able to: 1. handle the microscope properly; 2. identify the parts of the microscope; 3. describe what parts of the microscope can do; 4. prepare materials for microscope study; 5. focus the microscope properly; 6. compare the image of the object seen by the unaided eye and under the microscope; and 7. compute for the magnification of objects observed under the microscope. [pic] Procedure: A. THE MICROSCOPE‚ ITS PARTS AND THEIR FUNCTIONS 1. Get the microscope from its box or the cabinet
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then select the lowest ocular power (4x) to set microscope into low power. The reposition slide into the circle of light by turning the two knobs located at the right of the microscope. The top knob moves slide back and forth‚ where as‚ the bottom knob positions the slide from side to side. Then adjust the focus using the coarse focus and fine focus knob‚ using the coarse focus first causing a move rapid movement. ALWAYS make sure the microscope is in its lowest power when using the coarse
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Microbiology Term Paper of BTY(205) Topic:- Different types of Microscopes Submitted to:- Submitted by:- Annapurna S. Agasthya Anjali Kumari B-15 11007713 B.Sc. Biotechnology Acknowledgement I am heartily thankful to my teacher‚ Annapurna S. Agasthya who gave me such a wonderful topic and whose encouragement‚ guidance and support from the initial to the final level enabled me to develop an understanding
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By examining blood smear by microscopy it can detect infections whether they are viral or bacterial. Blood smears are examined by looking at the white and red blood cells appearances. The aim of the experiment is to compare a normal blood smear and its pathological features to those with an infection or abnormality by the use of microscopy looking at the cells involved with blood. A normal blood smear would contain 3 to 4 white blood cells per field in microscopy. If there is an increase in the
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Student Name Motunrade obasun Course Human Biology Date 04-11-2014 Introduction to the Microscope: Lab Report From Exercise 1: 1. Draw what you see on the ‘e’ slide at 160 xs in the space below. Snaps will be submitted separately. 2. Describe the relationship between what you see through the eyepiece and what you see on the stage. On the stage it was not visible enough rather it looks too small‚ while in microscope it appears black and grainy. 3. Draw the image you see of the ‘e’ slide at 200x. Snaps
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The electron microscope‚ instrument that produced the first magnified image showing three-dimensional’ and highly magnified image of a small object. It directs a beam of electrons rather than light through a specimen. The beam of electrons is created from an electron gun. This beam then travels through the length of the microscope cylinder‚ which contains the lenses‚ the specimen chamber‚ and the image-recording system. Two types of electron lenses are used‚ electrostatic and electromagnetic
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2012 COMPOUND MICROSCOPE A compound microscope is an optical instrument used to see objects that are too small for the naked eye. A compound microscope is a microscope fitted with two or more convex lenses. The high magnification produced by these lenses together enables a detailed study of micro-organisms‚ cells and tissues. These types of microscopes are therefore widely used in scientific and medical research. The basic design of a compound light microscope consists of convex
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What type of microscope would be used in the laboratory to observe very small objects or organisms on a slide? Please give reasoning behind the answer. Which microscope would be useful when studying the internal structure of a minute specimen? (2 points) 2.List two jobs where microscopes are used. Describe in what capacity they are used. (2 points) 3.Why is a special paper used to clean the lenses of a microscope? (1 point) 4.State the name of each of the tagged parts on the microscope shown above
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An electron microscope is a type of microscope that produces an electronically-magnified image of a specimen for detailed observation. The electron microscope (EM) uses a particle beam of electrons to illuminate the specimen and create a magnified image of it. The microscope has a greater resolving power than a light-powered optical microscope‚ because it uses electrons that have wavelengths about 100‚000 times shorter than visible light (photons)‚ and can achieve magnifications of up to 1‚000‚000x
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Introduction Microscopes have brought to light a new realm of information that originally laid dormant and invisible to the naked eye. It has enhanced biology and brought forth great advancements into the study of living organisms. Many discoveries have been achieved through the microscope. One of the major ones is the cell theory that we have talked about in this chapter. Having a microscope enables us to study even the smallest of details in organisms and allows us to conduct research. Another
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