An object is placed at an object distance equal to the magnitude of the focal length of a diverging lens. Which of the following is NOT true? Consider the magnitudes only. O The image magnification is 1. O The image height is half the object height. O The image distance is half the object distance. O The image distance is half the focal length.
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A: solution is given by
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A: Given: The lens of the concave is 30 cm. The distance of the virtual image is 10 cm.
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A: Given:Object distance p=+17 cm (positive for a convex mirror)Distance between the focal point and…
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A: fig.a CONVEX LENS fig.b CONCAVE LENS
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A: Given: The radius R1 is 10 cm. The radius R2 is 15 cm. The refractive index is 1.50.
Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: Since you have posted a question with multiple sub-parts, we will solve first three sub-partsfor…
Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
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Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: Step 1: Given that The mirror is convex mirror As we know that in convex mirror the sign of focal…
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Q: A 2.0 cm tall object is 30 cm to the left of a lens with a focal length of 10 cm. A second lens…
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Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: Object distance (p) = +17 cm focal length (f) = +12 cm
Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: “Since you have posted a question with multiple sub-parts, we will solve the first three sub-parts…
Q: Part Q A convex spherical mirror has radius of curvature -37.0 cm. Find the image distance if the…
A: Given: Radius of curvature=-37cm Object distance =-12cm To find: Image distance and lateral…
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Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: Given object distance u = + 22 cm focal length f = 11 cm
Q: Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation…
A: Given Object distance Ps = + 15 cm Focal length f = 26 cm
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- An object of height 5.50 cm is placed 33.0 cm to the left of a converging lens with a focal length of 10.5 cm. Determine the image location in cm, the magnification, and the image height in cm. HINT (a) the image location in cm cm (b) the magnification (c) the image height in cm cm (d) Is the image real or virtual? O real virtual (e) Is the image upright or inverted? O upright O invertedSpherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is ps = +23 cm, the type of mirror is concave, and then the distance between the focal point and the mirror is 14 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side. (a) Number Units cm -23 (b) Number UnitšT cm 37.1 (c) Number T2.85 UnitšT This answer has no units v (d) real (e) inverted (f) sameSpherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is ps = +15 cm, the type of mirror is convex, and then the distance between the focal point and the mirror is 30 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side. (a) Number (b) Number Units Units (c) Number Units (d) (e) (f) >
- For spherical mirrors, Object O stands on the central axis. In following situations as listed in the table including the object distance p in cm, the type of mirror, and the focal length fin cm (absolute value). Determine (including signs) the radius of curvature r, the image distance i, magnification m, whether the image is real (R) or virtual (V), inverted (1) or non-inverted (NI), and on the same side (S) or opposite side (O). р Mirror, f r m R/V I/NI Side (S/O) 3 Concave, 6 10 Concave, 30 6 Convex, 12 30 Concave, 15 20 Convex, 30 12 Convex, 8Chapter 34, Problem 011 Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is ps = +12 cm, the type of mirror is convex, and then the distance between the focal point and the mirror is 15 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side. (a) Number Units (b) Number Units (c) Number Units (p) (e) (f)For safety reasons, you install a rear-window lens with a -0.299 m focal length in your van. Before putting the van in reverse, you look through the lens and see the image of a person who appears to be 0.339 m tall and 0.243 m behind the van. Determine the following. (a) actual distance of the person behind the van m (b) height of the person
- Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is ps = +21 centimeters, the type of mirror is convex, and then the distance between the focal point and the mirror is 14 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side.Homework 12 Problem 10: Two lenses are mounted d = 27 cm apart on an optical bench. The focal length of the first lens is f1 = 5.1 cm and that of the second lens is f2 = 4.4 cm. An object of height ho = 3.5 cm is placed at a distance of do = 21 cm in front of the first lens. Part (a) Ignoring the second lens for now, at what distance, in centimeters, behind the first lens is the object’s image formed by that lens? di = ______ Part (b) Calculate the magnification of that image, including its sign. m = ______ Part (c) Now consider the two-lens system and the final image it forms, i.e., the image created by the second lens. What is the distance, in centimeters, between the object and its final image? D = ______Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is p; = +20 cm, the type of mirror is convex, and then the distance between the focal point and the mirror is 34 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side. (a) Number Units (b) Number i Units (c) Number Units (d) (e) (f) > >