An Electron microscope is more sophisticated. They use electrons and allow you to magnify objects up to 2000000x and view said objects in 3D.
Electron microscopes offer much higher resolution and magnification capabilities compared to light microscopes. They allow for visualization of smaller structures and details, such as individual molecules, viruses, and cell organelles. Electron microscopes also have the ability to produce 3D images and can differentiate between materials based on their electron densities.
An electron microscope can reach a far greater magnifiction than a conventional microscope. It is obvious that the largest advantage of any type of microscope is to observe an organism that can not be seen by the unaided eye. Light microscopes are easy to use, can magnify up to 2000 times, enable magnification of live cells and their movement, and are relatively cheap compared to electron microscopes. The only disadvantage is that it can only magnify up to 1000 times, after that the image is blurry, whereas an electron microscope can magnify up to 100,000 times! However, electron microscopes are extremely expensive, difficult to use, and cannot observe live specimens.
Light microscopes are advantageous for observing living specimens in real time due to their lower energy beam, which minimizes damage to samples. They are also more affordable and easier to use compared to electron microscopes, making them accessible to a wider range of researchers.
An electron microscope can typically have magnifications ranging from 10,000x to over 1,000,000x. This allows for detailed imaging of samples at the nanometer scale.
One advantage of a scanning electron microscope over a transmission electron microscope is that it provides detailed surface imaging with a greater depth of field, making it ideal for studying the topography and morphology of a sample.
they are relatively smaller, electron ones are biggerthey are easy to usethey allow you to see coloured images, electron ones don'tyou can observe live specimen, specimen has to be dead with electron microscopesi was trying to view the answer in relation to transmmission
Electron microscopes offer much higher resolution and magnification capabilities compared to light microscopes. They allow for visualization of smaller structures and details, such as individual molecules, viruses, and cell organelles. Electron microscopes also have the ability to produce 3D images and can differentiate between materials based on their electron densities.
An electron microscope can bombard things with electrons and create a virtual construction of the thing being viewed. An image or video relies of much larger light particles. An electron microscope can actually make a reconstruction of things like atoms. When it comes to cells, its much more accurate.
The Compund light microscope allows people to view living cells. With the electron light microscope peole can only view dead cells but with very high detail. The electron microscope is also much more expensive than a compound ligh microscope. The compound light microscope is also much easier to transport from place to place, as the electron microscope is not.
An electron microscope can reach a far greater magnifiction than a conventional microscope. It is obvious that the largest advantage of any type of microscope is to observe an organism that can not be seen by the unaided eye. Light microscopes are easy to use, can magnify up to 2000 times, enable magnification of live cells and their movement, and are relatively cheap compared to electron microscopes. The only disadvantage is that it can only magnify up to 1000 times, after that the image is blurry, whereas an electron microscope can magnify up to 100,000 times! However, electron microscopes are extremely expensive, difficult to use, and cannot observe live specimens.
Can view live samples and observe motility and responses to stimuli
there are seven type of microscope.they are (1)Electron microscope (2)compound microscope (3)light microscope (4)scanning electron microscope (5)transmission electron microscope (6)dark field microscope and (7)light field microscope
The microscope with the highest magnification is the electron microscope, specifically the transmission electron microscope (TEM). While light microscopes typically reach magnifications of about 1,000 to 2,000 times, electron microscopes can achieve magnifications of over a million times due to their use of electron beams instead of light. This allows them to reveal ultra-fine details at the nanoscale, making them invaluable in fields such as materials science and biology.
Answer: Using an EM (electron microscope) you can look INSIDE a cell and take photos. This is different to an ordinary (or Light microscope) where you generally only see the outside of the cells - or at best can only see vague shapes inside the cell. Answer: The scanning electron microscope provides a number of advantages over an optical microscope. Primarily this centers around the fact that the wave lengths used are much smaller than the wavelengths of light. What you can see is, in par,t dependent on the relative size of the object and wavelength of the light you are using. For very small objects, like individual atoms, light just wont work. Secondly the electron microscope can be fitted out with equipment and analytical sensors to identify the atomic composition of materials in the field of view. These Scanning Electron Microscopes (SEM) are extremely useful in identifying trace contaminants. The standard microscope still has advantages. It can detect the polarizing capacity of organic compounds, it is cheap and easy to use, it can be used in the analysis of stained samples in microbiology, it can use transmitted light and reflected light to examine an object. A major advantage is that the surface of the viewed object does not have to be prepared by being covered with a very thin layer of metal to permit viewing.
Light microscopes are advantageous for observing living specimens in real time due to their lower energy beam, which minimizes damage to samples. They are also more affordable and easier to use compared to electron microscopes, making them accessible to a wider range of researchers.
The major advantage of a transmission electron microscope (TEM) over a compound light microscope is its ability to achieve much higher resolution, allowing for visualization of cellular structures at the nanometer scale. This is due to the use of electrons instead of light, which have shorter wavelengths. However, the major disadvantage of TEM is that it requires extensive sample preparation, often resulting in the destruction of the specimen, and it cannot be used to observe live samples.
You mean "electron," of course. There are a number of "advantages," but this is really not the right way to look at it, so to speak. The most obvious one is color. Electron microscopes cannot detect color because they do not use light to illuminate the object, they use electrons. Depending upon what one is looking for, color contrasts can be very important. Electron microscopes have their own advantages, primarily much higher magnification.