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No, the eyepiece and objective lens are at opposite ends of the microscope.
eyepiece
To determine the magnification of the eyepiece on a microscope take the total magnification for the microscope and divide it by the total magnification of the objective lens. The answer is what the magnification is for the eyepiece.
Jocky
A compound microscope has two lenses - the eyepiece lens and the objective lens. the objective lens(which is a convex lens) collects light and brings it to focus, creating an image. The eyepiece lens is placed at the focal point(the point at which light rays meetafter passing thru the convex lens). Thus we are able to see the magnified version of the image.
AnswerOcular Lens is another name for the eyepiece of a compound microscope.
The type of microscope that you are looking for is known as a "compound microscope."A pair of lenses includes the objective lens (one or more) and the eyepiece lens.
No, the eyepiece and objective lens are at opposite ends of the microscope.
No, the eyepiece and objective lens are at opposite ends of the microscope.
No, the eyepiece and objective lens are at opposite ends of the microscope.
a compound microscope is the combination of two convex lenses the objective and the eyepiece. this lens with a small focal lenth this lens is placed close to the object
The body tube of a compound optical microscope contains two lens systems, the objective lens composed of one or several lenses that magnify the image of the object being examined, and the ocular lens at the eyepiece end. The magnification of the microscope depends on the focal lengths of the two lens systems.
Eyepiece lens.
The eyepiece lens of a compound microscope acts essentially a low power (x10 or so) magnifier of the real image created by the objective lens.
A compound microscope contains an objective lens with a very short focal length and an eyepiece with a longer focal length. Both lens are mounted in the same tube.
eyepiece
To determine the magnification of the eyepiece on a microscope take the total magnification for the microscope and divide it by the total magnification of the objective lens. The answer is what the magnification is for the eyepiece.