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You would typically use a high magnification objective lens, such as 40x or 100x, to see small objects with a microscope. This allows you to view the details of the object at a much larger scale than with lower magnification lenses.

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How do you determine the maginfication of a microscope?

The magnification of a microscope is determined by multiplying the magnification of the objective lens by the magnification of the eyepiece. For example, if the objective lens has a magnification of 10x and the eyepiece has a magnification of 20x, the total magnification would be 10x * 20x = 200x.


How is the total magnifacation of a microscope determined?

The total magnification of a microscope is determined by multiplying the magnification of the objective lens by the magnification of the eyepiece lens. For example, if the objective lens has a magnification of 10x and the eyepiece lens has a magnification of 20x, the total magnification would be 10x * 20x = 200x.


How is the magnification of compound light microscope determined?

The magnification of a compound light microscope is determined by multiplying the magnification of the ocular lens (eyepiece) by the magnification of the objective lens. For example, if the ocular lens has a magnification of 10x and the objective lens has a magnification of 40x, the total magnification would be 10x * 40x = 400x.


What uses electrons to produce magnified images?

An electron microscope uses a beam of accelerated electrons to produce magnified images of extremely small objects. This type of microscope offers much higher resolution and magnification capabilities compared to traditional light microscopes.


How does microscopes use refraction?

Microscopes use refraction by bending light as it passes through lenses to focus the image. The bending of light allows the microscope to magnify the image and create a detailed view of small objects that would otherwise be difficult to see. By controlling the amount of refraction, the microscope can adjust the magnification level.

Related Questions

If a microscope lens has a magnification of 15 and another has a magnification of 40 what is the total magnification of the microscope?

it would be 15 times 40 which is 600 times magnification


What type of microscope would you use to observe a splinter in the finger?

A light microscope would be suitable to observe a splinter in the finger as it provides enough magnification and resolution to see small objects like splinters. Additionally, a dissecting microscope could also be used for larger splinters to examine them in more detail.


What is the magnification of the eyepiece on a microscope?

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.


What can you see under a low power microscope?

Under a low power microscope, you can see larger structures such as plant cells, blood cells, small insects, and other objects that are not visible to the naked eye, but lack fine details that would be visible with higher magnification.


How do you determine the maginfication of a microscope?

The magnification of a microscope is determined by multiplying the magnification of the objective lens by the magnification of the eyepiece. For example, if the objective lens has a magnification of 10x and the eyepiece has a magnification of 20x, the total magnification would be 10x * 20x = 200x.


How is the total magnifacation of a microscope determined?

The total magnification of a microscope is determined by multiplying the magnification of the objective lens by the magnification of the eyepiece lens. For example, if the objective lens has a magnification of 10x and the eyepiece lens has a magnification of 20x, the total magnification would be 10x * 20x = 200x.


How is the magnification of compound light microscope determined?

The magnification of a compound light microscope is determined by multiplying the magnification of the ocular lens (eyepiece) by the magnification of the objective lens. For example, if the ocular lens has a magnification of 10x and the objective lens has a magnification of 40x, the total magnification would be 10x * 40x = 400x.


When would you use a dissecting light microscope instead of a compound light microscope?

You would use a dissecting light microscope when studying larger specimens or objects that require a greater depth of field, such as observing the external features of small organisms or dissected parts of plants or animals. Dissecting microscopes provide lower magnification but offer a larger working distance and stereoscopic view, making them ideal for tasks like dissection and manipulation of objects.


How do you calculate the total magnification capacity of a microscope?

To calculate the total magnification of a microscope, you multiply the magnification of the objective lens by the magnification of the eyepiece. For example, if the objective lens has a magnification of 40x and the eyepiece has a magnification of 10x, the total magnification would be 40x * 10x = 400x.


If a compound microscope has a 10x lens in its eyepieceans a 20x lents in its nosepieceits total magnification is?

The total magnification of a compound microscope is calculated by multiplying the magnification of the eyepiece lens by the magnification of the objective lens. In this case, with a 10x eyepiece lens and a 20x objective lens, the total magnification would be 10x * 20x = 200x. Therefore, the total magnification of the microscope is 200x.


What is the magnification in binocular microscope?

The magnification in a binocular microscope is the product of the magnification of the eyepieces and the objective lenses. For example, if the eyepieces magnify the image by 10x and the objective lenses magnify by 40x, the total magnification would be 10 x 40 = 400x.


What type of object do you study with a binocular dissecting microscope?

You would study small objects like insects, plants, or circuit boards with a binocular dissecting microscope. It provides a 3D view and lower magnification compared to compound microscopes, so it's useful for examining intricate details of larger specimens.