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Under a transmission electron microscope, one can see the internal structure of cells, tissues, and individual molecules at a very high magnification. This type of microscope can reveal details such as the arrangement of atoms and the ultrastructure of organelles within cells.
To view a tapeworm, you would use a light microscope. First, prepare a microscope slide with a sample of the tapeworm, then place it under a light microscope for viewing. This type of microscope allows you to observe the external and internal structures of the tapeworm.
A microbe is too small to be seen without a microscope. One type of microbe is a bacterium.
A transmission electron microscope (TEM) would be best for looking at the internal structures of a cell.TEM uses a beam of electrons to produce a detailed image of cell structures with high resolution around 0.1 nm.
A compound light microscope is typically used to view human hair. This type of microscope can provide detailed images of the hair structure, such as the cuticle, cortex, and medulla. Magnification and lighting adjustments can help in examining hair samples more closely.
An electron microscope would be needed to see detailed images of an internal structure of a bacterium, as it can provide much higher magnification and resolution compared to a light microscope. The electron microscope uses a beam of electrons instead of light to visualize the specimen, allowing for better visualization of internal structures at the cellular level.
Staphlococci are bacteria with a round shape when viewed under a microscope. There are many types of staph bacteria. All bacteria have protein walls which are have a unique molecular structure to the type of bacterium, so only the correct antibody can fit this structure and destroy the bacterium cell.
Under a transmission electron microscope, one can see the internal structure of cells, tissues, and individual molecules at a very high magnification. This type of microscope can reveal details such as the arrangement of atoms and the ultrastructure of organelles within cells.
There are two types of the electron microscope. First is called transmission electron microscope. It uses electrons passed through the sample to build a picture of the sample internal structure. Second type is scattered ("reflected" from the sample surface) electrons to build up a picture of the sample surface.
convex lens
A microscope that uses a beam of electrons to examine a specimen is called a Transmission Electron Microscope (TEM). This type of microscope generates high-resolution images by transmitting electrons through a thin specimen to create a detailed image of its internal structure.
The internal arrangement of atoms.
There are two types of the electron microscope. First is called transmission electron microscope. It uses electrons passed through the sample to build a picture of the sample internal structure. Second type is scattered ("reflected" from the sample surface) electrons to build up a picture of the sample surface.
To view a tapeworm, you would use a light microscope. First, prepare a microscope slide with a sample of the tapeworm, then place it under a light microscope for viewing. This type of microscope allows you to observe the external and internal structures of the tapeworm.
A bacterium typically has a cell membrane, flagellum for movement, and a cell wall for structure and protection.
A microbe is too small to be seen without a microscope. One type of microbe is a bacterium.
A transmission electron microscope (TEM) would be best for looking at the internal structures of a cell.TEM uses a beam of electrons to produce a detailed image of cell structures with high resolution around 0.1 nm.