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Kyle,

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What is the total magnification of a microscope if the microscope is on low power?

Total magnification will be ocular magnification multipled by the objective magnification i.e. 10 x 25 = 250x.AnswerThe last time I checked if the eyepiece is on Low Power that means it is 10x. You must multiply the additional 20x, so the total magnification is 200x.


What is the total magnification of the microscope when it is on high power?

Microscopes vary in power. You can determine total magnification by the eyepiece and the lens.


What is the rule for the total magnification of a compound microscope?

The total magnification of a compound microscope is calculated by multiplying the magnification of the objective lens by the magnification of the eyepiece. So, total magnification = magnification of objective lens x magnification of eyepiece.


What is total magnification obtainable with a low power objective?

Total magnification with a low power objective lens is calculated by multiplying the magnification power of the objective lens by the magnification of the eyepiece (ocular lens). Typically, a low power objective lens has a magnification of 10x or 4x, and when combined with a standard 10x eyepiece, the total magnification would be 100x or 40x, respectively. Therefore, total magnification for low power objectives usually ranges from 40x to 100x.


Compare the total magnification of lpo hpo and oio?

The total magnification of a low power objective (LPO) is typically around 100x, a high power objective (HPO) is around 400x, and an oil immersion objective (OIO) can be up to 1000x. This means an oil immersion objective provides the highest magnification among the three.


What details if a microscope would you need to know to determine the total magnification of the system?

To determine the total magnification of a microscope, you need to know the magnification power of the objective lens and the magnification power of the eyepiece (ocular lens). Total magnification is calculated by multiplying these two values together. For example, if the objective lens has a magnification of 40x and the eyepiece is 10x, the total magnification would be 400x.


What is the total magnification if you view an object using a 40x objective lens and the eyepiece of the microscope is at 5x magnifying power?

The total magnification would be 200x, since the total magnification is the magnification of the objective lens X the magnification of the eyepiece.


What is the total magnification of the swift compound microscope when viewing an image under the lowest power objective?

The total magnification of a compound microscope is calculated by multiplying the magnification of the ocular lens (usually 10x) with the magnification of the objective lens. If the lowest power objective has a magnification of 4x, then the total magnification would be 40x (10x * 4x).


How do you determine the total magnification of microscope?

To determine the total magnification of a microscope you multiply the magnification power of the objectives lens (indicated as x10) by that of the eye piece.


What is the total magnification of the microscope when the low power objective is locked in place?

The total magnification of a microscope when the low power objective is locked in place is the product of the magnification of the eyepiece and the magnification of the objective lens. For most microscopes, the low power objective lens has a magnification of around 10x, and the standard eyepiece magnification is 10x. Therefore, the total magnification would be 100x.


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.


What is calculated by multiplying the power on the objective by the power on the eyepiece?

The total magnification of a compound microscope is calculated by multiplying the magnification power of the objective lens by the magnification power of the eyepiece. This determines how much larger an object will appear when viewed through the microscope.