The invention of the microscope was important in the study of cells because only the microscope can see very small organism.
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It would simply depend on the type of organism you were studying.
The easiest microscope to use for observing cell membranes is a fluorescence microscope. This type of microscope allows for the visualization of specific proteins or lipids in the cell membrane by using fluorescent dyes or tags, which can highlight structures that may be difficult to see with traditional light microscopes. Fluorescence microscopy also provides better contrast and resolution for cellular components, making it ideal for studying dynamic processes in living cells.
Staining is used to enhance the visibility of plant cell structures under a microscope by adding color to certain components such as nucleus, cell wall, or cytoplasm. It helps in studying cell morphology, identifying different cell types, and locating specific organelles within the cells. Staining can also reveal details about cell health, division, and function.
Cell biologists use a transmission electron microscope (TEM) to study the internal structures of cells. This powerful microscope allows them to visualize organelles, membranes, and other subcellular structures at very high resolution. TEM is especially useful for studying cellular ultrastructure and identifying organelles in detail.
you ca see in stage of microscope
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Many discoveries about the parts of the cell and their activities had been possible with the use of the electron microscope
Many discoveries about the parts of the cell and their activities had been possible with the use of the electron microscope
Electron :)
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If the cell has a cell wall, it is a plant cell.
A microscope such as a liver cell or white blood cell would be good for studying lysosomes, as they contain a large number of these organelles. These cells are readily available for study and experimentation in laboratory settings.
It would simply depend on the type of organism you were studying.
An electron microscope would be most appropriate for studying the internal parts of a cell due to its high resolution and ability to visualize structures at the nanometer level. This would allow scientists to observe details such as organelles and cellular components in great detail.