because of the lens, that gives us vision to see.
To see an upright image of yourself in a concave mirror you must be closer than the principal focus. Hope this helps.
When you stand in front of a concave mirror, you will see an upright magnified virtual image of yourself. The image appears behind the mirror, and its size and position will vary based on your distance from the mirror and its curvature.
You see objects because they reflect light rays. As light travels to your eyes, the lens focuses the image of the object on the retina. The image of the object in the retina is inverted. As the image is formed, the optic nerves send the message to the brain. It is the brain that interprets and corrects the inverted image into an upright position. - Science Links by Sugpatan, Parde and Apolinario
because of the lens, that gives us vision to see.
the image formed by convex lens are real but the images formed by concave lens are virtual concave mirror are commonly used in to torches search light and vehicles headlights to get powerful parallel beam of light they are often used as a wing a to see a larger image of the face the dentist use a concave mirrors to see larger image of that is open send large can give are used to concentrate sunlight to produce heat in solar furnace
A convex mirror will produce an upright, virtual, and diminished image of objects placed in front of it. The image will appear smaller than the actual object, making it useful for security purposes and in vehicles to provide a wider field of view.
Because the brain knows to make them the other way up, and it uses perspective to get it the right (ish) size.
When you look at yourself in a plane mirror, you see a laterally inverted image of yourself. This means that left and right are switched in the image you see in the mirror, but up and down remain the same.
Eyes see objects by capturing light that reflects off the objects and entering through the cornea and lens to form an image on the retina. The retina then converts the light into neural signals that are sent to the brain for processing and interpretation as an image.
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An upright, virtual image of yourself the same size as you.
When you look through a concave lens, objects may appear smaller and closer than they actually are. This type of lens causes light rays to diverge, resulting in a virtual image that is upright and reduced in size. However, the image may appear blurry due to the spread of light rays.