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Viruses are best seen through an electron microscope because of their extremely small size. Electron microscopes use a beam of electrons to magnify objects, allowing for resolution of structures as small as a few nanometers, which is necessary to visualize viruses. Light microscopes are not powerful enough to visualize structures at this level of detail.

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The nucleus of a cell can be viewed through what kind of microscope?

An Electron Microscope is used to study the contents of a nucleus.


What microscope would you need to see the details inside a bacterium?

You would typically need an electron microscope to see the details inside a bacterium, as the resolution of an electron microscope is much higher than that of a light microscope. Electron microscopes use a beam of electrons to create an image, allowing for detailed visualization of the internal structures of bacteria.


Is flagella viewable through an electron microscop or a light microscope?

Flagella are typically only visible through an electron microscope due to their small size, which is on the order of a few micrometers. Light microscopes do not have the resolution necessary to clearly visualize structures at this scale.


What is the difference between a scanning electron microscope and a transmission electron microscope?

A scanning electron microscope (SEM) uses a focused beam of electrons to create detailed surface images of a sample, while a transmission electron microscope (TEM) transmits electrons through a thin sample to create detailed internal images. SEM is used for surface analysis, while TEM is used for studying internal structures at a higher resolution.


What are the key differences between a scanning electron microscope and a transmission electron microscope?

A scanning electron microscope (SEM) uses a focused beam of electrons to create a detailed surface image of a sample, while a transmission electron microscope (TEM) transmits electrons through a thin sample to create a detailed internal image. SEM is best for surface analysis, while TEM is better for studying internal structures at a higher resolution.

Related Questions

The nucleus of a cell can be viewed through what kind of microscope?

An Electron Microscope is used to study the contents of a nucleus.


What is transmission electron microscopes?

A transmission electron microscope (TEM) is a microscope in which a beam of electrons is transmitted through an ultra-thin specimen, interacting with the specimen as it passes through it.


What is a type of electron microscope?

One type of electron microscope is a transmission electron microscope (TEM). This microscope passes a beam of electrons through a thin specimen to create an image. Another type is a scanning electron microscope (SEM), which scans a focused beam of electrons across the surface of a specimen to create a detailed image.


What is the power source of a electron microscope?

The power source of an electron microscope is electricity. The instrument requires a stable power supply to generate and control the electron beam used to magnify the sample being observed. The power is typically supplied through a dedicated electrical outlet or power source connected to the microscope.


How do scientists see the mitochondria and nucleus?

The Nucleus is seen through the use of an Optical Microscope and The Mitochondria is seen through an Electron Microscope.


How electron beams fucossed?

Passing through (or along) strong magnetic fields. Eg. in an electron microscope.


How scientists view atoms?

They view atoms through an electron microscope.


What is a transmission electron microscope used for diagnosis?

The transmission electron microscope operates on the same principle as the light microscope but uses electrons instead of light. What you can see with a light microscope is limited by the wavelength of light. Transmission electron microscopes use electrons as "light source" and their much lower wavelength makes it possible to get a resolution a thousand times better than with light microscope.


What happens to the electron beam after it has passed through the specimen in an electron microscope?

After passing through the specimen in an electron microscope, the electron beam is detected by a sensor, which generates an image based on the interactions of the electrons with the specimen. The image can reveal detailed information about the specimen's structure, composition, and morphology.


What is the difference between ordinary microscope and electron microscope?

Magnification and resolution is in light microscope is about 500x and 0.2micro metres respectively than human eye.In e.microscope magnification is about 200,000x and resolution is 0.0005micro metres. You cannot observe live specimen through electron microscope. Lenses in light microscope are glass while e.microscope use magnetic lenses. E.microscope is relatively very larger than light microscope. You need special knowledge to handle electron microscope. You can observe through naked eye in e.microscope. A beam of electrons is sent through specimen in e.microscope.In light microscope a beam of light is sent. Electron microscope is very complex relative to light microscope.


Can atoms be seen through an electron microscope?

Yes, atoms can be seen through an electron microscope. Electron microscopes use a beam of electrons rather than light to visualize samples at nanoscale resolutions, allowing for direct observation of individual atoms.


What are the two types of electron mircroscopes?

The two types of electron microscopes are transmission electron microscope (TEM) and scanning electron microscope (SEM). TEMs are used to study internal structures of specimens by transmitting electrons through the sample, while SEMs are used for surface imaging by scanning a focused electron beam across the specimen.