a. a spaceship has a rest mass of 500,000 tons. if you could measure its mass when it was traveling at half the speed of light, what would it be? b. a fly has a mass of 1 gram at rest. how fast would it have to be traveling to have the mass of a large suv, which is about 3000 kilograms?

Answers

Answer 1

(a) The mass when a 500,000 tons spaceship traveling at half the speed of light = 250,000tons/c

(b) The velocity of the fly (that has a mass of 1 gram at rest), if have the mass of a large suv, which is about 3000 kilograms = 3000000 m/s

Equation that shows how momentum is directly related to an object's mass (m) and speed (v). The momentum of a large, swift object is greater than that of a small, slower object.

p = m x v

Where,

p = momentum

m = mass (kh)

v = the speed

Hence, the mass of the spaceship:

p = (500,000 tons x 1 m/s)

= 250,000tons/c

(b)

The velocity of the fly:

p = 1g x 1 m/s

Hence,

The velocity = 3000000 m/s

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Related Questions

You decide to change the mass of the sandbag for the two actors to reduce the acceleration. The mass of the dolly and actors combined is still 94 kg, and the coefficient of kinetic friction between the dolly and the stage floor is
0.20. If you want the dolly to accelerate at 1.9 m/s?, what should the mass of the sandbag be?

Answers

A 35–40 pound sandbag must be filled halfway to two thirds of the way. The maximum permitted weight for a typical pickup truck is 30 sandbags, or around 1,000 pounds.

What sand bag weighs the most?

Eight various size options for these Strongman Sandbags allow for approximative maximum load capabilities of 25LB or 50LB (for developmental practice or introduction young people to sandbag exercise) or 100, 150, 200, 250, 300, or 400LB (for experienced athletes).

How do you figure out the weight of a volume of sand?

Determine the size of each mineral inside the sand to compute its weight, then multiply that volume by its mass density. The weight of the sand can then be calculated by multiplying the mass of each component element by the regional acceleration of gravity.

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the hour, minute, and second hands on a clock are 0.25 m, 0.30 m and 0.35 m long, respectively. what are the distances traveled by the tips of the hands in a 30 min interval?

Answers

The points of the hour hand, minute hand, and second hand cover 0.087 metres, 1.3 metres, and 85 metres in a 40-minute period, respectively.

How far do the tips of the hands move in a period of 25 minutes?

The minute hand's tip completes one full rotation in 60 minutes, as we also know. Thus, it will finish the 25/60th of the circle in 25 minutes. The moved distance is therefore equal to 2r * 25/60 inches, or 11.78 inches.

What is the length? travelled on the hour hand's pointer?

The radius of the circle the point creates is equal to the distance it travels. the radius of the circle formed by the tip and the angle that is covered.

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PLEASE HELP Red tape can be used to repair a broken tail light on a car. In one or two sentences explain how different colors of light are transmitted, reflected and absorbed by this kind of tape.

Answers

Answer:

When sunlight shines through an orange solution, the violet, blue and green wavelengths are absorbed. The other colors pass through. The transmitted light is the light we see, and it looks orange. Colored objects look the way they do because of reflected light.

Explanation:

a wave is traveling at a speed of 5 m/s. it has a frequency of 10hz. what is its angular wave number?

Answers

The angular wave number of a wave with a speed of 5 m/s and a frequency of 10 Hz is equal to ω = 2πf/v = 2π (10 Hz) / (5 m/s) = 6.283185 rad/s.

The angular wave number is an important parameter in describing the characteristics of a wave. It is a measure of the number of wave cycles that occur in a given distance, and it is related to the wavelength, frequency, and speed of the wave.

The angular wave number can also be used to calculate the frequency of a wave from its wavelength and speed. This is done by using the equation f = v/2πλ, where f is the frequency, v is the speed of the wave, and λ is the wavelength.

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consider a pool game being played on a pool table on the deck of an aircraft carrier near the bow (front). assume that the carrier is moving north at 25.0 m/s . as a result of the initial break, a ball flies over the edge of the table and over the edge of the deck with a horizontal component of velocity directed toward the bow of the ship of 5.00 m/s . what is vbw , the horizontal component of the speed with which this ball strikes the water in front of the ship (i.e., what is the speed of the ball relative to the water)?

Answers

The horizontal component of the ball's speed relative to the water is around 30.0 m/s.

What is velocity?

The direction of movement of the body or item is defined by velocity. Speed is fundamentally a scalar number. Velocity is, in essence, a vector quantity. It is the pace at which distance changes. It is the displacement rate of change. The velocity of an object is the rate at which its location changes in relation to a frame of reference and is a function of time. Velocity is similar to a speed and direction of motion specification (e.g., 60 km/hr to the north).

Here,

To find the horizontal component of the speed with which the ball strikes the water, we need to consider both the velocity of the carrier and the horizontal component of the velocity of the ball.

The horizontal component of the speed of the ball relative to the water is given by:

v_bw = v_bs + v_ship

where:

v_bw is the horizontal component of the speed of the ball relative to the water

v_bs is the horizontal component of the velocity of the ball (5.00 m/s)

v_ship is the velocity of the carrier (25.0 m/s)

So, the horizontal component of the speed of the ball relative to the water would be:

v_bw = 5.00 m/s + 25.0 m/s = 30.0 m/s

The horizontal component of the speed of the ball relative to the water is approximately 30.0 m/s.

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a vw beetle goes from 0 to 60.0 mi/h with an acceleration of 2.35 m/s2. (a) how much time does it take for the beetle to reach this speed? (b) a top-fuel dragster can go from 0 to 60.0 mi/h in 0.700 s. find the acceleration (in m/s2) of the dragster.

Answers

So, with an acceleration of 2.35 m/s², the VW Beetle takes 11.38 seconds to reach 60.0 miles per hour. As a result, the top-fuel dragster's acceleration is 38.3 m/s².

What is acceleration?

The rate of change of velocity is defined as acceleration. Acceleration usually indicates that the speed is changing, however this is not always the case. When an item goes on a circular course with a constant speed, it is still accelerating since its velocity direction changes. Acceleration is the rate at which velocity varies over time, both in terms of speed and direction. A point or object travelling in a straight path is accelerated if it accelerates or decelerates.

Here,

a. To find the time it takes for the VW Beetle to reach 60.0 mi/h with an acceleration of 2.35 m/s², we can use the equation:

v = a * t

Where v is the final velocity, a is the acceleration, and t is the time. To convert 60.0 mi/h to m/s, we can use the conversion factor 1 mi/h = 0.447 m/s:

60.0 mi/h = 60.0 * 0.447 m/s = 26.82 m/s

So we can solve for t:

t = v / a = 26.82 m/s / 2.35 m/s² = 11.38 s

So it takes the VW Beetle 11.38 s to reach 60.0 mi/h with an acceleration of 2.35 m/s².

b. To find the acceleration of the top-fuel dragster, we can use the equation and the information given:

v = a * t

Where v is the final velocity, a is the acceleration, and t is the time. To convert 60.0 mi/h to m/s, we can use the conversion factor 1 mi/h = 0.447 m/s:

60.0 mi/h = 60.0 * 0.447 m/s = 26.82 m/s

And we know t = 0.700 s. So we can solve for a:

a = v / t = 26.82 m/s / 0.700 s = 38.3 m/s²

So it takes the VW Beetle 11.38 s to reach 60.0 mi/h with an acceleration of 2.35 m/s². So the acceleration of the top-fuel dragster is 38.3 m/s².

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what is the potential energy for the child just as she is released, compared with the potential energy at the bottom of the swing?

Answers

The required potential energy at the bottom of the swing is calculated to be 78.7 J.

The mass of the child is given as m = 20 kg

Length of the rope L = 1.8 m

Angle of the rope from the vertical after pulling is θ = 39°

The swinging motion of the child is shown in the figure in the attachment below.

Let us calculate the potential energy for the child at extreme position with respect to the bottom position,

PE = m g ( L - L cos θ) = 20× 9.81 × 1.8 ( 1 - cos 39°) = 78.7 J

Here, g is acceleration due to gravity

Thus, the potential energy for the child just as she is released, compared with the potential energy at the bottom of the swing is calculated to be 78.7 J.

The given question is incomplete. The complete question is 'A 20 kg child plays on a swing having support ropes that are 1.8 m long. A friend pulls her back until the ropes are 39° from the vertical and releases her from rest.'

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At the beach in the daytime, a cool breeze generally blows from the water to the shore.
What is the name of this process of thermal energy transfer?

Answers

The name of this process of thermal energy transfer is convection.

How does the heat get transmitted during land breeze by convection?

The sea and the land breeze are due to the convection current of air. The conduction or the radiation can not take place because the process of conduction generally takes place in solids and the process of radiation process must need an inert medium to transmit heat energy from one place to another.

Convection is the process in which energy is transferred between two mediums that is a surface and fluid which flows over the surface. In the convective method, the heat energy transfer is transferred by diffusion (conduction) and by bulk fluid motion (advection).

so we can conclude that Convection is the main method of heat energy transfer in fluids such as water and air.

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Electric potential is the amount of potential energy per unit of charge

Answers

Explanation:

Yes, that is correct. Electric potential is a measure of the electric potential energy per unit of electric charge at a certain point in an electric field. It is often denoted by the symbol V and is measured in volts (V).

an athlete swims the length l of a pool in a time t 1and makes the return trip to the starting position in a time t 2. if she is swimming initially in the positive x direction, determine her average velocity for: the second half of swim g

Answers

The average velocity for the second half of the swim can be calculated is : v = d / t = l / t2

What is meant by average velocity?

Change in position or displacement (∆x) divided by the time intervals (∆t) in which the displacement occurs is called average velocity.

To determine the average velocity of athlete for the second half of the swim, you need to know  distance she covered and the time she took to cover it.

The distance covered in the second half of the swim is the length of the pool, l. The time taken for the second half of the swim is t2.

So, the average velocity for the second half of the swim can be calculated as follows:

v = d / t = l / t2

where d is the distance covered, t is the time taken, and v is the average velocity.

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When a solute is added to a liquid, the freezing point of the resulting solution is _____ than the freezing point of the pure liquid.A. higherB. no differentC. lower

Answers

The melting point of the clear supernatant is lower than for the 0 ° c of the original liquid when a solution is added to it.

How do melting and freezing points differ?

The temperature at which a material becomes liquid or solid is known as the melting or freezing point of that substance. Depending on the degree of bonding in between particles plus their mass, various substances have varying melting points.

Is 0 always the freezing point?

Water typically has a freezing point and melting point of 0 °C or 32 °F. If supercooling takes place or there are pollutants in the water that might cause freezing point elevation to happen, the degree may be lower.

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which two attributes are the most weakly correlated? engine size and cylinders acceleration and mpg engine size and mpg acceleration and vweight

Answers

Engine size and mpg (miles per gallon) are the two attributes that are most weakly correlated

Which two attributes are most weakly correlated?

Engine size and mpg (miles per gallon) are the two attributes that are most weakly correlated. Engine size and mpg have a negative correlation, meaning as engine size increases, mpg decreases.

Acceleration and engine size have a positive correlation, meaning as engine size increases, acceleration also increases. This correlation is stronger than the correlation between engine size and mpg.

Acceleration and vehicle weight have a negative correlation, meaning as vehicle weight increases, acceleration decreases. This correlation is also stronger than the correlation between engine size and mpg.

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a ringing bell is sending a longitudinal wave to your ear. what else is true about the longitudinal wave? check all that apply.

Answers

Longitudinally, all sound waves exist. Parallel to the wave's motion, energy is transmitted. Mechanics can produce longitudinal waves. Transverse electromagnetic waves are also possible.

What are the characteristics of electromagnetic waves?

The electromagnetic spectrum is a group of wave types that includes electromagnetic waves and has some similar characteristics. All electromagnetic waves have the same speed in a vacuum, which is the speed of light, or 300,000,000 metres per second, and are transverse waves that can pass through a vacuum.

The electromagnetic wave's origin is unknown?

To put it simply, a time-space-varying electric field creates a varying magnetic field at right angles to it, and the magnetic field creates an electric field at right angles to that as well. This process keeps going to create oscillations of the electric and magnetic field components, which are what make up electromagnetic waves.

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A ringing bell is sending a longitudinal wave to your ear. What else is true about the longitudinal wave? Check all that apply.

A. All sound waves are longitudinal.

B. Energy is transferred perpendicular to the wave’s motion.

C. Mechanical waves can be longitudinal.

D. Electromagnetic waves can be longitudinal.

E. Longitudinal waves require a medium to travel through.

7. A 100 kg log is dragged across a horizontal siand of concrete. 7.1 Show by calculation that the weight of the log is 980 N. Use the equation w = mg in which g = 9,8 m.s-2. (Refer back to Unit 6 on page 30.)​

Answers

The weight of the log is 980N

What is the Weight of an object?

The force of gravity acting on an object is its weight, which is equal to its mass times the acceleration of gravity, or w = mg. The newton is the SI unit for weight since it is a force.

The weight of a 100 kg log can be calculated using the equation w = mg,

where m is the mass of the log (100 kg) and g is the acceleration due to gravity (9.8 m/s^2).

So, w = (100 kg)(9.8 m/s^2) = 980 N.

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a tuna salad is removed from the cooler at 9:00 a.m. and put out for a buffet at 11:00 a.m. by what time must the tuna salad be served or thrown out?

Answers

At 9:00 am, a tuna salad is taken out of the cooler, and at 11:00 am, it is set out for a buffet. The deadline for serving or discarding the tuna salad is 3:00 PM.

When should the tuna salad be thrown out?

Tuna salad can be kept in the fridge for three to five days when properly refrigerated. How long can you leave tuna salad out in the open? When left out for longer than two hours at room temperature, tuna salad should be thrown away because bacteria grow quickly between 40 and 140 degrees Fahrenheit.

Can cold food be kept for up to 4 hours without a temperature control?

If the following conditions are met, it is OK to store cold food without ceramic heaters for more than four hours. requirements are satisfied Before being taken out of the temperature control, food must be kept at 41 degree Fahrenheit or lower. When the food is first received, label it with the expiration date.

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The acceleration due to gravity on the moon is 1.62 m/s^2, approximately a sixth of the value on earth. for a given initial velocity v0, and a given launch angle θ0, the ratio of the range of an ideal projectile on the moon to the range of the same projectile on earth, rmoon/rearth, will be approximately?

Answers

The ratio of the ideal projectile distance on the moon to the same projectile distance on earth, moon/back, is approximately (the acceleration of gravity on the moon is 1.62 m/s², about one-sixth of the acceleration due to gravity on earth. for a given initial velocity v0  , and the specified launch angle θ0) is (option B)

The initial velocity, launch angle, and acceleration due to gravity all affect a projectile's range. The formula for an ideal projectile's range is as follows:

R = v0²sin (2θ0) / g

Where,

v0 = the initial velocity (m/s)

θ0 = the launch angle

g = the acceleration due to gravity

The acceleration caused by gravity is 1.62 m/s² for the moon and 9.8 m/s² for the earth. Ranges on the moon and ranges on earth can be expressed as follows:

R moon / R earth = (1.62 sin (2θ0)) / g

sin (2θ0) = 1.62 / 9.8

Approximately ⅙

Consequently, an ideal projectile's range on the moon is around a sixth of its range on Earth.

The question is incomplete, it should be:

The acceleration due to gravity on the moon is 1.62 m/s², approximately a sixth of the value on earth. for a given initial velocity v0, and a given launch angle θ0, the ratio of the range of an ideal projectile on the moon to the range of the same projectile on earth, rmoon/rearth, will be approximately?

A. ⅓

B. ⅙

C. 1

D. 1/12

E. ⅕

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a heat transfer of 9.5 x 105 j is required to convert a block of ice at -150c to water at 150c. what was the mass of the block of ice?

Answers

The block of ice had a mass of approximately 4.94 kg.

In a system, what is heat transfer?

Any material made up of atoms and molecules can transmit heat through it. There are numerous ways in which the atoms are constantly moving. All matter has heat, or thermal energy, which results from atomic and molecular motion.

With increased molecular mobility, heat energy levels rise. However, when referring to heat transfer, it simply means the procedure by which heat is transferred from a body with a high temperature to one with a low one.

In thermodynamic systems, heat transmission is defined as

A temperature difference between a system and its surroundings causes heat transfer across the system's boundary.

It's odd that the temperature difference is referred to as a "potential."

q = mLf + mLf + mCp(T2 - T1)

where:

q = heat transfer (Joules)

mLf = heat of fusion of ice (Joules/kg)

mLf = 333.5 J/g

m = mass of ice (kg)

Cp = specific heat capacity of water (Joules/kg/°C)

Cp = 4.18 J/g/°C

T1 = initial temperature of ice (-150°C)

T2 = final temperature of water (150°C)

Rearranging the equation for mass:

m = q / (mLf + mLf + mCp(T2 - T1))

Substituting values:

m = 9.5 x 105 J / (333.5 J/g + 333.5 J/g + 4.18 J/g/°C × 300°C)

m = 9.5 x 105 J / (666.9 J/g + 1254.4 J/g)

m = 9.5 x 105 J / 1921.3 J/g

m = 9.5 x 105 J / 1921.3 J/g × (1 kg / 1000 g)

m = 9.5 x 105 J / 1921.3 J/g × (1 kg / 1000 g)

m = 4.94 kg

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now consider a pipe that is stopped (i.e., closed at one end) but still has a fundamental frequency of 300 hz in air. how does your answer to part a, fhe , change?

Answers

The fundamental frequency of pipe in helium is 879Hz while in air is 300Hz indicating the increase in frequency of helium.

Given the fundamental frequency of pipe in air (fa) = 300Hz

The molar mass of Helium = 4

Let the specific heat ration = α

The length of the pipe = L

We know that for the open ends of pipe frequency = v/2L while for the closed ends the frequency is v/4L where v is the velocity of sound wave.

We can see that f is directly proportional to v

We also know that the velocity of wave is calculated as: v = √αRT/M such that v is directly proportional to √α/M

Let the frequency of air = fa and frequency of helium = fh such that:

fh/fa = √αh/αa x Ma/Mh = √1.68 x 28.8 / 1.4 x 4

fh/fa = 2.93

fh = 300 x 2.93 = 879Hz

Hence the frequency of helium = 879Hz

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complete question: Now consider a pipe that is stopped (i.e., closed at one end) but still has a fundamental frequency of 285 in air. How does your answer to Part A, , change? a. fHe increases. b. fHe decreases. c. fHe stays the same.

a large ship is being towed by two tugs. the larger tug exerts a force which is greater than the smaller tug and at an angle of 30 degrees north of east. which direction must the smaller tug pull to ensure that the ship travels due east?

Answers

In order for the east to west components of the two forces to balance each other out, the smaller tug must be tugging in the south or east direction.

What do you name the separation between an object's location and your own?

The smallest distance between an object's initial and final locations is referred to as the displacement. It has two dimensions and a magnitude and direction vector quantity.

Distance is the distance covered by an item travelling in any direction or even changing direction. Position refers to an object's location inside a frame of reference. Positions can be shown using a number line for motion in a straight line. Displacement is the distance between the initial and final positions.

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a bullet of mass 10 g strikes a ballistic pendulum of mass 2.0 kg.the center of mass of the pendulum rises a vertical distance of 12 cm.assuming that the bullet remains embedded in the penduluffi, calculate the bullet's initial speed.

Answers

In this problem all the kinetic energy of the bullet is converted to potential 308.25∼308m/s.

Using the conservation of momentum

Therefore we have

By substitution to find the speed of the bullet

v= m bm b+m d

​2gh=0.012.01

2(9.8)(0.12)

​ =308.25∼308m/s.

What does the term "ballistic pendulum" mean?

Ballistic pendulum, a tool for determining a projectile's velocity, such as a bullet's. The pendulum bob is a large wooden block hung by two ropes. A bullet's momentum is transferred to the bob when it is shot into it. The pendulum swing's amplitude may be used to calculate the momentum of the bullet.

In this experiment, a ball shot from a spring pistol will have its velocity measured. Police laboratories have been measuring the muzzle velocities of weapons using ballistic pendulums for many years. Large block hanging by ropes made up the ballistic pendulum.

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a 90 kg fullback running east with a speed of 5.00 m/s is tackled by a 95.0 kg opponent running north with a speed of 3 m/s. if the collision is perfectly inelastic, calculate the speed and direction of the players just after the tackle and determine the mechanical energy lost as results of the collision. account of the missing energy

Answers

627-=63- and where you live my dear sir and friend are you

two identical aluminum objects are insulated from their surroundings. object a has a net charge of excess electrons. object b is grounded. which object is at a higher potential?

Answers

Object A has net charge of excess electrons and object B is grounded. Object that is at a higher potential is : B.

What is meant by potential difference?

Electric potential difference is also known as voltage. It is the external work needed to bring charge from one location to another location in electric field. Electric potential difference is change of potential energy experienced by test charge that has value of +1 .

Electric potential is the amount of work needed to move unit charge from a reference point to specific point against electric field. Electric potentials and electric fields in given region are related to each other and thus either can be used to describe the electrostatic properties of space.

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I've been stuck on this for a while now, could I get some help?

Let asteroid A have a mass of 7.86 x 1011 kg and asteroid B have a mass of 1.12 x 109 kg. If there is a gravitational attraction of 4.54 x 102 N between them, how far apart are their centers of mass?

A. 1.14 x 10-4 m
B. 1.14 x 104 m
C. 1.29 x 108 m
D. 1.29 x 10-8 m

Answers

The distance between the masses is 1.14 x 10⁴ m.

option B.

What is the distance between the masses?

The distance between the masses is calculated by applying Newton's law of universal gravitation.

Fg = Gm₁m₂ / R²

where;

G is universal gravitation constantR is the distance between the planetsm₁ is the mass of the first objectm₂ is the mass of the second object

R² = ( Gm₁m₂ ) / ( F )

R = √ [ ( Gm₁m₂ ) / ( F ) ]

R = √ [ ( 6.67 x 10⁻¹¹ x 7.86 x 10¹¹ x 1.12 x 10⁹ ) / ( 4.54 x 10² ) ]

R = 1.14 x 10⁴ m

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why was class 6 called moon rocks, what do moon rocks have to do with a module called exposure and risk?

Answers

Moon rocks have to do with a module called exposure and risk because even if the substance is hazardous, if we're not exposed, we're not at risk.

The measurement of potential future loss resulting from a certain event or business action is known as risk and exposure, and it can be computed as the probability of the event multiplied by the predicted loss as a result of the risk impact.

Risk analysis includes the estimation of the probability that a specific incident will cause the company to suffer a loss. Therefore, it is crucial for management to comprehend, estimate, and take the appropriate actions to avoid or mitigate that risk.

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is it possible to have a zero electric field value between two positive charges along the line joining the two charges?

Answers

Yes, it is possible to have a zero electric field value between two positive charges along the line joining the two charges.

What is electric field?

The physical field that surrounds electrically charged particles and exerts force on all the other charged particles in the field, either attracting or repelling them is called electric field. It may also refers to the physical field for a system of charged particles.

Electric property associated with each point in space when charge is present in any form is called electric field . Magnitude and direction of electric field are expressed by the value of E, called electric field strength or electric field intensity.

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The table shows information about two waves. Based on the given information, which conclusion can be made?

(1 point)
Responses

Wave W has a greater amplitude.

Wave X has a faster speed.

Wave X has a greater amplitude.

Answers

Because the information is incomplete, a wave would have a greater amplitude if it has a bigger disturbance when compared to another wave.

What is Amplitude?

In physics, amplitude refers to the greatest displacement or distance that a point on a vibrating body or wave can move relative to its equilibrium location. It is equivalent to the vibration path's half-length.

Hence, it can be seen that the wave's energy determines how far the medium's particles go. The amplitude of the wave determines how far the particles travel.

The energy of the disturbance that generates the wave determines the wave's amplitude. Greater amplitude results from a wave produced by a disturbance with more energy.

The general overview should give you a better understanding of waves, amplitudes and speed.

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a ball is thrown horizontally from the roof of a building 7.6 mm tall and lands 9.9 mm from the base. part a what was the ball's initial speed?

Answers

A ball is thrown horizontally from the roof of a building then the ball's initial speed is 7.98m/s.

What is initial speed?

Initial Velocity is defined as the velocity at time interval t = 0 and is represented by u.

Initial speed will be 7.68 m/s

Given, height of the building is

H = 7.5 m

As now we know that ball is thrown horizontally, so here initial speed in vertical direction is zero.

u = 1/2 * a *t^2

7.6 = 1/2 * 9.8 * t^2

t = 1.24 sec

The horizontal distance covered by the ball in the same time is , d = 9.5m

d= v t

v = 9.9/1.24

= 7.98 m/s

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when a certain spring is expanded 8 centimeters from its natural position and held fixed, the force necessary to hold it is 1600 dynes. find the work w required to stretch the spring an additional 8 centimeters.

Answers

The work required to stretch the spring an additional 8 centimeters is 6400 J.

How much is the spring constant?

F = -kx. The proportional constant k is referred to as the "spring constant". It measures the spring's stiffness. When a spring is stretched or compressed to a length that deviates by an amount x from its equilibrium length, it applies a force F = -kx in the direction of its equilibrium position. A spring's force acts to return the spring to its equilibrium length; it is a restoring force.

There is a perfect spring's equilibrium length. When a spring is compressed, a force pushing the ends apart has an intensity proportional to how far it has deviated from its equilibrium length. When a spring is extended, a force pulling one end toward the other has a magnitude proportional.

W = 1/2 × k

where k is the spring constant and x is the amount of displacement.

Since we know the force necessary to hold the spring (1600 dynes) and the displacement (8 cm), we can use the formula for force:

F = (k) × (x)

to find the spring constant:

k = F / x = 1600 / 8 = 200 N/m

Now that we have the spring constant, we can plug in the values into the formula for work:

W = 1/2 × 200 ×  = 1/2 × 200 × 64 = 6400 J

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two rectangular tanks contain air that have a constant temperature and are connected by a single valve. one tank is holding moist air, while the other is holding dry air. once the valve is opened, what is most likely to happen?The two air masses will remain stationary and not mix. The two air masses will mix until an equilibrium is reached The moist air will become even more moist, and the dry air will become even more dry None of the answers are correct

Answers

The right response is That dry air will get drier and the moisture will get even more moist.

What are masses in maths?

Mass is a physical quantity. This unit of mass measuring is an object's weight. It is measurable in conventional mass units such milligrams, kilograms, and pounds. Although smaller things are measured in grams, the kilogram is the actual SI mass unit.

What is mass in physics with example?

The best way to grasp mass is the amount of matter that any item or body is made of. There is mass in everything we are able to see. A table, a chair, your bed, the ball, a cup, or even air are examples of items with mass. Everything is therefore either lighter or heavy.

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What property can be measured without changing the substance?

Answers

A substance's physical property is indeed a quality that can be seen or quantified without affecting the substance's identity. Color, density, toughness, boiling and melting points are examples of physical qualities.

What characteristics may be evaluated without modifying the substance?

Physical characteristics are characteristics that may be seen or quantified without modifying the makeup of the substance. Some examples include the freezing, melting, and boiling points as well as color, hardness, and fragrance.

What characteristics may be identified without altering the nature of the substance?

Physical qualities are those that can be ascertained about a substance without altering its makeup. Physical qualities include traits like critical temperature, boiling point, density, reactivity, color, odor, etc.

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