Using the Microscope That gizmo pictured to the

  • Slides: 19
Download presentation

Using the Microscope That gizmo pictured to the left is a BIG deal. It

Using the Microscope That gizmo pictured to the left is a BIG deal. It literally opened up worlds of organisms and information to scientists. It's importance in the history of medicine and our understanding of disease should not be underestimated. That gizmo is a compound light microscope. For you, the biology student, it is perhaps the most important tool for you to understand. By the time you are done toying with these pages (& reading your text & paying attention in class), you should be able to : 1. name all of its parts and describe the function of each 2. explain how to carry the thing, properly prepare a slide, & focus correctly 3. calculate total magnification 4. estimate the size of a specimen being observed

THE PARTS Match the names in the word bank with the numbered parts in

THE PARTS Match the names in the word bank with the numbered parts in the picture. arm base body tube coarse focus knob diaphragm fine focus knob high power objective lens light source low power objective lens nosepiece ocular (eyepiece) stage clips

Answers to THE PARTS : 1) base 2)lightsource 3) diaphragm 4) stage 5) stage

Answers to THE PARTS : 1) base 2)lightsource 3) diaphragm 4) stage 5) stage clips 6) low power objective lens 7) high power objective lens 8) nosepiece 9) arm 10) fine focus knob 11) body tube 12) coarse focus knob 13) ocular (eyepiece)

WHAT THE PARTS DO Now it's time to memorize the function of each microscope

WHAT THE PARTS DO Now it's time to memorize the function of each microscope part. To help you practice, here's a matching exercise. arm base body tube coarse focus knob diaphragm fine focus knob high power objective lens light source low power objective lens nosepiece ocular (eyepiece) stage clips 1. the lens you look through, magnifies the specimen 2. supports the microscope 3. holds objective lenses 4. magnify the specimen (2) 5. supports upper parts of the microscope, used to carry the microscope 6. used to focus when using the high power objective 7. where the slide is placed 8. regulates the amount of light reaching the objective lens 9. used to focus when using the low power objective 10. provides light 11. hold slide in place on the stage

Answers to 'WHAT THE PARTS DO' : 1. ocular 2. base 3. nosepiece 4.

Answers to 'WHAT THE PARTS DO' : 1. ocular 2. base 3. nosepiece 4. low power objective lens, high power objective lens 5. arm 6. fine focus knob 7. stage 8. diaphragm 9. coarse focus knob 10. light source (lamp or mirror) 11. stage clips

Important Microscope Vocabulary : magnification mag-ne-fe-'ka-shen n 1. apparent enlargement of an object 2.

Important Microscope Vocabulary : magnification mag-ne-fe-'ka-shen n 1. apparent enlargement of an object 2. the ratio of image size to actual size A magnification of "100 x" means that the image is 100 times bigger than the actual object. resolution rez-e-loo-shen n 1. clarity, sharpness 2. the ability of a microscope to show two very close points separately

OK, well. There a few other tidbits about the compound microscope you should remember

OK, well. There a few other tidbits about the compound microscope you should remember :

1. Why is this called a"compound" light microscope ?

1. Why is this called a"compound" light microscope ?

"Compound" just refers to the fact that there are two lenses magnifying the specimen

"Compound" just refers to the fact that there are two lenses magnifying the specimen at the same time, the ocular & one of the objective lenses.

2. If two lenses are always magnifying the specimen, how do you figure out

2. If two lenses are always magnifying the specimen, how do you figure out the total magnification being used ?

You multiply the power of the ocular and the power of the objective being

You multiply the power of the ocular and the power of the objective being used. total mag. = ocular x objective For example, if the ocular is 10 x and the low power objective is 20 x, then the total magnification under low power is 10 x 20 = 200 x. Easy, right ?

3. How do you carry one of those things, called a microscope ?

3. How do you carry one of those things, called a microscope ?

With two hands, one holding the arm & the other under the base. Something

With two hands, one holding the arm & the other under the base. Something like a football. (They're expensive, we don't want to drop 'em. )

4. What about focusing ? How do you do that ?

4. What about focusing ? How do you do that ?

Here's what I suggest. Once you have your slide in place on the stage,

Here's what I suggest. Once you have your slide in place on the stage, make sure the low power objective (the shortest objective lens) is in position & turn the coarse focus until the lens is at a position closest to the stage. Set the diaphragm to its largest opening (where it allows the most light through). Then, while looking through the ocular, begin to slowly turn the coarse focus. Turn slowly & watch carefully. When the specimen is focussed under low power, move the slide so that what you want to see is dead-center in your field of view, & then switch to a higher power objective. DO NOT touch the coarse focus again --- you will break something ! Once you are using a high power objective, focus using the fine focus knob ONLY. Be sure to center your specimen before switching to a higher power objective or it may disappear.

Example #1: ocular power = 10 x low power objective = 20 x high

Example #1: ocular power = 10 x low power objective = 20 x high power objective = 50 x a)What is the highest magnification you could get using this microscope ?

500 x Ocular x high power = 10 x 50 = 500. (We can

500 x Ocular x high power = 10 x 50 = 500. (We can only use 2 lenses at a time, not all three. )