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A custom-made compound microscope (see the figure below) with an objective lens with a focal length of3.75cm,an eyepiece lens with a focal length of6.20cmand a

A custom-made compound microscope (see the figure below) with an objective lens with a focal length of3.75cm,an eyepiece lens with a focal length of6.20cmand a barrel length of29.5cmis used to view a0.100 cmspecimen mounted on a microscope slide. Since the microscope is custom-made, it varies slightly from a standard production microscope in that the object distance for the objective is so much larger than the focal length of the objective that wecannotset the object distance for the objective equal to the focal length of the objective. However, the image formed by the objective is close enough to the focal point of the eyepiece that we are justified in setting the object distance for the eyepiece equal to the focal length of the eyepiece. Finally, the microscope is being used by a lab technician with a near point of34.0cm.(Use the exact values you enter to make later calculations.)Determine the following.(a) distance the specimen (object) is mounted from the objective lens (Enter your answer to at least two decimal places.) cm (b) magnification of the objective lens (Include the sign of the value in your answer. Enter your answer to at least two decimal places.) (c) magnification of the eyepiece lens (Include the sign of the value in your answer.) (d) overall magnification for the microscope (Include the sign of the value in your answer.) (e) height of the image formed by the objective (Include the sign of the value in your answer.) How is the magnification of a lens related to the size of the object and image?cm (f) height of the final image formed by the microscope (Include the sign of the value in your answer.) cm (g) absolute value of angle subtended at the technician's eye when she holds the specimen at her near point and views it with her unaided eye rad (h) absolute value of angle subtended at the technician's eye when she views the specimen through the microscope rad

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