What is the main difference between a gas and a
plasma?

Answers

Answer 1
The main difference is that in a gas, the atoms remain intact and generally linked into molecules, but in plasma, at least part of the electrons have completely separated from their atoms. In other words, plasma particles are charged, whereas gas particles are largely uncharged.

Related Questions

Frog jumps to the left with average speed of 1.8 m/s for 0.55 s whats the frogs displacement in meters

Answers

Answer: 0.99m left

Explanation:

The formula:

Distance / Time = Rate

Fill in the formula

Distance / 0.55s = 1.8 m/s

Multiply both sides by 0.55s

Distance = 0.99m

Displacement = 0.99m to the left.

Answer:

-0.99 (See attached)

Explanation:

(See attached)

a certain light wave has a frequency of 4.29 x 10^14 hz. what is the wavelength of this wave in empty space

Answers

The wavelength of a wave that has a frequency of 4.29 x 10^14 Hz is 6.9 × 10-⁵m.

HOW TO CALCULATE WAVELENGTH?

The wavelength of a wave can be calculated using the following formula:

λ = v/f

Where;

λ = wavelengthv = velocityf = frequency

λ = 3 × 10⁸ ÷ 4.29 × 10¹⁴

λ = 0.69 × 10-⁶

λ = 6.9 × 10-⁵m

Therefore, the wavelength of a wave that has a frequency of 4.29 x 10^14 Hz is 6.9 × 10-⁵m.

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5. A family leaves for an evening walk around the neighborhood. They leave at 5 pm and return at 6 pm. They traveled a total of 2.5 miles. What is their average speed?

Answers

This question involves the concepts of average speed, distance, and time.

The average speed of the family is "2.5 mi/hr".

AVERAGE SPEED

The average speed is defined as the ratio of the total distance covered with the total time taken to cover it.

[tex]v=\frac{s}{t}[/tex]

where,

s = distance covered = 2.5 milest = total time taken = 1 hourv = average speed = ?

Therefore,

[tex]v=\frac{2.5\ mi}{1\ hr}[/tex]

v = 2.5 mi/hr

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net force acting on a 100kg man standing in an elevator accelerating downward with a=9.8 m/s^2 comes out to be:
a. 980N
b. 580N
c. 1380N
d. zero

Answers

Explanation:

F=ma=(100kg)(4m/s/s)=400N

N is Newton, the SI unit of force, which is a kg•m/s/s. F is net force and, of course, m is mass and a is acceleration.

The net force acting on a 100kg man standing in an elevator accelerating downward with a=9.8 m/s^2 is d. zero

What is force?

Force is a push or pulls on an object that causes it to change its speed or direction.It is an external agent capable of changing the state of rest or motion of a body. It is a vector quantity so it has a magnitude and a direction.

calculation force of a lift:-

 net force,

     Mg-F=Ma

      100*9.8-F=100*9.8

     F=100*9.8-100.9.8

        F= 0

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A beam of light passes through the air (n = 1. 00) and enters a diamond (n - 2. 42) at an angle of incidence of 40 degrees. Use Snell's Law to find the angle of refraction in the diamondIf the diamond is placed in a tank of water (n - 1. 33) and the beam of light enters the diamond at the same angle of incidence, what would be the new angle of refraction Show all work

Answers

Explanation:

This is the correct answer...

I hope you understand...

Suppose you are playing ice hockey in the middle of a totally frictionless frozen pond? How can you move yourself to the edge of the pond? Remember that without friction, you won't be able to push against the ice. Explain what you would do and why it would work.

Answers

Answer:

if it is totally frictionless you can only need to throw the hockey stick to one other side and wait for yourself to move slowly to the other side. this will happen by the law of conservation of momentum and Newton's First law (continues to move in the uniform velocity without external I. e. friction, Force).

How many mL are in 3.2 gallons

Answers

Answer:

12113.318mL

Explanation:

I hope this helps

Think of an animal that has a distinctive or unusual body shapes. Describe how its body shape helps its momentum and how momentum affects its survival.

Answers

penguins! so momentum is based on mass and velocity, the advantages is that they have stored mass in the form of like fats to keep them warm however they are built to slide basically so that there is less friction when they travel so sideways their bullet like shape helps increase velocity so they have both mass and considerable velocity!

What does density measure?​

Answers

Answer:

I think the answer is c.) how much volume something has

Answer:

it measures the volume of a object. (or material substances. ) SO C. HOW MUCH VOLUME SOMETHING HAS.

2. The resistance of the bulbs shown in the figure is 12 Ω each. What will the voltmeter read when the first switch is on and both switches are on?

3. The diagram in the figure shows the circuit data. Calculate the amperage of the circuit and the voltage across resistor R5 when:
(a) the switch is on;
(b) the switch is off.

Answers

As resistance doesn't affect potential difference voltmeter reading remains 6V

#3

#a

R=3ohmV=9V

So

Apply ohms law

[tex]\\ \rm\rightarrowtail I=\dfrac{V}{R}[/tex]

[tex]\\ \rm\rightarrowtail I=\dfrac{9}{3}=3A[/tex]

I is current

#b

Switch is off

Current=0A

Which aspect must be taken into consideration when creating a model of radioactive decay?

Answers

Answer:

The weak nuclear force perhaps?

Explanation:

the weak nuclear force is the fundamental force responsible for the radioactive decay of particles

Where is Earth’s magnetic south pole located? What about the magnetic north pole? What does this say about how a compass needle will react to the poles?

Answers

Answer:

Currently, the magnetic south pole lies about ten degrees distant from the geographic north pole, and sits in the Arctic Ocean north of Alaska. The north end on a compass therefore currently points roughly towards Alaska and not exactly towards geographic north.

Explanation:

calculate the kinetic energy of: a car of mass 1200 kg that travels 60m in 3sec.​

Answers

Answer:

240,000 J or 240 kJ

Explanation:

We can use the equation for kinetic energy:

KE = [tex]\frac{1}{2}mv^{2}[/tex]

where m = mass and v = velocity

Next, substitute the known values into the equation:

mass = 1200 kgvelocity = 60m in 3 seconds → 60/3 = 20 m/s

KE = 1/2 × 1200 × 20² = 240,000 J

Answer: 240,000 J or 240 kJ

Hope this helps!

. If you travel for a total of 60 minutes going 20 mph, what is your total distance?

Answers

Answer:

you will go 20 miles.

Explanation:

Greyhounds are among the fastest dogs on earth. On average, what is the fastest speed they can run?.

Answers

45 miles per hour is the answer.

In a bolt of lightning, 45, n, C,45nC flows to ground in 25, m, s,25ms. Work out the average number of charge carriers flowing past per second.

If 56, times, 10, to the power 16 ,56×10 16 electrons flow to the ground in 0, point, 035, mu, s,0.035μs, work out the average current.

How long does it take for a current of 6, point, 0, A,6.0A to deliver 1, point, 5, times, 10, to the power 17 ,1.5×10 17 [[Unsupported equation]]CuX
2+ ions in a solution? Assume these ions are the only charged particles moving.

Answers

(a) The average number of charge carriers flowing past per second is 1.8 x 10⁻⁶ A

(b) The average current delivered in the given time is 2.56 x 10⁶ A.

(c) The time taken to deliver the charge is 32,166.7 s.

Average number of charge flowing per second

The average number of charge flowing per second is calculated as follows;

I = Q/t

I = (45 x 10⁻⁹) / (25 x 10⁻³)

I = 1.8 x 10⁻⁶ A = 1.8μ A

Average current

The average current is number of charge flowing in a second.

I = Q/t

Charge of one electron = 1.6 x 10⁻¹⁹ C

Charge of 56 x 10¹⁶ electrons = 56 x 10¹⁶ x 1.6 x 10⁻¹⁹ C = 0.0896 C

I = (0.0896) / (0.035 x 10⁻⁶)

I = 2.56 x 10⁶ A

Time taken to deliver the charge

Total charge in 2+ ions = 2F

1 Faraday = 96,500 C

2F = 2 x 96,500 C = 193,000 C

At the given amount of current, the time taken to deliver the charge is calculated as follows;

Q = It

t = Q/I

t = (193,000 )/6

t = 32,166.7 s = 8.9 hours

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A convex, or converging, lens with a focal length of 34 cm is used to observe an image of an apple than is 80 cm away from the lens. At what distance from the lens does the image form and what type of image is it?.

Answers

The image distance is 59.2 cm and the image is real and small.

Image distance

The distance of the image formed by the convex or converging lens is determined by applying the following lens equation.

1/f = 1/u + 1/v

where;

f is the focal length = 34 cmu is the object distance = 80 cmv is the image distance = ?

1/v = 1/f - 1/u

1/v = 1/34 - 1/80

1/v = 0.0294 - 0.0125

1/v = 0.0169

v = 1/0.0169

v = 59.2 cm

Thus, the image distance is 59.2 cm and the image is real and small.

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What is the period of a water wave with a frequency of 0.5Hz

Answers

Answer:

a wave with a time period of 2 seconds has a frequency of 1 ÷ 2 = 0.5 Hz. A sound wave has a time period of 0.0001 seconds.


How long does it take an airplane, accelerating from rest at 5.00 m/s2, to travel 360 m?

Answers

ans: 12 seconds

-list out our knowns and unknowns:

Vi=0m/s
a=5.00m/s^2
d=360m
Vf=?
t=?

-first, let’s solve for Vf. We will avoid using a formula that contains t, as we do not know that value yet. Let’s use this one:

vf^2 = vi^2 + 2ad

-Plug in your values:

vf^2 = (0^2) + 2 (5.00) (360)

vf^2 = 3600

vf = 60m/s

-solve for t. choose a formula. Here’s a good one to use:

d= (vi+vf/2)t

-plug in your values:

360=(0+60/2)t
360=30t
360/30=t
t=12 seconds

an object of 98 N weight is dropped from 10 m height and it hit ground with a speed of 12 m/s find air friction

Answers

vf²=vi²+2ad

12²=0+2.a.10

a = 7.2 m/s²

W = m.g

m = W/g = 98/9.8 = 10 kg

∑F=m.a

W-fr=m.a

fr(air friction)=W - m.a

fr = 98 - 10 x 7.2

fr = 98 - 72

fr = 26 N

A boat is rocking back and forth in the middle of the ocean. It takes 3 seconds for a wave to pass by before the next wave appears. The speed of the wave is 5 m/s. What is the wavelength?

Answers

The wavelength of the water wave is 15 m.

What is wavelegth?

Wavelength is the distance of a complete cycle traveled by a wave.

To calculate the wavelength of the wave, we use the formula below.

Formula:

v = λ/T.................Equation 1

Where:

v = velocity of waveT = periodλ = wavelength.

make λ the subject of the equation

λ = vT............... Equation 2

From the question,

Given:

v = 5 m/st = 3 seconds

Substitute these values into equation 2

λ = 5(3)λ  = 15 m.

Hence, The wavelength of the water wave is 15 m.
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average speed?
It takes you 20 minutes to walk 1.5 miles to school. How far can you walk in one hour?

Answers

Answer:

4.5 miles

Explanation:

20 minutes x 3 is 1 hour

1.5 x 3 is 4.5

Answer:

4.5 Miles

Explanation:

20 x 3 = 60

60 min = 1 hour

1.5 x 3 = 4.5

What is the value for G

Answers

G is the customary prefix for Gibi, the binary multiple meaning 1024^3 = 1073741824

19 yds is the same as how many meters

Answers

19 yards is equivalent to 17.374 meters
19 yards is the same as 17.3736 meters

This question is about magnetisation. I will give brainliest!!

Answers

Answer:

By seeing by how far away can it attract a paperclip.

Explanation:

How does the dancing activity help you in improving fitness skills

Answers

Question:

•How does the dancing activity help you in improving fitness skills?

Answer:

•Health benefits of dancing

improved condition of your heart and lungs. increased muscular strength, endurance and motor fitness. increased aerobic fitness. improved muscle tone and strength.

Explanation:

#Let's Study

#I Hope It's Help

#Keep On Learning

#Carry On Learning

(d) A wire Y has the same cross-sectional area as wire X and is made of the same metal. Wire Y
is longer than wire X.
Wire X in the circuit is now replaced by wire Y. Assume that wire Y has the same temperature
as wire X.
State and explain whether the average drift speed of the free electrons in wire Y is greater
than, the same as, or less than that in wire X.
(3)
w]
X]
g
29°C

Answers

Answer:

If the potential difference between the ends of the wire are the same then wire Y will experience a smaller drift speed. This is necessary to explain the difference in resistivity.

A ball weighted 20 Newton's rolls 20 meters in a straight line on a level surface. What is its change in potential energy?

A. 0 J

B. 1 J

C. 40 J

D. 400 J

Answers

Change in potential energy=Workdone .

[tex]\\ \rm\Rrightarrow Work\:done=Force(Distance)[/tex]

[tex]\\ \rm\Rrightarrow Work\:done=20(20)=400J[/tex]

Option D

The change in the potential energy of the ball is equal to 0J. Therefore, option (A) is correct.

What is the work?

Work can be described as the energy used when a force is exerted to move an object through a specific displacement. The work done can be defined as it depends upon both the force on the object and the displacement by the object.

The displacement in a straight line in the direction of the applied force over a distance 'd'.

W= F × d

Where 'F' is the exerted force and 'd' is the displacement by the object.

The change in the potential energy or kinetic energy is equal to the work done.

The change in the potential energy  = mgh₂ - mgh₁

The ball roll over the surface, h₂ = h₁

Therefore, the change in the potential energy is equal to zero.

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The diagram shows a simple circuit system containing wires, a battery, a switch, and a light bulb. Alert your teacher if this image is missing. Select the energy forms that are being produced when the switch is ON. The diagram shows a simple circuit system containing wires, a battery, a switch, and a light bulb. Alert your teacher if this image is missing. Select the energy forms that are being produced when the switch is ON. potential and sound thermal and nuclear magnetic and chemical thermal and light

Answers

The sequence of energy conversions is; chemical energy ---> electrical energy ----> heat and light energy

What is energy transformation?

According to thee first law of  thermodynamics, energy can neither be created nor destroyed but can be converted from one form to another. This is also called the principle of conservation of energy.

When the switch is turned on, chemical energy of the battery is converted to electrical energy is produced which is then converted to heat and light energy in the light bulb.'

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Answer: Thermal and Light

Explanation: When the switch is ON, the light bulb turns on, creating light. After a minute, the bulb will start to warm up, and so will the battery.

how density of arock can be determined using normal laboratory apparatus

Answers

Answer:

Explanation: Take the apparatus fill it with water which is enough to sink the rock, next write down the reading of the apparatus with only the water. next drop the rock in the water and write down the reading with the water and the rock. next calculate change in volume ( here volume is the reading in the apparatus). next find the weight of the rock.

Then put the values into this equation

Density = mass/volume

if you took all the units in  SI units then the unit of density is Kg/m^3

The density of a rock can be determined using normal laboratory apparatus through a method known as the "Archimedes' principle" or the "water displacement method".

Materials needed: 1. Electronic balance or scale 2. Graduated cylinder or beaker 3. Water

1. Weigh the rock: Use an electronic balance or scale to measure the mass (weight) of the rock. Record this value in grams (g).

2. Find the rock's volume:

  a. Fill the graduated cylinder or beaker with a known amount of water.

  b. Note the initial water level reading in milliliters (ml).

  c. Carefully lower the rock into the water, making sure not to splash or spill any water.

  d. Measure the new water level in the graduated cylinder or beaker after the rock is submerged. Record the final water level reading in milliliters (ml).

  e. The volume of the rock can be calculated by subtracting the initial water level from the final water level. This difference represents the volume of the rock displaced by water.

3. Calculate the density:

  The density (ρ) of the rock can be determined using the formula:

  ρ = Mass of the rock (in grams) / Volume of the rock (in milliliters)

4. Report the result:

  The density of the rock is typically expressed in grams per cubic centimeter (g/cm³) or grams per milliliter (g/ml).

This method can provide a reasonably accurate determination of the rock's density. However, keep in mind that the density may vary slightly depending on the specific rock composition and porosity. For precise measurements or for rocks with complex structures, more sophisticated laboratory techniques may be employed.

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