ANATOMY & PHYSIOLOGY: AN INTEGRATIVE APP
3rd Edition
ISBN: 9781266163654
Author: McKinley
Publisher: MCG
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Textbook Question
Chapter 20.5, Problem 19WDL
How is the pressure gradient to move blood through the systemic circulation calculated? What is the significance of this pressure gradient?
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Chapter 20 Solutions
ANATOMY & PHYSIOLOGY: AN INTEGRATIVE APP
Ch. 20.1 - Prob. 1LOCh. 20.1 - Prob. 2LOCh. 20.1 - What are three differences in anatomic structure...Ch. 20.1 - Prob. 3LOCh. 20.1 - Prob. 2WDLCh. 20.1 - Prob. 4LOCh. 20.1 - Prob. 5LOCh. 20.1 - Prob. 6LOCh. 20.1 - What type of capillary is the most permeable, and...Ch. 20.1 - Prob. 7LO
Ch. 20.1 - Prob. 8LOCh. 20.1 - How does a vein serve as a blood reservoir?Ch. 20.1 - Prob. 9LOCh. 20.1 - Prob. 5WDLCh. 20.2 - Prob. 10LOCh. 20.2 - Prob. 11LOCh. 20.2 - In which type of vessel is blood flow the slowest?...Ch. 20.3 - Prob. 12LOCh. 20.3 - What substances are transported by diffusion...Ch. 20.3 - Prob. 13LOCh. 20.3 - Prob. 14LOCh. 20.3 - Prob. 8WDLCh. 20.3 - Prob. 15LOCh. 20.3 - Prob. 16LOCh. 20.3 - Prob. 1WDTCh. 20.3 - How does the hydrostatic pressure change from the...Ch. 20.3 - Which two pressures have the largest values?...Ch. 20.3 - Prob. 17LOCh. 20.3 - If these lymph vessels were nonfunctional, what...Ch. 20.4 - Prob. 18LOCh. 20.4 - Prob. 19LOCh. 20.4 - In what ways is angiogenesis stimulated in...Ch. 20.4 - Prob. 20LOCh. 20.4 - Prob. 13WDLCh. 20.4 - Prob. 21LOCh. 20.4 - Prob. 22LOCh. 20.4 - Prob. 23LOCh. 20.4 - What relationship exists between metabolic...Ch. 20.4 - Prob. 24LOCh. 20.4 - Prob. 15WDLCh. 20.5 - Prob. 25LOCh. 20.5 - Prob. 26LOCh. 20.5 - Prob. 27LOCh. 20.5 - Prob. 28LOCh. 20.5 - Prob. 16WDLCh. 20.5 - Prob. 17WDLCh. 20.5 - How is the small pressure gradient in veins...Ch. 20.5 - How is the pressure gradient to move blood through...Ch. 20.5 - Prob. 29LOCh. 20.5 - How is resistance defined?Ch. 20.5 - What are the three factors that alter resistance?...Ch. 20.5 - Prob. 30LOCh. 20.5 - Prob. 31LOCh. 20.5 - Prob. 22WDLCh. 20.6 - Prob. 32LOCh. 20.6 - LEARNING OBJECTIVE
33. Explain the autonomic...Ch. 20.6 - Prob. 2WDTCh. 20.6 - Prob. 23WDLCh. 20.6 - What is the initial change to blood pressure when...Ch. 20.6 - Prob. 34LOCh. 20.6 - Prob. 35LOCh. 20.6 - Prob. 36LOCh. 20.6 - Prob. 3WDTCh. 20.6 - Prob. 25WDLCh. 20.6 - Prob. 26WDLCh. 20.7 - Prob. 37LOCh. 20.7 - Which organs have an increased proportion of...Ch. 20.8 - Prob. 38LOCh. 20.8 - Prob. 28WDLCh. 20.8 - Prob. 39LOCh. 20.8 - Prob. 29WDLCh. 20.9 - Prob. 40LOCh. 20.9 - Prob. 30WDLCh. 20.9 - Prob. 41LOCh. 20.9 - Prob. 31WDLCh. 20.10 - Prob. 42LOCh. 20.10 - Prob. 43LOCh. 20.10 - LEARNING OBJECTIVE
44. Describe the general...Ch. 20.10 - Prob. 32WDLCh. 20.10 - Prob. 33WDLCh. 20.10 - Prob. 45LOCh. 20.10 - Prob. 46LOCh. 20.10 - Prob. 47LOCh. 20.10 - Prob. 34WDLCh. 20.10 - LEARNING OBJECTIVE
48. Describe the vessels that...Ch. 20.10 - What are the systemic arteries that supply...Ch. 20.10 - Prob. 49LOCh. 20.10 - Prob. 50LOCh. 20.10 - Prob. 51LOCh. 20.10 - Prob. 36WDLCh. 20.10 - Prob. 37WDLCh. 20.10 - Prob. 52LOCh. 20.10 - Prob. 53LOCh. 20.10 - Prob. 38WDLCh. 20.11 - LEARNING OBJECTIVE
54. Trace the arteries of the...Ch. 20.11 - Prob. 55LOCh. 20.11 - Prob. 4WDTCh. 20.11 - Prob. 39WDLCh. 20.11 - Prob. 40WDLCh. 20.11 - Prob. 56LOCh. 20.11 - LEARNING OBJECTIVE
57. Compare and contrast the...Ch. 20.11 - Prob. 41WDLCh. 20.11 - Prob. 42WDLCh. 20.12 - Prob. 58LOCh. 20.12 - List the five structures of fetal circulation, and...Ch. 20.12 - Prob. 59LOCh. 20.12 - Prob. 44WDLCh. 20 - Prob. 1DYBCh. 20 - _____ 2. Which statement is accurate about veins?...Ch. 20 - _____ 3. Vasa vasorum are found in the tunica...Ch. 20 - _____ 4. Which of the following decreases...Ch. 20 - 5. A(n) __________ is a type of vessel with the...Ch. 20 - _____ 6. An increase in _____ will result in an...Ch. 20 - Prob. 7DYBCh. 20 - _____ 8. Velocity of blood flow is the slowest in...Ch. 20 - _____ 9. Blood pressure is regulated by the a....Ch. 20 - _____ 10. Name the correct pathway that blood...Ch. 20 - Prob. 11DYBCh. 20 - Prob. 12DYBCh. 20 - Explain the difference between hydrostatic and...Ch. 20 - Write the formula for determining net filtration...Ch. 20 - Prob. 15DYBCh. 20 - Prob. 16DYBCh. 20 - Briefly explain how changes in cardiac output,...Ch. 20 - Compare how the cardiac center and vasomotor...Ch. 20 - Prob. 19DYBCh. 20 - What postnatal changes occur in the heart and...Ch. 20 - If a patient has cirrhosis of the liver and is...Ch. 20 - Prob. 2CALCh. 20 - Prob. 3CALCh. 20 - Prob. 4CALCh. 20 - Prob. 5CALCh. 20 - Prob. 1CSLCh. 20 - Arteries tend to have a lot of vascular...Ch. 20 - Explain why an overweight individual with high...
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- The aorta is the principal blood vessel through which blood leaves the heart in order to circulate around the body. (a) Calculate the average speed of the blood in the aorta if the flow rate is 5.0 L/min. The aorta has a radius of 10 mm. (b) Blood also flows through smaller blood vessels known as capillaries. When the rate of blood flow in the aorta is 5.0 L/min, the speed of blood in the capillaries is about 0.33 mm/s. Given that the average diameter of a capillary is 8.0 μm (1 μm = 1 X 10 –6 m), calculate the number of capillaries in the blood circulatory system.arrow_forwardDescribe the action potential of an autorhythmic cell in the heart.a) Indicate how the opening and closing of each ion channel affects the membrane potential of the cell.b) Provide one similarity between the action potential of an autorhythmic cell and the action potential of a neuron.c) Provide one difference between the action potential of an autorhythmic cell and the action potential of a neuron.arrow_forwardExamine one of the consequences of branching with a simple model shown in the figure. Assume that there are two blood-flow circuits, which are identical except that one of the circuits has a single vessel, whereas the other has two identical vessels in parallel. a.If the resistance of a single vessel is R, what is the overall resistance of the two vessels in parallel? b.If each of the circuits carries the same flow rate, which has the larger pressure drop? Comment on the result.arrow_forward
- The ST segment in the EKG is typically quiet and on the isoelectric line (like the T-P segment). What is happening during the ST segment in the EKG such that we see no waves? a) There is no electrical activity happening in the ventricles between the S and T waves b) The heart is relaxed and filling with blood c) The ST segment is representative of the plateau of the many ventricular action potentials happening at that point d) There is no longer Na+ influx during the ST segment so no waves are visible e) The ST segment is during ventricular repolarization and repolarization is not seen on the EKGarrow_forwardWhat term is used to describe normal, quite blood flow?arrow_forwardWhat is the only solute that has a significant concentration difference across the capillary wall? How does this difference influence water concentration?arrow_forward
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