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Answer:
ғʀᴏᴍ ᴛʜᴇ ғɪɢᴜʀᴇ ɢɪᴠᴇɴ ᴀʙᴏᴠᴇ, ɪᴛ ɪs ᴏʙᴠɪᴏᴜs ᴛʜᴀᴛ ᴛʜᴇ ᴏʙᴊᴇᴄᴛ ᴀʙ ɪs ᴘʟᴀᴄᴇᴅ ᴀᴛ ᴀ ᴅɪsᴛᴀɴᴄᴇ ᴏғ ᴜ ғʀᴏᴍ ᴘ ᴡʜɪᴄʜ ɪs ᴛʜᴇ ᴘᴏʟᴇ ᴏғ ᴛʜᴇ ᴍɪʀʀᴏʀ. ғʀᴏᴍ ᴛʜᴇ ᴅɪᴀɢʀᴀᴍ ᴡᴇ ᴄᴀɴ ᴀʟsᴏ sᴀʏ ᴛʜᴀᴛ ᴛʜᴇ ɪᴍᴀɢᴇ ᴀʙ ɪs ғᴏʀᴍᴇᴅ ᴀᴛ ᴠ ғʀᴏᴍ ᴛʜᴇ ᴍɪʀʀᴏʀ. ᴛʜɪs ᴡᴀs ᴛʜᴇ ᴅᴇʀɪᴠᴀᴛɪᴏɴ ᴏғ ᴍɪʀʀᴏʀ ғᴏʀᴍᴜʟᴀ
Answer:
The derivation of the mirror formula is one of the most common questions asked in various board examinations as well as competitive examinations. A mirror formula can be defined as the formula which gives the relationship between the distance of object ‘u’, the distance of image ‘v’, and the focal length of the mirror ‘f’. The mirror formula is applicable for both, plane mirrors and spherical mirrors (convex and concave mirrors). The mirror formula derivation is provided here so that students can understand the concept of the topic in a better way. The mirror formula is written as:
Derivation Of Mirror Formula
Explanation: