A nearsighted person might correct his vision by wearing diverging thin lenses with a focal length of -45cm. When wearing such glasses, he looks not at the actual objects but at the virtual image of these objects formed by the glasses. Suppose the person looks at a 10cm-long pencil held vertically at a 4.5m distance from the lenses. Determine the image’s location and height (both in absolute value) Location and height A) 41cm and 0.91cm B) 12cm and 0.72cm C) 50cm and 3.00cm D) 40cm and 2.50cm
A nearsighted person might correct his vision by wearing diverging thin lenses with a focal length of -45cm. When wearing such glasses, he looks not at the actual objects but at the virtual image of these objects formed by the glasses. Suppose the person looks at a 10cm-long pencil held vertically at a 4.5m distance from the lenses. Determine the image’s location and height (both in absolute value) Location and height A) 41cm and 0.91cm B) 12cm and 0.72cm C) 50cm and 3.00cm D) 40cm and 2.50cm
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A nearsighted person might correct his vision by wearing diverging thin lenses with a focal length of -45cm. When wearing such glasses, he looks not at the actual objects but at the virtual image of these objects formed by the glasses.
Suppose the person looks at a 10cm-long pencil held vertically at a 4.5m distance from the lenses. Determine the image’s location and
height (both in absolute value)
Location and height
A) 41cm and 0.91cm
B) 12cm and 0.72cm
C) 50cm and 3.00cm
D) 40cm and 2.50cm
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