A 2 liter bottle of soda has how many milliliter in it?

Answers

Answer 1
Answer:

Answer:

As we know 1 liter=1000ml

  • 2liters=2×1000ml
  • 2000ml

2 liter bottle of soda has 2000 milliliter in it.

hope it helps.

stay safe healthy and happy..


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What makes us human?

Calculate the net work done to accelerate a 1500 kg car from 10m/s to 20m\s

Answers


There are two ways to do this one.
In due consideration of 5 points, I have decided
to do it the easy way.

Kinetic energy = (1/2) (mass) (speed²)

The car's KE at the slower speed = (1/2 mass) x (10²)

                                                     =     75,000 joules .

The car's KE at the faster speed =  (1/2 mass) x (20²)

                                                     =    300,000 joules .

The difference in kinetic energy between
the slower and faster speeds =

                                       (300,000  -  75,000) = 225,000 joules.

THAT's the work that had to be done in order to accelerate
the car to double the original speed.

Which of the following statements describes an anticyclone?a. It is an area of low pressure.
b. It is an area of high pressure.
c. It has air masses that meet and rise.
d. It moves in the direction of the Earth’s rotation.

Answers

b. 
srry for short answer :)

Answer:

b is the appropriate answer

Explanation:

You are sitting in a chair on an elavator. The elavator accelerates downward, you and the chair land on the cround with the chair landing first and then you on the chair.Explain the Net Forces at 3 points for each object

The points are: Before the Elevator Accelerates Downward, In Freefall, At Impact

Analyze whether the Normal Force would need to increase, and where the direction of the net force is for each object.

Answers

Answer:

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Explanation:

cdfrgresgtrshtrwhtrwhtwjhdgngdabfeahydrtgnb

A graph depicts force versus position. What represents the work done by the force over the given displacement?A. The work done is equal to the product of the maximum force times the maximum position.
B. The work done is equal to the area under the curve.
C. Work cannot be determined from this type of graph.
D. The work done is equal to length of the curve.
E. The work done is equal to the slope of the curve.

Answers

Work = (force) x (distance)

With a force/distance graph, the work is the area under the graph.

If the graph is curved, broken, or some other screwy shape that makes it difficult to
get the area in any simple way, then work is the integral of the function represented
by the graph.

Final answer:

The work done by a force over a given displacement, as represented in a force versus position graph, is equal to the area under the curve.

Explanation:

In a force versus position graph, the work done by the force over the given displacement is represented by the area under the curve. The work done is the integral of the force with respect to displacement which, in a graphical representation, translates to the area under the curve of the force versus position graph. For example, if the force is constant, the graph will be a rectangle, and the work done will be the product of force (height of the rectangle) and displacement (width of the rectangle). If the force is variable, the area under the curve might need to be calculated by dividing it into small sections and summing up their areas.

Learn more about Work and Energy here:

brainly.com/question/16987255

#SPJ12

Which particle is not part of an atom?a. proton
b. electron
c. neutron
d. magnetic domain

Answers

Answer:

Option D is the correct answer.

Explanation:

An atom consists of nucleus and electrons revolving around it.

Nucleus is filled with proton and neutron.

So atom consists of electron, proton and neutron.

Magnetic domain is not present in an atom.

Option A,Option B and Option C are present in an atom.

Option D is not present in an atom.

So Option D is the correct answer.

the particle that is not a part of the atom is the magnetic domain

L 10. A car with a mass of 2,000 kilograms is moving around a circular curve at a uniform velocity of 25 meters per second. The curve has a radius of 80 meters. What is the centripetal force on the car?

Answers

Centripetal Force, F = mv²/r

Where m = mass in kg, v = velocity in m/s and r = radius of curvature in m.

Centripetal Force, F = 2000 * 25² / 80.    Use your calculator.

                           F = 15 625 N.