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Concept explainers
a.
To determine: The change in
Introduction: Anatomical dead space is the volume of the air in the respiratory system in which no gaseous exchange takes place. It is the air being conducted through the air passage in the respiratory system.
b.
To define: The change in
Introduction: Dead space of the body can change due to different reasons. This change in the anatomical dead space also changes the amount of gases and other parameters of the blood. The maintenance of average anatomical dead space is important to keep the blood parameters within a healthy range.
c.
To define: The change in bicarbonate ion level of Marco’s arterial blood due to the increased anatomic dead space
Introduction: Blood has an optimum physiological ionic concentration. The change of other physiological conditions can change the concentration of different types of ions in the blood. A change in these ionic concentrations is totally dependent on physiological responses of the body towards different stimuli.
d.
To define: The change in the pH level of Marco’s arterial blood due to the increased anatomic dead space.
Introduction: Blood has an optimum pH level for proper functioning. Any deviation in this pH level of the blood can cause different physiological conditions. It may also affect the normal functioning of different biological systems in the body.
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Chapter 18 Solutions
Human Physiology: An Integrated Approach (8th Edition)
- 12. Calculate the area of a circle which has a radius of 1200 μm. Give your answer in mm² in scientific notation with the correct number of significant figures.arrow_forwardDescribe the image quality of the B.megaterium at 1000X before adding oil? What does adding oil do to the quality of the image?arrow_forwardWhich of the follwowing cells from this lab do you expect to have a nucleus and why or why not? Ceratium, Bacillus megaterium and Cheek epithelial cells?arrow_forward
- 14. If you determine there to be debris on your ocular lens, explain what is the best way to clean it off without damaging the lens?arrow_forward11. Write a simple formula for converting mm to μm when the number of mm's is known. Use the variable X to represent the number of mm's in your formula.arrow_forward13. When a smear containing cells is dried, the cells shrink due to the loss of water. What technique could you use to visualize and measure living cells without heat-fixing them? Hint: you did this technique in part I.arrow_forward
- 10. Write a simple formula for converting μm to mm when the number of μm's are known. Use the variable X to represent the number of um's in your formula.arrow_forward8. How many μm² is in one cm²; express the result in scientific notation. Show your calculations. 1 cm = 10 mm; 1 mm = 1000 μmarrow_forwardFind the dental formula and enter it in the following format: I3/3 C1/1 P4/4 M2/3 = 42 (this is not the correct number, just the correct format) Please be aware: the upper jaw is intact (all teeth are present). The bottom jaw/mandible is not intact. The front teeth should include 6 total rectangular teeth (3 on each side) and 2 total large triangular teeth (1 on each side).arrow_forward
- Answer iarrow_forwardAnswerarrow_forwardcalculate the questions showing the solution including variables,unit and equations all the questiosn below using the data a) B1, b) B2, c) hybrid rate constant (1) d) hybrid rate constant (2) e) t1/2,dist f) t1/2,elim g) k10 h) k12 i) k21 j) initial concentration (C0) k) central compartment volume (V1) l) steady-state volume (Vss) m) clearance (CL) AUC (0→10 min) using trapezoidal rule n) AUC (20→30 min) using trapezoidal rule o) AUCtail (AUC360→∞) p) total AUC (using short cut method) q) volume from AUC (VAUC)arrow_forward
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