A runner runs the 100 meter dash in 16.6 seconds. What is their average speed? (in meters per second) SOMEBODY PLEASE HELP ME!!!

Answers

Answer 1

Formula: s = d/t

s = speed

d = distance

t = time

We are given the distance and time, so we can use that to solve for the speed.

s = 100/16.6

s ≈ 6.02m/s

Best of Luck!


Related Questions

If some energy given to the system, then energy in the required form obtained is always....
1-less than the given energy
2-equal to the given energy
3-greater than the given energy
4-none of the above

Answers

The correct answer is less than the given energy.

Energy in the needed form is never more than the given energy when some energy is supplied to the system.

What is energy of a system?

Energy is a system's ability to modify the condition of other systems, such as altering their velocity or temperature. Any change in the natural world is the result of an energy exchange of some kind. Energy cannot be generated or destroyed; it is always transferred between systems.

Additionally, energy contributes to the entropy or unpredictability of a chemical system, which refers to the amount of substance or substances (such as a reaction mixture). Quanta are the "packets" of energy that exist. It is hence comparable to molecules.

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what is the value of pi(8.104)^2 written with correct significant numbers

Answers

Answer:206.3

Explanation:

In 2012, NASA sent the 900kg Curiosity robot to Mars to study the planet. a) Recall the relationship between the weight P and the mass m. Specify the units. b) What is the weight of Curiosty on Mars? c) Compare the weight of Curiosity on Earth and on Mars. Why is it more important on Earth

Answers

(a)The units for weight are typically expressed in Newtons (N), while mass is measured in kilograms (kg).

(b)The weight of Curiosity on Earth is approximately 8820 Newtons.

a) The relationship between weight (P) and mass (m) is given by the formula P = m * g, where g represents the acceleration due to gravity. The units for weight are typically expressed in Newtons (N), while mass is measured in kilograms (kg).

b) To calculate the weight of Curiosity on Mars, we need to determine the acceleration due to gravity on Mars. The acceleration due to gravity on Mars is approximately 3.71 m/s². Using the weight formula, we have P = m * g = 900 kg * 3.71 m/s² = 3339 N. Therefore, the weight of Curiosity on Mars is approximately 3339 Newtons.

c) The weight of Curiosity on Earth is significantly greater compared to its weight on Mars. On Earth, the acceleration due to gravity is approximately 9.8 m/s². Using the weight formula, we have P = m * g = 900 kg * 9.8 m/s² = 8820 N. Therefore, the weight of Curiosity on Earth is approximately 8820 Newtons.

The difference in weight between Earth and Mars is important because weight is directly related to the force of gravity. The greater weight on Earth indicates a stronger gravitational force, which affects the overall dynamics and requirements for missions like Curiosity.

It affects the launch and landing processes, the structural integrity of the spacecraft, the fuel and energy requirements, and the ability to conduct experiments and operate the robotic systems effectively. Understanding these differences is crucial for mission planning, spacecraft design, and mission success.

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What role does your chosen reaction play in your life? Combustion

Answers

Answer:

When fuels burn in combustion reactions, they release useful thermal energy (heat). Combustion reactions are used to heat our homes, power most cars, and to generate a lot of our electricity.

Energy production from the reaction is what drives life and human greed. We stay alive by eating carbon-rich compounds, which are then burned in a spectacularly controlled and efficient manner to provide us with energy. It is the all-important energy term in the combustion equation that has made life on Earth possible

A body with mass m slides down a frictionless ramp inclined at 600, with an initial speed v1 = 3 m/s,
starting at height h, and continues its motion upward on a 300 inclined ramp with a friction. Than this
body hits a spring which is fixed to a wall and compresses it 10 cm. The spring is initially at a distance R
on horizontal plane, and at height h. Find:
a) The speed v2 at the point 0, where the body starts to climb up to 300 inclined ramp, in terms of h.
b) The speed v3 where it hits the spring.
c) The spring constant k.
m=0.1 kg, µk=0.1, R=2.5 m., v1=3 m/s, Cos(600) = 0.5, Sin(600)=0.87, x=10 cm. and g= 10 m/s2 .

Answers

Going down the first ramp:

• net force parallel to the ramp:

F = W sin(60°) = m a

(W for weight)

• net force perpendicular to the ramp:

F = N + W cos(60°) = 0

(N for normal force)

The body has mass 0.1 kg, and with g = 10 m/s², its weight is W = 1 N. So in the first equation, we get

(1 N) sin(60°) = (0.1 kg) a₁   →   a₁ ≈ 8.7 m/s²

Let d₁ be the distance the body moves down the ramp, i.e. the distance along the ramp between the starting point and the point O. Then

sin(60°) = h / d₁   →   d₁ = 2h/√(3) ≈ 1.15h

Given an initial speed v₁ = 3 m/s, we find the speed v₂ at point O to be

v₂² - (3 m/s)² = 2 (8.7 m/s²) d

v₂ ≈ √(9 m²/s² + (17.4 m/s²) (1.15h))

v₂ ≈ √(9 m²/s² + (20 m/s²) h)

Going up the second ramp:

• net parallel force:

F = -Fr - W sin(30°) = m a

(Fr for friction)

• net perpendicular force:

F = N - W cos(30°) = 0

sin(30°) = cos(60°), and cos(30°) = sin(60°), so the second equation gives N = 0.87 N. Then with µ = 0.1, we have Fr = µ N = 0.087 N. The first equation then gives

-0.087 N - 0.5 N = (0.1 kg) a₂   →   a₂ ≈ -5.9 m/s²

We now have

tan(30°) = h/R   →   h = (2.5 m)/√3 ≈ 1.4 m

(which, by the way, tells us that v₂ ≈ 6.2 m/s)

Then the distance traveled up the ramp is

d₂ = √(h² + R ²) ≈ 2.9 m

Use this to solve for the speed at the top of the ramp:

v₃² - v₂² = 2 (-5.9 m/s²) d

v₃ = √((6.2 m/s)² - (11.8 m/s²) (2.9 m)) ≈ 2.0 m/s

At the top of the second ramp:

• net parallel force:

F = -Fsp - W sin(30°) = m a

(Fsp for spring)

• net perpendicular force:

F = N - W cos(30°) = 0

By Hooke's law, Fsp = kx, so in the first equation we get

-k (0.10 m) - (1 N) cos(60°) = (0.1 kg) (-5.9 m/s²)

→   k ≈ 0.87 N/m

A body with mass m slides down a frictionless ramp inclined at 600, with an initial speed v1 = 3 m/s,

50 POINTS!!! PLEASE!!!!!! Pls help me with this been stuck on it in like FOREVER!! PLSS.

50 POINTS!!! PLEASE!!!!!! Pls help me with this been stuck on it in like FOREVER!! PLSS.

Answers

Backward. The most force is the 428 g block.

Answer:

it will move in 356.5g in diagonal direction(resultant or between the both direction)

Explanation:

285+428/2=356.5g

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Parts of A Wave. Use the word bank below to identify the parts of a wave in this diagram. Type the word next to the letters below. Each correct answer is worth 1 pt. A. ________________________ B. ________________________ C. ________________________ D. ________________________ E. ________________________ 2. Relationship between wavelength and frequency A. Describe the relationship between wavelength and frequency when frequency is increased. (2pts) B. Describe the relationship between wavelength and frequency when frequency is decreased. (2pts) Hint: Connect 2 crests together to see wavelength on both waves.

Answers

Explanation:

A = Wavelength

The distance between two consecutive crest or trough is wavelength

B = Amplitude

The maximum distance covered by the particles of a wave

C = Rest postion/equilibrium

When there is no disturbance in the medium

D = Trough

It is the displacement in negative direction

E = Crest

It is the displacement in positive direction

(A) The relationship between the wavelength and frequency is given by :

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

There is an inverse relationship between wavelength and frequency.

(B) \(\lambda=\dfrac{v}{f}\)

When the frequency is decreased, the wavelength of a wave increases.

Parts of A Wave. Use the word bank below to identify the parts of a wave in this diagram. Type the word

Problem 4: For a conservative force,esvoedca2beee49af123450c68a7237065a45ad885a4229cb932c3697d0b27c6328eaeovse 0N86-C1-52-40-A837-22820 If you push a wooden crate across rough ground with a force F over a distance d, what is the potential energy stored in the system due to this force

Answers

Answer:

PE = Fd

Explanation:

Potential energy is the energy possessed by a body by virtue of its position. It is expressed mathematically as:

PE = mgd

m is the mass

g is the acceleration due to gravity

d is the distance

Since Force F is expressed as the product of mass and acceleration due to gravity then, F = mg

Substitute into the formula above:

Recall that: PE = mgd

Since F = mg

PE = Fd

Hence the required expression is PE = Fd

Which of the following does not affect gas pressure

Answers

Answer:

I NEED OPTIONS

Explanation:

7.0 mm diameter copper wire carries a current of 7.0 μA. What is the current density?

Answers

The current density of a 7.0 mm diameter copper wire that carries a current of 7.0 μA is 18.19 × 10⁻³ A/m².

The quantity of electric modern-day journeying in step with the unit move-phase region is known as current density and is expressed in amperes per rectangular meter. The more present-day a conductor, the higher could be the modern-day density. current density is the quantity of electrical modern flowing in step with the unit move-sectional region of a material.

subsequently, the SI unit of current density needs to be Ampere/meter2. Ohm's law relates the current flowing via a conductor to the voltage V and resistance R; this is, V = IR. An alternative assertion of Ohm's law is I = V/R.

current I = 0.7 μA

r = 3.5mm

J = I/A = I/πr³

J = 0.7 × 10⁻⁶ / 3.14 × (3.5 × 10⁻³)²

J = 18.19 × 10⁻³ A/m²

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How much momentum, in the x-direction, was transferred to the more massive cart, in kilogram meters per second

Answers

The momentum, in the x-direction, that was transferred to the more massive cart after the collision is 19.38 kgm/s.

Momentum transfered to the more massive cart

The momentum transfered to the more massive cart is determined by applying the principle of conservation of linear momentum as shown below;

m₁u₁ + m₂u₂ = m₁v₁ + m₂v₂

where;

m₁ is the mass of the smaller cartu₁ is the initial velocity of the samller cartm₂ is the mass of the bigger cart = 3m₁u₂ is the initial velocity of the bigger cartv₁ is the final velocity of the smaller cartv₂ is the final veocity of the bigger cart

⁻ΔP₁ = ΔP₂

ΔP₂ = m₂v₂ - m₂u₂

ΔP₂ = m₂(v₂ - u₂)

ΔP₂ = 3m₁(v₂ - u₂)

ΔP₂ = 3 x 3.8 x (1.7 - 0)

ΔP₂ = 19.38 kgm/s

Thus, the momentum, in the x-direction, that was transferred to the more massive cart after the collision is 19.38 kgm/s.

The complete question is beblow

A cart of mass 3.8 kg is traveling to the right (which we will take to be the positive x-direction for this problem) at a speed of 6.9 m/s. It collides with a stationary cart that is three times as massive. After the collision, the more massive cart is moving at a speed of 1.7 m/s, to the right.

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What has to happen to make new elements?

Answers

What has to happen is in order to creat new elements it’s usually done by smashing a beam of light atoms into a target of heavy atoms. Every now and then light and heavy atoms fuse together and form a new element
Beyond that, scientists must create new elements in accelerators, usually by smashing a beam of light atoms into a target of heavy atoms. Every so often, the nuclei of the light and heavy atoms collide and fuse, and a new element is born. Slamming neon (element 10) into uranium, for example, yields nobelium

By what percent is the torque of a motor decreased if its permanent magnets lose 6.5 % of their strength

Answers

6 is the answer I remember the answer from when I took this and it was easy

identify two factors that determine the amount of electricity that can be generated by an indi-vidual hydroelectric power plant. (2 points)

Answers

Two factors that determine the amount of electricity that can be generated by an individual hydroelectric power plants - It depends on the vertical distance through which the water falls and the flow rate, or amount of water that flows past a certain point per unit time, The greater the distance that the water falls, the more potential energy it had and the more electricity is generated the more kinetic energy it has and the more .

Impoundment, diversion, and pumped storage facilities are the three different types of hydroelectric facilities. Hydropower plants vary in their utilisation of dams. Despite the fact that not all dams were constructed for hydropower, they have been successful in supplying vast amounts of renewable energy to the grid. As of 2020, fewer than 2,300 of the more than 90,000 dams in the United States were producing electricity. The other dams are utilised for water supply, irrigation, flood control, stock/farm ponds, and recreation. Hydropower facilities come in a variety of sizes, from modest initiatives providing electricity for a single house or community to massive undertakings. 

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A toy plane weighing 1.5 kg is flying in the air at 8 m/s. The player
turns down its speed to 6m/s. What is the work done on it?

Answers

Use the work-energy theorem. The total work done on the plane is equal to the change in its kinetic energy:

W = ∆K

W =  1/2 (1.5 kg) (6 m/s)² - 1/2 (1.6 kg) (8 m/s)²

W = -21 J

(Note that the work must be negative since the "braking" force opposes the direction in which the plane is moving.)

a stone is dropped from the upper observation deck of a tower, 450 m above the ground. How long does it take for the stone to reach the ground

Answers

Answer:

9.49 s

Explanation:

Applying,

s = ut+gt²/2................ Equation 1

Where s = heigth of the deck, u = initial velocity, t = time, g = acceleration due to gravity.

From the question,

Given: s = 450 m, u = 0 m/s( dropped from height)

Constant: g = 10 m/s²

Substitute these values into equation 1

450 = (0×t)+10t²/2

450 = t²

5t² = 450

t² = 90

t = √90

t = 9.49 s

A 300-Watt electric wheelchair has a mass of 50 kg and carries its 50 kg occupant at a constant velocity up a long ramp. About how much time does it take the wheelchair to reach the top of 10 meters high ramp?

Answers

The time taken for the wheelchair to reach the top of the ramp will be 32.7 seconds.

What is Power?

Power is the time rate at which work is accomplished.

Energy divided by time is a rate of work because, the energy is a change in energy and a change in energy equals to workdone.

Power = Workdone/Time taken

P = (mgh)/t

Where;

Power = 300watts

m = 50kg + 50kg

m = 100kg

g = 9.8m/s2

h = 10 meters

300 = (100 x 9.8 x 10) / t

t = 9800/300

t = 32.7seconds

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why does sound travel faster in metal than in air

Answers

Sound travel faster in metal than air becoz molecules of metal i.e solid are closely packed and it will take less time for sound waves to travel from one molecule to another whereas in air i.e in gas,molecules are far apart so it will take more time for sound waves to travel.In case of vacuum there are no molecules at all so sound is not there.that is why in space we cannot hear anything.

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What do you buy from the power company?
only energy*
electrons and energy
only electrons

Answers

Answer:

From the power source we have to buy only energy.

Explanation:

Energy is released when an electron loses potential energy as a result of the transfer from higher state to lower state.

Electricity is the movement of electrons between atoms and it doesn't means we can isolate the electrons from the atom and sell it. It remains the part of atom and hence only energy can be purchase form the power company.

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List the two factors that create orbital motion and describe how each factor affects the motion.​

Answers

Answer:

The forward motion of a body in space, such as a planet or moon, and the pull of gravity on it from another body in space.

Explanation:

Earth and many other bodies—including asteroids, comets, and the other planets—move around the sun in curved paths called orbits. Generally, the orbits are elliptical, or oval, in shape. Because of the sun’s relatively strong gravity, Earth and the other bodies constantly fall toward the sun, but they stay far enough away from the sun because of their forward velocity to fall around the sun instead of into it. As a result, they keep orbiting the sun and never crash to its surface. The motion of Earth and the other bodies around the sun is called orbital motion. Orbital motion occurs whenever an object is moving forward and at the same time is pulled by gravity toward another object.

Most people can throw a baseball farther than a bowling ball, and most people would find it less painful to catch a flying baseball than a bowling ball flying at the same speed as the baseball. Explain these two situations in terms of
Newton’s First Law of Motion
Newton’s Second Law of Motion

Answers

Based on Newton's first  and second law of motion most people would find it less painful to catch a flying baseball than a bowling ball flying at the same speed as the baseball because the mass of the baseball is smaller and will require smaller force to be stopped.

What is Newton's first law of motion?

Newton's first law of motion first law of motion states that a body at rest or uniform motion in a straight line will continue in that path unless acted upon by an external force.

Newton's first law of motion is also called law of inertia because it depends on mass of the object.

An object with a greater mass will require greater force to be stopped or get moving.

Based on Newton's first law of motion most people would find it less painful to catch a flying baseball than a bowling ball flying at the same speed as the baseball because the mass of the baseball is smaller and will require smaller force to be stopped.

Also according to Newton's second law of motion, the force applied to an object is proportional to the product of mass and acceleration of the object. Thus, a baseball with smaller mass will require smaller force to be stopped.

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Find the Product or expression of: (4x-2)2​

Answers

Answer:

8x-4

Explanation:

Distributive property:

A(B+C)=AB+AC

(4x-2)2

Switch sides.

→ 2(4x-2)

Multiply.

⇒ 2*4x=8x

⇒ 2*2=4

Rewrite the problem down.

⇒ = 8x-4

\(\Longrightarrow: \boxed{\sf{8x-4}}\)

Hence, the final answer is 8x-4.

I hope this helps you! Let me know if my answer is wrong or not.

Answer: 8x - 4

Explanation:

(4x -2)*2

apply distributive property

2* 4x - 2 * 2

Multiply the monomials = 8x

2*4x - 2*= 8x-2*2

calculate =

8x-4

Answer: 8x - 4

What does a negative acceleration indicate
A. Staying Constant speed
B. Moving backward
C. Speeding up
D. Moving forward

Answers

Answer:

moving backwards

Explanation:

is the correct answer

A negative acceleration basically indicates moving backward. The correct option is B.

A negative acceleration, as in option B, denotes motion in the reverse direction. It indicates that an object is either slowing down while travelling forward or speeding up while moving backwards.

This is separate from either forward acceleration (option C) or constant speed (option A). In physics and motion analysis, negative acceleration is frequently linked to the ideas of slowing down or changing direction.

Thus, the correct option is B.

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A 0.842g sample of Hydrogen 3 decays until 0.0526g remains. How many half lives have occurred?

Answers

A 0.842g sample of Hydrogen-3 decays to 0.0526g. Approximately 4.206 half-lives have occurred.

To determine the number of half-lives that have occurred, we can use the decay equation and the concept of exponential decay. The decay equation for radioactive decay is given by:

N(t) = N₀ * (1/2)^(t/T),\((1/2)^(^t^/^T^),\)

where N(t) is the remaining amount of the substance at time t, N₀ is the initial amount, t is the time elapsed, and T is the half-life of the substance.

In this case, we have an initial mass of 0.842g (N₀) and a remaining mass of 0.0526g (N(t)). We can set up the equation as follows:

0.0526g = 0.842g \(* (1/2)^(^t^/^1^2^.^3^2)\),

where t represents the number of half-lives that have occurred.

To solve for t, we can take the logarithm of both sides of the equation:

log(0.0526g/0.842g) = log\([(1/2)^(^t^/^1^2^.^3^2^)\)].

Using the logarithmic property log(\(a^b\)) = b*log(a), we can rewrite the equation as:

log(0.0526g/0.842g) = (t/12.32) * log(1/2).

Simplifying further:

log(0.0526g/0.842g) = (t/12.32) * (-log2),

where log2 is the logarithm base 2.

Now, we can solve for t:

t = (12.32 * log(0.0526g/0.842g)) / (-log2).

Using the given values and performing the calculation, we find:

t ≈ 4.206.

Therefore, approximately 4.206 half-lives have occurred.

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The helium-filled balloons below are carrying negative electric charges, as shown. Attach two of the balloons to the hooks below to show what would happen if a red balloon and a blue balloon were brought near each other. Plzz help

Answers

Answer:

these are in the hooks the balloons repel each other if the hooks are isolated.

Explanation:

In electrostatics, charges of the same sign repel and of a different sign attract each other.

With this explanation we analyze the situation presented, they indicate that the balloons have a negative taste, so when these are in the hooks the balloons repel each other if the hooks are isolated.

If the hooks are connected to Earth, the poop of the balloons is neutralized, so there is neither attraction nor repulsion.

Answer:

Here you go : )

Explanation:

The helium-filled balloons below are carrying negative electric charges, as shown. Attach two of the

 A penny is dropped off of the top of the Statue of Liberty, which is 93 meters tall. How long will it take for the penny to hit the ground?

Answers

Answer:

About 4.4 seconds

Explanation:

\(h=1/2(gt^{2} )\)

\(t^{2} =\frac{2h}{g}\)

\(t=\sqrt{\frac{2h}{g} }\)

\(t=\sqrt{\frac{2(93)}{9.8} } =\sqrt{18.98} =4.36\)

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A slingshot fires a pebble from the top of a building at a speed of 13.0 m/s. The building is 22.0 m tall. Ignoring air resistance, find the speed with which the pebble strikes the ground when the pebble is fired (a) horizontally, (b) vertically straight up, and (c) vertically straight down.

Answers

For an object in free fall, the final velocity (Vf) can be calculated using the equation:
Vf = sqrt(Vi^2 + 2g*d), where
Vi = initial velocity (13 m/s)
g = acceleration due to gravity (9.8 m/s^2)
d = change in vertical position (22 m)

(a) Horizontally: The pebble does not fall, so its velocity does not change, thus Vf = 13 m/s.

(b) Vertically straight up: The change in vertical position (d) is positive, so the final velocity will be less than the initial velocity.
Vf = sqrt(13^2 + 2 * 9.8 * 22) = sqrt(13^2 + 437.6) = sqrt(437.6 + 169) = sqrt(606.6) = 24.7 m/s

(c) Vertically straight down: The change in vertical position (d) is negative, so the final velocity will be greater than the initial velocity.
Vf = sqrt(13^2 - 2 * 9.8 * 22) = sqrt(13^2 - 437.6) = sqrt(169 - 437.6) = sqrt(-268.6) = not defined (velocity is imaginary)

I did not have paper so I may have got a couple things wrong .

explaining how your energy system works. Make sure to explain how your system captures energy from rescue workers’ bodies to power equipment during rescue missions. Try to use the words in the Word Bank above.

Answers

Answer:

The rescue workers can get energy to the batteries in their equipment during rescue missions by using a generator to convert the kinetic energy to potential energy. Potential energy is then stored in the battery.

Explanation:

What will be the linear expansion of a piece of wrought iron 8 feet long if it’s temp is raised 70 degrees F?

Answers

The linear expansion of the wrought iron is 0.0038 feet.

What is the linear expansion of the wrought iron?

The linear expansion of the wrought iron is the increase in length of the wrought iron due to change or increase in temperature.

Mathematically, the formula for the linear expansion of metals is given as;

ΔL = αLΔθ

where;

ΔL is the linear expansion of the metalα is the coefficient of thermal expansion of the metalL is the original length of the metalΔθ is the change in temperature of the metal

The coefficient of thermal expansion of wrought iron = 0.0000067 / ⁰F

The linear expansion of the wrought iron is calculated as follows;

ΔL = αLΔθ

ΔL = ( 0.0000067/ ⁰F   x   8 ft    x   70 ⁰F )

ΔL = 0.0038 ft

Thus, the linear expansion of the wrought iron is a function of the increase in temperature of the iron and the original length of the iron.

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Calculate the amount of air in a room 6m long, 5m wide and 3mm high.​

Answers

Answer:

0.09kg of air

Explanation:

The dimensions of the room are given

change the height to meters by dividing it by thousand.

For the volume multiplying the length,width and height (all should be in the same unit most suitable being meters).

Volume refers to the amount of space inside a box or a object.

The amount of air is equal to the volume.

Answer:

90 m^3

Explanation:

Volume of the room:

    6 m * 5 m * 3 m         =  90 m^3   <=====( I changed 3mm to 3 m)

if  3mm is not a typo mistake

 volume becomes     ( 3 mm = .003 m)

      6 m * 5 m * .003 m   = .09 m^3   ( though unlikely )

Other Questions
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