Describe what you see through the microscope as compared to how the word "roe" looked when you placed the slide on the stage. a) Describe what happened to the image as the total magnification was increased. In other words, how much of the specimen (the word roe) is visible at each level of magnification, 4x, 10x, and 40x?
Describe what you see through the microscope as compared to how the word "roe" looked when you placed the slide on the stage. a) Describe what happened to the image as the total magnification was increased. In other words, how much of the specimen (the word roe) is visible at each level of magnification, 4x, 10x, and 40x?
Describe what you see through the microscope as compared to how the word "roe" looked when you placed the slide on the stage. a) Describe what happened to the image as the total magnification was increased. In other words, how much of the specimen (the word roe) is visible at each level of magnification, 4x, 10x, and 40x?
Question 1: Describe what you see through the microscope as compared to how the word "roe" looked when you placed the slide on the stage.
a) Describe what happened to the image as the total magnification was increased. In other words, how much of the specimen (the word roe) is visible at each level of magnification, 4x, 10x, and 40x?
Question 2: Given the images you have seen, please consider how it would be to need to find the red and white blood cells on this slide. List at least 3 observations for the blood slide. When discussing a specific image, make sure to note the Total Magnificiation (TM).
a) List another three observations below based on the bacterial slide images. Note the Total Magnification used when comparing blood and bacterial slides.
Transcribed Image Text:**Question 1: Microscopy Observation**
This image contains three microscope views displaying text and an unknown object at different magnifications.
1. **Left Image**:
- The text "oe" is visible, but upside down, likely due to the orientation effect of the microscope lenses.
- No specific magnification details are provided directly on this image.
2. **Top Right Image**:
- This view shows the letters "ao" under a 10x objective lens, giving a total magnification of 100x.
- The letters are more zoomed in compared to the left image, showcasing the increased magnification and detail.
3. **Bottom Right Image**:
- Observed under a 40x objective lens, resulting in a total magnification of 400x.
- The image displays an indistinct, shadowy shape with no discernible text, emphasizing how higher magnification can drastically change the view and clarity of the sample.
Each image highlights how different objective lenses alter the magnification and detail seen through the microscope.
Transcribed Image Text:**Question 2:**
The images display the microscopic examination of a human blood smear using Wright's stain. Various magnifications are used to observe the blood sample more closely, identifying different cellular components and bacteria present.
- **Slide Orientation:**
- The slide labeled "Human Blood smear Wright's, 313158, CAROLINA" shows its position when placed on the microscope stage.
- **Microscope Observations:**
1. **4x Objective (40x Total Magnification):**
- The blood smear appears broadly, providing an overview of the smear.
2. **10x Objective (100x Total Magnification):**
- A closer look at the sample with more detail visible than the lower magnification.
3. **40x Objective (400x Total Magnification):**
- Cells become more distinct, with individual cell shapes and details emerging.
4. **100x Objective (1000x Total Magnification):**
- At high magnification, fine details of the blood cells and any possible contaminants or dyes are visible, giving a detailed view of blood cell morphology.
5. **40x Objective (400x TM) - Cocci:**
- Highlights spherical bacteria (cocci), indicating bacterial presence.
6. **100x Objective (1000x Total Magnification) - Bacteria:**
- Provides a highly detailed view, showing "1000's of bacteria in this blot" with an annotation pointing to a "single bacteria," emphasizing the bacteria along with blood cells.
These images collectively allow for in-depth study of blood cell characteristics and any bacterial presence, valuable for educational purposes in understanding blood smear analysis.
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