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______ aregranular structures first observed under electric microscope as denseparticles by ________ (1955).
  • a)
    Ribosomes, George Palade
  • b)
    Ribosomes, Perner
  • c)
    Lysosomes, de Duve
  • d)
    Peroxisomes, de Duve
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
______ aregranular structures first observed under electric microscope...
Ribosomes are granular structures which were discovered by Robinson and Brown (1953) in plant cell and by Palade (1955) in animal cell. Palade (1955) also coined the term ribosomes hence, they are also called Palade particles. Ribosomes occur in both prokaryotic and eukaryotic cells.
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______ aregranular structures first observed under electric microscope...
Introduction:
The question asks about the granular structures that were first observed under an electron microscope as dense particles in 1955, along with the scientist who made this discovery.

Answer:

Ribosomes and George Palade:
The correct answer is option A: Ribosomes, George Palade. Ribosomes are cell organelles responsible for protein synthesis. They were first observed as dense particles under an electron microscope in 1955 by George Palade, a Romanian-American cell biologist. Palade's discovery of ribosomes and his subsequent research on their structure and function significantly contributed to our understanding of protein synthesis.

Significance of the Discovery:
The discovery of ribosomes as granular structures was a significant breakthrough in the field of cell biology. It provided scientists with a better understanding of how proteins are produced within cells, shedding light on the fundamental processes that govern cellular function.

Role of Ribosomes in Protein Synthesis:
Ribosomes play a crucial role in protein synthesis. They are composed of ribosomal RNA (rRNA) and proteins and exist in two subunits - large and small. Ribosomes facilitate the translation of genetic information encoded in messenger RNA (mRNA) into the amino acid sequence of proteins. This process occurs in the cytoplasm of the cell.

George Palade's Contribution:
George Palade's discovery of ribosomes and his subsequent research on their structure and function earned him the Nobel Prize in Physiology or Medicine in 1974. His studies involved using electron microscopy techniques to visualize ribosomes and their association with various cellular components involved in protein synthesis.

Conclusion:
In summary, ribosomes were the granular structures first observed as dense particles under an electron microscope in 1955. The scientist credited with this discovery is George Palade. His work on ribosomes significantly contributed to our understanding of protein synthesis and earned him the Nobel Prize in Physiology or Medicine.
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Read the following text and answer the following questions on the basis of the same:Electron Microscope Electron microscopes use electrons to illuminate a sample. In Transmission Electron Microscopy (TEM), electrons pass through the sample and illuminate film or a digital camera.Resolution in microscopy is limited to about half of the wavelength of the illumination source used to image the sample. Using visible light the best resolution that can be achieved by microscopes is about ~200 nm. Louis de Broglie showed that every particle or matter propagates like a wave. The wavelength of propagating electrons at a given accelerating voltage can be determined byThus, the wavelength of electrons is calculated to be 3.88 pm when the microscope is operated at 100 keV, 2. 74 pm at 200 keV and 2.24 pm at 300 keV. However, because the velocities of electrons in an electron microscope reach about 70% the speed of light with an accelerating voltage of 200 keV, there are relativistic effects on these electrons. Due to this effect, the wavelength at 100 keV, 200 keV and 300 keV in electron microscopes is 3.70 pm, 2.51 pm and 1.96 pm, respectively.Anyhow, the wavelength of electrons is much smaller than that of photons (2.5 pm at 200 keV). Thus if electron wave is used to illuminate the sample, the resolution of an electron microscope theoretically becomes unlimited. Practically, the resolution is limited to ~0.1 nm due to the objective lens system in electron microscopes. Thus, electron microscopy can resolve subcellular structures that could not be visualized using standard fluorescence microscopy.Q. Wavelength of electron as wave at accelerating voltage 200 keV is

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