Describe the process to get a specimen into view using the 40X objective starting from the point after you have plugged in your scope and cleaned the objectives and slide.
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- Describe the process to get a specimen into view using the 40X objective starting from the point after you have plugged in your scope and cleaned the objectives and slide.
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- After focusing the specimen in hpo, you switched the objectives halfway and dropped enough immersion oil before clicking the oio lens into place. but when you viewed the specimen, you found the image to be blurred. what should you do:What is the purpose of examining your specimen slide using low power objective first nefore high power objective?When you are trying to find a specimen, you should use; The scanning objective The low/medium power objective The high power objective
- The field of view under the 4x objective is 3.3mm and a specimen looks like they can fit about 10 times across the field of view. What is the size of the specimen?If you observe a specimen under this 20X objective and the specimen spans one-quarter of the field of view distance, how long is the specimen in micrometers?Which of the following statements is/are TRUE? Kindly choose all that applies. Select the correct response(s): When FOV increases, the specimen magnification decreases. When FOV increases, the light intensity increases. When FOV increases, the specimen magnification increases. When FOV increases, the light intensity decreases.
- What is the objective lens used to locate the specimen and first focus? What is the difference in using a coarse adjustment knob and a fine adjustment knob?What information can be obtained from the slides prepared by the wet mount technique and the hanging mount technique? Give at least three (3) information. What are the limitations of each method (Provide two limitations)Using the scanning (4x) objective and the metric ruler, record the number of millimeters you see along with the letter “e.” Your value: 2 millimeters Convert the figure you attained to micrometers (1 millimeter = 1,000 micrometers). This is the diameter of the field of view for the low-power objective (LPD). The field of view is the circular field you see when you look through the oculars. The field of view changes at different magnifications. Your value (LPD): 2,000 micrometers -please help me with the problem in the picture.
- Which objective is referred to as the "scanning objective"? 4x 10x 20x 100x 400xe) What is the total magnification of a specimen when viewed with the following objective: 400 Scanning High Power 400 Low power Oil ImmersionAssume your field of view under a 3X objective is 6mm across. What is the field of view in mm under a 20X objective? Show clear work with units for credit. Field of view 20X objective? ___mm What is the field of view of this 20X objective in micrometers? If you observe a specimen under the 20X objective and the specimen spans one-quarter of the field of view distance, how long is the specimen in micrometers?