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If the slide is not moved and the high-power objective lens is switched into place, the specimen will appear larger and more detailed, but it may also be out of focus. The high-power lens provides a narrower field of view, so only a portion of the specimen will be visible. It is essential to refocus the microscope to get a clear image of the specimen under high power.

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2mo ago

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Where are the objective lenses located?

Objective lenses are located beneath the microscope stage, facing the specimen. They are usually mounted on a revolving nosepiece so that different objective lenses with varying magnifications can be easily switched during observation.


Which diagram best represents the field of view if the slide is not moved and the objective is switched to the high power?

When switching to high power, the field of view typically becomes smaller and more focused. This is because higher magnification objectives provide a closer view of a smaller area of the slide. Therefore, the diagram representing the field of view under high power would show a smaller circle or area compared to that of lower magnifications, indicating a more detailed but limited perspective of the specimen.


Why must the specimen be centered before switching from low power to high power?

Because high power takes up a much smaller area, and you may not be able to find the specimen if it's off to one side. C:


What two things must be true before the microscope can be switched to high power to zoom in on a specimen?

Before switching to high power, the specimen must be in focus and positioned in the center of the field of view under low power magnification. Additionally, the light source should be properly adjusted to provide clear illumination of the specimen at high power.


What happens to the field of view of a microscope from changing objectives from one to another?

Changing objectives on a microscope leads to a change in magnification, which in turn affects the field of view. As magnification increases, the field of view typically decreases, meaning you see a smaller area of the sample. Conversely, decreasing magnification usually results in a wider field of view, allowing you to see more of the specimen at once.


What happened to the size of field as you switched from the 4X to the 10X objectives?

As you switch from the 4X to the 10X objective lens in a microscope, the size of the field of view decreases. This is because higher magnification lenses provide a closer view of a smaller area, focusing on finer details while reducing the overall visible area. Therefore, while the specimen appears larger and more detailed, the surrounding context becomes less visible.


Images observed under the light microscope are reversed and inverted Explain what this means?

When observing an image under a light microscope, it is reversed because the image appears upside-down compared to the actual specimen. Additionally, the image is inverted, meaning that left and right are switched. This occurs due to the way light rays pass through the lenses of the microscope, causing the image to be flipped in this manner.


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How is magnification controlled in microscopes?

Magnification in microscopes is controlled by adjusting the focal length of the lenses. By changing the distance between the lenses or using lenses with different focal lengths, the magnification level can be adjusted. Additionally, some microscopes have different objective lenses with varying magnification powers that can be switched out to change the overall magnification.


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