newton’s third law color by number

Newtons Third Law Color By Number

Answers

Answer 1

When action and reaction forces are applied, the forces cancel out. [green]The action force is always greater than the reaction force. [purple]The reaction force is equal to the action force. [pink] .

What is force ?

Force is an influence that can cause an object to change its motion or make it stay still. It is described as a push or pull in a specific direction, and it is measured in Newtons. Force can be applied to objects in contact with each other, such as when two objects are pushing against each other. It can also act over a distance, such as when a magnet attracts or repels another magnet. Forces can cause an object to accelerate, decelerate, or change direction. They can also be used to do work, such as lifting an object or compressing a spring.

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Related Questions

1. Given that an audio signal is sampled at a rate of 1024 Hz,
find the file size of such audio file of stereo type but radio
quality with a duration of 1 minute.

Answers

The formula to calculate the file size of an audio file is: File size = sample rate x bit depth x number of channels x duration in seconds.

Given that an audio signal is sampled at a rate of 1024 Hz, we can calculate the file size of such an audio file with the formula above. For a stereo type audio file, we have 2 channels. Radio quality audio files typically have a bit depth of 16 bits.

To calculate the duration in seconds for a 1 minute audio file, we have to multiply 1 minute by 60 seconds, which is equal to 60 x 1 = 60 seconds. File size = 1024 x 16 x 2 x 60 = 1,572,864 bits or 196,608 bytesTherefore, the file size of a stereo type but radio quality audio file with a duration of 1 minute and sampled at a rate of 1024 Hz is 1,572,864 bits or 196,608 bytes.

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Which electromagnetic waves have the shortest wavelength and the highest frequency?

waves

Answers

Answer: Gamma rays (violet) have the shortest wavelengths and the highest frequencies.

Explanation: The wavelength of the gamma rays is less than 0.01 nanometers. The frequency of a wave is inversely proportional to its wavelength. That means that waves with a high frequency have a short wavelength, while waves with a low frequency have a longer wavelength.

The electromagnetic waves have the shortest wavelength and the highest frequency is Gamma rays (violet).

What are gamma rays?

Gamma radiation, from gamma rays (γ), is a type of electromagnetic radiation usually produced by radioactive elements. Gamma rays, due to their high energy, are able to penetrate matter more deeply than alpha or beta radiation.

Gamma ray is a type of high frequency electromagnetic radiation usually produced by radioactive elements.

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3
1 point
An archer fires an arrow at 86m/s and an angle of 34° above the ground. What is the horizontal velocity?
71.30 m/s
48.09 m/s
86 m/s
65.82 m/s

Answers

Answer:

Below

Explanation:

VERTICAL velocity will be   v  sin 34

HORIZONTAL velocity will be   v cos 34  = 86 cos 34 = 71.3 m/s

At a certain temperature the vapor pressure of pure acetyl bromide (CH_3COBr) is measured to be 4B6. torr Suppose a solution is prepared by mixing 76.9 g of acetyl bromide and 119. g of hepriane (C_7H_16). Calculate the partial pressure of acetyl bromide vapor above this solution. Round your answer to 3 significant digits.

Answers

Acetyl bromide vapor has a partial pressure of 0.22 atm over this solution. Acetyl bromide is a chemical compound having a molar mass of 122.95 g/mol and a chemical formula of C2H3BrO.

The partial pressure be calculated?

Acetyl bromide is a chemical compound having a molar mass of 122.95 g/mol and a chemical formula of C2H3BrO. With a density of 1.66 g/cm3, acetyl bromide is frequently categorized as a volatile organic substance.

Chloroform is a chemical substance with a molar mass of 119.38 g/mol and the chemical formula CHCl3.

So let's jump right into the calculations for the preceding question.

The mass/molar mass of acetyl bromide, C2H3BrO, is 51.8/122.95, or 0.421 moles.

Chloroform, CHCl3 has a molecular mass of 123/119.38, or 1.03 moles.

Total moles = 1.03 moles + 0.421 moles = 1.4513 moles.

Mole fraction of acetyl bromide = 0.421 moles/1.4513 moles = 0.2901 Partial pressure = 0.2901 x 0.75 = 0.2176 atm = 0.22 atm.    

The complete question is,

The pure acetyl bromide's vapor pressure is calculated to be at a particular temperature. Let's say that acetyl bromide and chloroform are combined to create a solution. Determine how much acetyl bromide vapor is present above this solution as a partial pressure. To significant digits, round your response. Advanced students should be aware that they can presume the solution is perfect.  

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Please help with the page below

Please help with the page below

Answers

Explanation:

I think a) Waste product and b) 80%

a claim is a set of interacting parts forming a complex whole true or fasle.

Answers

Answer:

false

Explanation i have none

An electron acquires 5.70×10−16 JJ of kinetic energy when it is accelerated by an electric field from plate A to plate B. What is the potential difference between the plates? Express your answer to three significant figures and include the appropriate units.

Answers

The potential difference between the plates is 3.56×10^3 V.

The potential difference between the plates can be calculated using the formula for kinetic energy, which is KE = 1/2mv^2. Since the electron has a very small mass, we can assume that its kinetic energy is equal to the electrical potential energy gained by moving through the electric field. Therefore, we can use the formula for electrical potential energy, which is PE = qV, where q is the charge of the electron and V is the potential difference between the plates.

We know that the electron acquired 5.70×10−16 JJ of kinetic energy, which is equal to the electrical potential energy gained by moving through the electric field. Thus, we can substitute the given values into the formula for electrical potential energy to find the potential difference between the plates.

PE = qV
5.70×10−16 J = (1.602×10−19 C)V
Solving for V gives:
V = 3.56×10^3 V

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A body moves uniform acceleration of 10m/s² covers a distance of 320m if it's unitial velocity was 60m/s. Calculate its final velocity

Answers

Knowing the acceleration, distance and initial velocity of a body, its final velocity is 100 m/s.

The final velocity of a body with uniform acceleration can be calculated using the formula:
Vf² = Vi² + 2aΔx

Where Vf is the final velocity, Vi is the initial velocity, a is the acceleration, and Δx is the change in distance.

Plugging in the given values:
Vf² = (60m/s)² + 2(10m/s²)(320m)
Vf² = 3600m²/s² + 6400m²/s²
Vf² = 10000m²/s²
Vf = √(10000m²/s²)
Vf = 100m/s

Therefore, the final velocity of the body is 100m/s.

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1. Who were the first three countries to build rocket engines?
O Russia, Germany, China
O Germany, China, Canada
O Russia, USA, Germany
O USA. China, Russia

Answers

Answer:

i think its  Russia, USA, Germany.

A device with a wire coal that is mechanically rotated through a

Answers

Answer:

A generator is a device that converts mechanical energy into electrical energy by rotating a coil of wire in a magnetic field.

WHAT IS THE SPEED OF LIGHT?



WHAT DOES LIGHT TRAVEL FASTEST THROUGH?



2ND FASTEST?



3RD FASTEST?



SLOWEST?

Answers

Answer:

speed of light: 299,792,458

what does light travel fasted through?: Light will have the fastest velocity when it travels through the air. Light will have the slowest velocity when it travels through gelatin. Why? Light slows down when passing through different transparent materials. The more it slows down, the more it bends when it hits a medium made of that material

2- What happens to the work done when a force is doubled and the distance move a remain the same

Answers

the distance moved by the object remains the same, so the work done is equal to twice the initial amount of work done. In other words, the work done is directly proportional to the force applied but inversely proportional to the distance moved.

When a force is doubled, and the distance moved remains the same, the work done is also doubled. The relationship between force, distance, and work is given by the equation: Work = Force x Distance Where: Work is the energy transferred when a force moves an object through a distance. Force is the push or pull applied to an object to cause it to move. Distance is the amount of space an object moves in the direction of the force. When a force is doubled, the amount of energy transferred to the object is doubled. However, the distance moved by the object remains the same, so the work done is equal to twice the initial amount of work done. In other words, the work done is directly proportional to the force applied but inversely proportional to the distance moved.

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what is the name of the side of angle x

what is the name of the side of angle x

Answers

It doesn’t say x anywere

what is the state capital of Florida?

Answers

Answer:

Tallahassee

Explanation:

The Florida State Capitol in Tallahassee, Florida, is an architecturally and historically significant building listed on the National Register of Historic Places. The Capitol is at the intersection of Apalachee Parkway and South Monroe Street in downtown Tallahassee, Florida.

:)I hope you enjoy this:)

how do you state a hypothesis! Branliest

Answers

Answer:

State your hypothesis as concisely, and to the point, as possible. A hypothesis is usually written in a form where it proposes that, if something is done, then something else will occur. Usually, you don't want to state a hypothesis as a question. You believe in something, and you're seeking to prove it.

Explanation:

Use an “If...then...” statement!

Explain how velocity, displacement, angle, and time are related in projectile motion

Answers

Projectile motion is the motion of an object that is projected into the air and then follows a path determined by the forces acting on it.

Velocity, displacement, angle, and time are all related in projectile motion. The velocity of a projectile determines its speed and direction. The initial velocity of the projectile is composed of two components, the horizontal velocity and the vertical velocity. The horizontal velocity remains constant throughout the projectile motion, while the vertical velocity changes due to the force of gravity. The displacement of the projectile is its change in position during the motion. The displacement is dependent on both the initial velocity and the time elapsed. The horizontal displacement is determined by the horizontal velocity and time, while the vertical displacement is determined by the vertical velocity and time. The angle of projection is the angle at which the projectile is launched into the air. The angle affects the initial velocity components and determines the shape of the projectile path. The time of flight is the total time that the projectile is in the air. The time of flight is dependent on the vertical velocity component, the angle of projection, and the height of the launch point. In summary, the velocity, displacement, angle, and time are all related in projectile motion, and changes in any one of these factors will affect the trajectory of the projectile.

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Which material is a good conductor of electricity?.

Answers

Answer:

Copper

Explanation:

Copper, its ne of the most used materials because of their ability to be the best conductors. Other materials that are sometimes used as conductors are silver, gold, and aluminum.

A piston-cylinder device initially contains a mixture of saturated water and saturated steam at 200kPa. The total mass is 0.5 kg and the volume is 0.3 m

3. Now the fluid is heated up under the same pressure, until the volume doubles. Find (a) the initial temperature (b) the final temperature (c) the total internal energy change of the fluid during this process. (d) Also sketch the process on the P-v and I-v diagrams. including the initial state, the final state, and the path.

Answers

(a) The initial temperature is 373.95 K.

(b) The final temperature is 546.15 K.

(c) The total internal energy change of the fluid during this process is 515.4 kJ.

(d) The process can be represented as an isochoric heating process on the P-v diagram and as an isobaric expansion process on the T-v diagram.

(a) To find the initial temperature, we can use the saturated steam tables. At a pressure of 200 kPa, the corresponding saturation temperature is 373.95 K.

(b) Since the volume doubles, the process is an isochoric (constant volume) heating process. Using the ideal gas law, we can determine the final temperature. The initial and final volumes are related by the equation V_final = 2V_initial. Since the mass remains constant, the specific volume (v) is inversely proportional to the density (ρ). Therefore, ρ_final = ρ_initial/2. Using the ideal gas law, we can calculate the final temperature to be 546.15 K.

(c) The total internal energy change can be calculated using the equation ΔU = mC_vΔT, where m is the mass of the fluid and C_v is the specific heat at constant volume. Given the mass as 0.5 kg, the specific heat of water at constant volume, and the temperature change, we can find that the total internal energy change is 515.4 kJ.

(d) On the P-v diagram, the process is represented as a vertical line at 200 kPa, indicating constant pressure. On the T-v diagram, the process is shown as an upward-sloping line, indicating an isobaric expansion process. The initial state is represented as a point on the left, and the final state is represented as a point on the right. The path between the initial and final states is a straight line connecting these two points.

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if you were a submarine commander and wanted to go deep enough that your ship would not feel the effect of 300 ft (91 meters) wavelength storm waves, how deep would you have to dive?

Answers

As a submarine commander, if you want to avoid the effect of 300 ft (91 meters) wavelength storm waves, you would need to dive to a depth of at least 152 meters (500 feet). This is because waves lose energy as they travel through the water, and the longer the wavelength, the deeper they penetrate.

Therefore, a 300 ft wavelength storm wave would lose most of its energy at a depth of around 152 meters (500 feet).

Diving to this depth would require careful consideration of several factors, including the safety of the submarine and its crew, the ability to navigate in deep waters, and the impact on mission objectives. It is also important to note that while diving to this depth may provide some protection against storm waves, it does not completely eliminate the risk of encountering dangerous conditions at sea. As such, it is critical for submarine commanders to remain vigilant and adaptable in responding to changing weather and ocean conditions.

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A downed pilot fires a flare from a flare gun. The flare an initial speed of 250 m/s and is fired at an angle of 35° to the ground. Find the maximum height the flare will reach. How long does it take for the flare to reach its maximum altitude ? What will be the final vertical velocity ?

Answers

Answer:

Maximum Altitude: vi = 250 m/s At the maximum height q = 35° vy,f = vy,i − g∆t = 0 g = 9.81 m/s2 vy,i = vi (sin q) = g∆t ∆t =  vi (si g n q)  =  (250 9 m .8 / 1 s) m (s / i s n 2  35°) ∆t = 15 s

Vertical Velocity: Vyf = 439.09

Explanation:

The time it will take to reach its maximum altitude will be 14.63 seconds, and the final vertical velocity will be 143.4 m/s.

What is Speed?

Velocity is the pace and direction of an object's movement, whereas speed is the time rate at which an object is travelling along a path. In other words, speed is a scalar value, but velocity is a vector.

The velocity at time t = 0 is known as the initial velocity (u). It is the rate at which motion initially manifests itself.

On the other hand, the final velocity is a vector number that represents the speed and direction of a moving body after it has experienced its maximum acceleration.

According to the question, the given values are :

Angle, θ = 35°

V₀ = 250 m/s

\(V_o_y=V_osin\theta\)

\(V_o_y\) = (250)(sin 35°)

= 250 × 0.573

\(V_o_y\) = 143.4 m/s.

Now, the time it will take to reach its maximum height will be :

\(t_m_a_x=V_o_y/g\)

= 143.4 / 9.8

\(t_m_a_x\)= 14.63 seconds.

Hence, the time it will take to reach its maximum altitude is 14.63 seconds.

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11.5 A group of hikers uses a GPS while doing a 40-mile trek in Colorado. A curve fit to the data shows that their altitude can be approximated by the function y(t) = 0.12 - 6.75 135-11202 +3200r where y and t are expressed in feet and hours, respectively. During the 18-hour hike, determine (a) the maximum altitude that the hikers reach, (b) the total feet they ascend, (c) the total feet they descend. Hint: You will need to use a calculator or computer to solve for the roots of a fourth-order polynomial. 9070, 62 + 11.6 The motion of a particle is defined by the relation x 9t 5, where x is expressed in feet and t in seconds. Determine (a) when the velocity is zero, (b) the position, acceleration, and total distance traveled when t 5 s

Answers

(a) To determine the maximum altitude reached by the hikers, we need to find the maximum value of the function y(t). By analyzing the given function, we can see that the maximum altitude occurs at the highest point of the curve.

To find this point, we can take the derivative of y(t) with respect to t and set it equal to zero. Solving this equation will give us the value of t at which the maximum altitude is reached. Substituting this value back into the original function will give us the maximum altitude.

(b) To calculate the total feet ascended by the hikers, we need to find the area under the curve of the function y(t) over the time interval of the hike. This can be done by integrating y(t) with respect to t over the given interval.

(c) Similarly, to calculate the total feet descended by the hikers, we need to find the area under the curve of the function y(t) below the x-axis over the time interval of the hike. This can be achieved by integrating the absolute value of y(t) with respect to t over the given interval.

For the second part of the question:

(a) To determine when the velocity is zero, we need to find the time(s) at which the derivative of the position function x(t) is equal to zero.

(b) The position at t=5s can be found by substituting t=5 into the position function x(t). The acceleration can be found by taking the second derivative of x(t) with respect to t. The total distance traveled can be calculated by finding the definite integral of the absolute value of the velocity function from t=0 to t=5.

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Sirius is the brightest star in the night sky. It has a surface temperature of T = 9940 K. a) (2 pts) At what wavelength (in nm) is its radiation the most intense? Which part of the electromagnetic spectrum does that correspond to? b) (2 pts) Given that the radius of Sirius is 1.71 times the radius of the Sun, and the Sun's surface temperature is 5777 K, what is the ratio of their luminosities Lsirius/Lsun?

Answers

a) The wavelength of the radiation that is most intense can be calculated using Wien's Law. The formula is given by: λmaxT=2.898 × 10^-3 nmK. The ratio of their luminosities Lsirius/Lsun is 24.99.

where λmax is the wavelength of the most intense radiation, and T is the temperature. The surface temperature of Sirius, T = 9940 K. Using the above formula, λmax can be calculated as:λmax=2.898 × 10^-3 nmK / 9940 K= 0.0002915 nm. This corresponds to the ultraviolet part of the electromagnetic spectrum. b) (2 pts) Given that the radius of Sirius is 1.71 times the radius of the Sun, and the Sun's surface temperature is 5777 K, The ratio of their luminosities can be calculated using the formula: L=4πR^2σT^4where L is the luminosity, R is the radius, T is the temperature and σ is the Stefan-Boltzmann constant. Let's calculate the ratio of their luminosities: L sirius/L sun=[4π(Rsirius)^2σTsirius^4] / [4π(Rsun)^2σTsun^4]= (Rsirius / Rsun)^2(Tsirius / Tsun)^4= (1.71)^2(9940 / 5777)^4= 24.99. The ratio of their luminosities Lsirius/Lsun is 24.99.

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To solve a problem using the equation for Kepler’s third law, Enrico must convert the average distance of Mars from the Sun from meters into astronomical units. How should he make the conversion? multiply the average distance by 1. 5 × 1011 multiply 1. 5 × 1011 by the average distance divide the average distance by 1. 5 × 1011 divide 1. 5 × 1011 by the average distance.

Answers

The conversion from meters to astronomical units is done by dividing the average distance by 1. 5 × 10^11.

Just as different areas of human endeavor has different units, the unit of length in astronomy is astronomical units. The astronomical unit is defined as the distance between the center of the earth and the sun.

To  solve a problem using the equation for Kepler's third law, Enrico must convert the average distance of Mars from the Sun from meters into astronomical units. This is done by dividing the average distance by 1. 5 × 10^11.

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6. Draw conclusions: Newton’s first law states that an object in motion will travel at a constant velocity unless acted upon by an unbalanced force. How do these experiments show this?

Answers

Answer:

The experiments are not shown, so I will answer in a general way.

By the first Newton's law, an object will only change it's velocity if there is a net force different than zero acting on the object.

Then in the experiments (depending on the experiment), you can see different things.

If an object is not moving and you apply a force in it, the object will move.

If an object is moving and you apply a force in the opposite direction of it's motion, the motion will: decrease the speed, stop at all, or move in the opposite direction. Depending on the force that you apply.

An excellent experiment (but hard to do) is dropping an object from a really high place.

The gravitational force will pull down the object and the object will start to increase it's velocity.

But there is the air resistance, that opposes to this motion and increases with the speed of the object.

Then there is a given speed such that the air resistance force will be equal to the gravitational force, then we have a balanced force (the net force is zero) which means that the object will keep falling at a constant velocity.

Answer:

Explanation:

Since the fans are blowing in opposite directions, the net force stays the same and so does the velocity. (I wrote this and got it right)



You matter .
Until you Multiply yerself by the speed of Light Squared.
Then you Energy.

Answers

Answer:

Hellow ❤️

.

.

Gooood Morning

Answer:

?

Explanation:

I thought we were talking about a Flashpoint or something?

An organ pipe closed at one end and open at the other has a length of 1.8 m.

An organ pipe closed at one end and open at the other has a length of 1.8 m.

Answers

Given,

The length of the pipe, L=1.8 m

Speed of the sound, v=340 m/s

To form the standing wave with the longest wavelength, the number of nodes of the thus formed standing wave should be equal to 1.

The wavelength of the standing wave created in a closed-end pipe is given by,

\(\lambda=\frac{4}{1}L\)

On substituting the known values,

\(\begin{gathered} \lambda=\frac{4}{1}\times1.8 \\ =7.2\text{ m} \end{gathered}\)

Thus the longest possible wavelength is 7.2 m

The frequency of this standing wave is given by,

\(f=\frac{v}{\lambda}\)

On substituting the known values,

\(\begin{gathered} f=\frac{340}{7.2} \\ =47.22\text{ Hz} \end{gathered}\)

Thus the frequency of this standing wave is 47.22 Hz.

If the mass of block B is 2kg, the gravitational force exerted on block B is most nearly which of the following?
0.2N
2N
20N

P.S The acceleration is 10m/s^2 but I have no idea how to get that, so could someone explain that to me.​

If the mass of block B is 2kg, the gravitational force exerted on block B is most nearly which of the

Answers

Answer:

20 N.

Explanation:

The following data were obtained from the question:

Mass of block B (m) = 2 Kg

Acceleration due to gravity (g) = 10 m/s²

Gravitational force (F) =..?

Force is simply defined as the product of mass and acceleration i.e

Force = mass (m) × acceleration (a)

F = ma

Thus, we can say that the gravitational force on block B will be the product of the mass of block B and acceleration due to gravity i.e

Gravitational force (F) = mass of block B (m) × acceleration due to gravity (g)

F = mg

Mass of block B (m) = 2 Kg

Acceleration due to gravity (g) = 10 m/s²

Gravitational force (F) =..?

F = mg

F = 2 × 10

F = 20 N

The, the gravitational force exerted on block B is 20 N

Gravitational force exerted on block B is 20 N

Given that;

Mass of block = 2 kg

Acceleration = 10 m/s²

Find:

Gravitational force exerted on block B

Computation:

Gravitational force = ma

Gravitational force exerted on block B = Mass of block × Acceleration

Gravitational force exerted on block B = 2 × 10

Gravitational force exerted on block B = 20 N

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A ball is thrown downward at a velocity of -6 m/s. What is the velocity of
the ball 7 seconds later?
1 point

Answers

Velocity = initial velocity + (Accelleration * Time). -6 + (9.8 * 7) = -137.4. V = -137.4

FILL IN THE BLANK. The _____ magnitude of a star depends directly upon its luminosity and distance.a. absoluteb. bolometricc. visuald. apparent

Answers

Answer:

D.

Explanation:

pls mark brainliest :)

The apparent (option D) magnitude of a star depends directly upon its luminosity and distance.

Apparent magnitude is a measure of the brightness of a celestial object as seen from Earth. It takes into account both the object's intrinsic luminosity, which is the amount of light it emits, and its distance from the observer. A star's apparent magnitude will be smaller (and hence, it will appear brighter) if it is either more luminous or closer to the Earth. Conversely, a star will have a larger apparent magnitude (appearing dimmer) if it is less luminous or farther away.

The apparent magnitude scale is logarithmic, with each unit on the scale corresponding to a brightness ratio of approximately 2.512. This means that a star with an apparent magnitude of 1 is around 2.512 times brighter than a star with an apparent magnitude of 2. The scale also runs in reverse, with brighter objects having lower (or even negative) magnitudes, and dimmer objects having higher magnitudes.

Hence, the correct answer is Option D. Apparent.

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Take one jar with salt water and another with pure water .put an egg into both jars. In which the jar egg floated over the liquid. Justify your answer

Answers

Answer:

if the which coduct salt has more density so the egg floats .

Explanation:

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