the desired orbit.

How a satellite stays in orbit can be thought of in two equivalent ways, both of which explain the relationship between the satellite's altitude and velocity.

The motion of the satellite can be seen as creating a centrifugal force that opposes the gravitational pull. For example, imagine attaching an object to a string and swinging it in a circle. The object is pulling outward against the string, and that outward force (centrifugal force) becomes greater the faster the object swings. At the right speed, the centrifugal force of the satellite due to motion around the earth just balances the gravitational pull, and the satellite remains in orbit.

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A satellite was in two separate crashes. in both crashes, the satellite had the same mass of 5000kg. The black asteroid has a mass of 1500 X 50 kg and the gray asteroid has a mass of 100 x 50 kg engineers want to know about the speed and direction of the satellite after the crashes. which crash caused a greater change in velocity for the satellite? please help i will mark you brainliest

Answers

The black asteroid caused a greater change in velocity of satellite.

The law of conservation of mass states that :“The mass in an isolated system can neither be created nor be destroyed but can be transformed from one form to another”.According to the law of conservation of mass, the mass of the reactants must be equal to the mass of the products for a low energy thermodynamic process.Law of conservation of momentum states that : For two or more bodies in an isolated system acting upon each other, their total momentum remains constant unless an external force is applied. Therefore, momentum can neither be created nor destroyed.Momentum is the product of the mass of the object and the velocity at which it is travelling and is also equal to the total force required to bring the object to rest.One of the real-life aspects of the conservation of momentum is collision problems in which the momentum remains conserved and the net external force remains zero.

The momentum of an object is the product of the velocity and mass of an object. Since it depends on mass, the one with greater mass will effect more on velocity.

So, the black asteroid caused a greater change in velocity of satellite.

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liquid plastic is Frozen in a physical change that increases it's volume what can be known about the plastic after the change

Answers

After the physical change, the plastic will still retain its original properties, such as its chemical composition.

What is chemical composition?

Chemical composition is the arrangement, ratio, and type of atoms in a particular molecule or compound. It is typically represented as a chemical formula, which indicates the types of atoms present in the compound and their ratios. Chemical composition is an important factor in determining the physical and chemical properties of a material, such as its solubility, boiling point, melting point, and other characteristics. The chemical composition of a material can be determined through a variety of laboratory tests, including spectroscopy, chromatography, and thermal analysis. Understanding a material’s chemical composition is critical for proper selection and use in a variety of applications.

However, its physical properties, such as its shape and volume, will be different. The plastic will now be in a solid form and its volume will be increased due to the expansion that occurs during the freezing process.

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Is the index of refraction for air 1?

Answers

Yes, the index of refraction for air is approximately 1.0003, which is very close to 1.

The Index of Refraction for Air: Exploring the Physics Behind Light Propagation

Light propagation is an important physical phenomenon that has long been studied and explored by scientists and engineers alike. A key factor in the propagation of light is the index of refraction for air, which is a measure of how light bends as it passes through different media. By understanding the index of refraction for air, we can gain insight into how light behaves and how it can be manipulated for various applications.

The index of refraction for air (or n) is a measure of the speed of light in a particular medium. It is expressed as a ratio of the speed of light in a vacuum (c) to the speed of light in the medium (v). The index of refraction for air is typically expressed as a dimensionless number, which is usually around 1.00029. This number can vary slightly depending on the characteristics of the air and the temperature.

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The pages of a book are numbered i to 200 and each leaf is o.10 mm thick.If each cover is 0.20mm thick,what is the thickness of the book.

Answers

The thickness of the book is 10.40 mm thick.

The reason we learn math is to apply this to real life. We learn addition, subtraction, multiplication, division, and all other mathematical operation with the aim that we can use that in real-life problems. Given problem is one of the examples where we will use math in a real-life situation.

200 pages means that there are 100 papers.

1 paper = 0.1mm

So, 100 papers = 0.1* 100 = 10mm

There are two covers of 0.2mm each, therefore

Total thickness = 10 + 2*0.2

= 10 + 0.4

= 10.4 mm

Hence, thickness of the book is 10.40 mm thick.

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The thickness of the book is 10.40 mm thick.

Why we apply math in real life?

Learning math is done so that you can use it in real-world situations. It is our intention to be able to use addition, subtraction, multiplication, division, and all other mathematical operations to solve problems that come up in daily life. The given problem is one of the situations where math will be used in a practical setting.

200 pages means that there are 100 papers.

1 paper = 0.1mm

So, 100 papers = 0.1* 100 = 10mm

There are two covers of 0.2mm each, therefore

Total thickness = 10 + 2*0.2

= 10 + 0.4

= 10.4 mm

Hence, thickness of the book is 10.40 mm thick.

Learn more about Thickness here:

brainly.com/question/4937019

#SPJ1

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