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  1. Spherical mirrors may be concave (converging) or convex (diverging). The focal length of a spherical mirror is one-half of its radius of curvature: \(f = \frac{R}{2}\). The mirror equation and ray …

  2. www.omnicalculator.com › physics › mirror-equationMirror Equation Calculator

    The concave mirror equation calculator displays the image distance v v v, the radius of curvature r r r, areal magnification m a r e a l m_\mathrm{areal} m areal , and linear magnification m l i n e a r m_\mathrm{linear} m linear .

  3. Spherical Mirror Equation. As in the case of lenses, the cartesian sign convention is used here, and that is the origin of the negative sign above. The radius r for a concave mirror is a negative quantity (going left from the surface), and this gives a positive focal length, implying convergence.

  4. Ray diagrams can be used to determine the image location, size, orientation and type of image formed of objects when placed at a given location in front of a concave mirror. The use of these diagrams was demonstrated earlier in Lesson 3.

  5. 16 wrz 2022 · The mirror equation calculator is a tool designed to help you with the problem of determining focal length or object and image distances for various mirrors. We included three types of mirror formulae: Concave mirror equation; Convex mirror equation; Plane mirror equation

  6. phys.libretexts.org › Courses › University_of_California_Davis10.3: Mirrors - Physics LibreTexts

    26 sty 2023 · The convex mirror also has a radius of curvature, \(R\), defined as the distance from the mirror to the center of the partial spherical shell. Except, in this case it is on the opposite side of the mirror due to its shape.

  7. 11 sty 2021 · A concave mirror has a radius of curvature of 20.0 cm. Locate the image for an object distance of 40.0 cm. Indicate whether the image is real or virtual, enlarged or diminished, and upright or inverted. A dentist uses a concave mirror to examine a tooth that is 1.00 cm in front of the mirror.

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