Physics, asked by gkindhu1984, 10 months ago

suppose we wish to obtain the real image of a distance tree explain 2possible ways in which we can do it​

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Answered by itzJitesh
0

Answer:

A real image can be viewed when a screen is placed in the plane of convergence; Or alternatively, one may also view the real image directly (see the picture below with caption "An inverted real image of distant house..."). When viewed directly, the real image looks like a "phantom object" that's closer to the viewer than the lens itself, which can be verified if the viewer uses the method of parallax.

Producing a real image. Each region of the detector or retina indicates the light produced by a corresponding region of the object.

In optics, an image is defined as the collection of focus points of light rays coming from an object. A real image is the collection of focus points actually made by converging rays, while a virtual image is the collection of focus points made by extensions of diverging rays. In other words, a real image is an image which is located in the plane of convergence for the light rays that originate from a given object. Examples of real images include an image on a cinema screen (the source being the projector, and the screen plays as a diffusely reflecting surface so the image formed on the screen plays as an object to be imaged by human eyes), the image produced on a detector in the rear of a camera, and the image produced on an eyeball retina (the camera and eye focus light through an internal convex lens). In ray diagrams (such as the images on the right), real rays of light are always represented by full, solid lines; perceived or extrapolated rays of light are represented by dashed lines. A real image occurs where rays converge, whereas a virtual image occurs where rays only appear to diverge.

Real images can be produced by concave mirrors and converging lenses, only if the object is placed further away from the mirror/lens than the focal point, and this real image is inverted. As the object approaches the focal point the image approaches infinity, and when the object passes the focal point the image becomes virtual and is not inverted (upright image). The distance is not the same as from the object to the lenses.

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