39. ** A coin is placed at the bottom of an 80.0 cm deep aquarium filled with water. You are looking at the coin from above the aquarium. How deep will the coin appear to you? Explain using ray diagrams and the necessary calculations.
Ray Optics
Optics is the study of light in the field of physics. It refers to the study and properties of light. Optical phenomena can be classified into three categories: ray optics, wave optics, and quantum optics. Geometrical optics, also known as ray optics, is an optics model that explains light propagation using rays. In an optical device, a ray is a direction along which light energy is transmitted from one point to another. Geometric optics assumes that waves (rays) move in straight lines before they reach a surface. When a ray collides with a surface, it can bounce back (reflect) or bend (refract), but it continues in a straight line. The laws of reflection and refraction are the fundamental laws of geometrical optics. Light is an electromagnetic wave with a wavelength that falls within the visible spectrum.
Converging Lens
Converging lens, also known as a convex lens, is thinner at the upper and lower edges and thicker at the center. The edges are curved outwards. This lens can converge a beam of parallel rays of light that is coming from outside and focus it on a point on the other side of the lens.
Plano-Convex Lens
To understand the topic well we will first break down the name of the topic, ‘Plano Convex lens’ into three separate words and look at them individually.
Lateral Magnification
In very simple terms, the same object can be viewed in enlarged versions of itself, which we call magnification. To rephrase, magnification is the ability to enlarge the image of an object without physically altering its dimensions and structure. This process is mainly done to get an even more detailed view of the object by scaling up the image. A lot of daily life examples for this can be the use of magnifying glasses, projectors, and microscopes in laboratories. This plays a vital role in the fields of research and development and to some extent even our daily lives; our daily activity of magnifying images and texts on our mobile screen for a better look is nothing other than magnification.
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how large will her image be in the mirror? What are
the properties of the image?
Fi
Section 28-4 Refraction of Light
36. * A laser beam is shone on a horizontal slab of 3.0 cm
thick glass (n
how much will the light ray be shifted from along the
glass slab upon exiting it? (In other words, what is the
distance between the point where the laser beam leaves
the glass slab and where it would have left it if the slab
had had an index of refraction of n =
1.5) at a 30.° angle from the normal. By
1?)
37. * An underwater flashlight is pointed upward at the
bottom of a 2.00 m deep pool filled with fresh water.
Estimate the area of the light spot at the surface of the
pool. List any assumptions you make for your estimate.
38. * (a) Find the index of refraction of a substance in
which light travels 0.620 m in 3.00 ns.
How far does light travel in air in 3.00 ns?
(b)
(c) How long does it take light to travel 1.00 m in oil?
39. ** A coin is placed at the bottom of an 80.0 cm deep
aquarium filled with water. You are looking at the coin
from above the aquarium. How deep will the coin appear
to you? Explain using ray diagrams and the necessary
calculations.
40. * While scuba diving, you look up and notice a beau-
tiful sunset. To you, the Sun appears to be 50.° above the
horizon, yet it was a sunset. What is the actual angle of
islo
the Sun above the horizon? Explain.
1022
SECTION 4 ELECTRICITY, MAGNETISM, AND OPTICS
ELECTRICITY,
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