Answer:
It would have an acceleration of
Explanation:
Let's start defining the newton unit (Newton : N)
The N definition is
Where Kg is kilogram and is an acceleration unit.
We can think the definition of newton as :
Given an object with a mass of 1 Kg subjected to a force of 1 N the acceleration that it experiments is
As a result, the standard kilogram bar kept in Paris will experiment an acceleration of If we subject it to a net force of 1 N.
B. the chromosphere.
C. sunspots.
D. solar wind.
C is the right answer
THE MAGNIFICATION FROM THE GEMSTONE WILL HAVE 3.4 MAGNIFICATION. THE IMAGE WILL BE PRODUCE UPRIGHT.
Explanation:
WE WILL USE FORMULA ,
=
where q = -30.0 cm
f = 12.5 cm
so, )⁻¹
)⁻¹
= 8.82353 cm
m=
=
m= 3.4
so the magnification will be 3.4 which is upright image as magnification is positive.
As a person looks at gem stone using converging lens with focal length of 12.5 cm and virtual image 30 cm from lens the magnification for such will be 3.4 .And the image will be upright.
For the case of a gem being observed through a converging lens, creating a virtual image located from the lens, the magnification would be greater than 1 and positive, suggesting an upright and magnified image.
In the given scenario, the gem stone is being observed through a converging lens with a focal length of 12.5 cm, and a virtual image is forming 30.0 cm from the lens. To find the magnification, which is a measure of how much larger or smaller the image is relative to the object, we use the formula for magnification in lens theory: Magnification (m) = - Image Distance (di) / Object Distance (do). Since we're dealing with a virtual image, the image distance is a negative value (-30.0 cm).
However, we are not given the object distance (do). In the context of magnifiers and conjugate rays, and taking into account that our image is virtual, we can assume that the value of the object distance (do) is less than the value of the focal length (12.5 cm) for this so-called 'Case 2' image. Therefore, we can say that the magnification (m) is greater than 1 and positive, which indicates that the image of the gem stone is upright and magnified (larger than the object).
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The particles are not compressible.
The particles are charged.
The particles vibrate.
Answer:
The particles have very high speeds.
Explanation:
the force between gas molecules is very weak so the molecules are very least bounded to each other.
Due to very less or weak interaction between the molecules the gas molecules can travel easily in the space.
Since the speed of gas molecules are random and the direction of motion is not influenced by the force between the molecules so here the gas can be compressed easily.
Due to this high speed of gas molecules they do not have a finite shape and it will obtain the shape of the container in which it is stored
So correct answer will be
The particles have very high speeds.
b. the hot and fiery end to the universe
c. the unavailability of energy to do work
d. a theoretical violation of the second law of thermodynamics