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An upright, inverted image of the letter R. Much like this - я

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13y ago

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What is 6 letter word and r is the 3d letter and 2 as the 5th letter that is round that can be seen in the bathroom?

If I understand your question correctly: mirror


What is a six letter word that has three R's?

MIRROR is a six letter word with three r's in it


Does a plane mirror follow the mirror formula?

mirror formula = 1/v = 2/r = 1/v + 1/u this formula holds good for every type of mirror.


What word has 6 letters and half of them are R's?

mirror


Why can't you see your image in a plain glass sheet?

as such u r eye can see only a reflected image when there is no cover at the back side of the mirror(plane mirror). the light or the image will pass through it and doesnot reflect . hence u cant see the picture. thank u for u r wonderful question


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Rear window defogger, rearview mirror, reading lights, radiator and rotor are auto parts.


What word has the most R's in it and what word has the most percentage of R's?

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Which of these letters is not like the others H R V M W T O I Hint it has to do with the shape?

The letter 'R'. All the others have a mirror image (left to right) which looks the same.


What can be seen in the middle of March and April that cannot be seen at the beginning or end of either month?

The letter "r" can be seen in the middle of both March and April but not at the beginning or end of either month.


A circular frame that is 3 inches wide surrounds the mirror what is the combined area in square inches of the mirror and frame?

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How would you find the focal point of a convex mirror?

To find the focal point of a convex mirror, you can use the formula: f = R/2, where R is the radius of curvature of the mirror. The focal point of a convex mirror is located behind the mirror, at a distance equal to half the radius of curvature.


The relation between focal length and radius of curvature of spherical mirror is?

The relation between focal length (f), radius of curvature (R), and the focal point of a spherical mirror can be described by the mirror equation: 1/f = 1/R + 1/R'. The focal length is half the radius of curvature, so f = R/2.