EBK CAMPBELL BIOLOGY
10th Edition
ISBN: 9780136539414
Author: Reece
Publisher: VST
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Chapter 42.7, Problem 3CC
Summary Introduction
To explain: The purpose of using bicarbonate as a treatment in a patient with heavy breathing.
Concept introduction:
In the respiratory system, bicarbonate
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Charles' Law
Change the simulation to "Charles' Law" by clicking the tab at the top of the screen it will be shown in white. You should see
the picture below on your screen.
1. Which one of the three variables: Pressure, Volume or Temperature cannot be changed in Charles' Law? This varlable
is considered a constant.
1. a. Using the Temperature controls, increase the temperature of the gas. What changes do you observe in the behavlor
of the particles of the gas while the temperature is increased?
b. Continue to increase the temperature value until T, = 44K. Using the equation for Charles' law, calculate the volume of
the gas at this increased temperature. Check your final answer for part b by clicking the calculate button next to V2:
c. Based on the final value calculated in part b) is Charles' law considered a direct or an indirect relationship between the
variables? Explain your cholce with reasoning.
1.
2. Press the reset button at the top right of the screen.
Using the…
Chtmcies.
14 Your patient has been admitted to the emergency room with an occupational injury from an industrial saw. He has
lost a significant volume of blood. What effect has this blood loss likely had on his blood pressure, and why?
Chapter 42 Solutions
EBK CAMPBELL BIOLOGY
Ch. 42.1 - Prob. 1CCCh. 42.1 - Three-chambered hearts with incomplete septa were...Ch. 42.1 - Prob. 3CCCh. 42.2 - Explain why blood has a higher 02 concentration in...Ch. 42.2 - Prob. 2CCCh. 42.2 - Prob. 3CCCh. 42.3 - Prob. 1CCCh. 42.3 - Prob. 2CCCh. 42.3 - Prob. 3CCCh. 42.4 - Explain why a physician might order a white cell...
Ch. 42.4 - Prob. 2CCCh. 42.4 - Prob. 3CCCh. 42.4 - Prob. 4CCCh. 42.4 - Prob. 5CCCh. 42.5 - Why is an internal location for gas exchange...Ch. 42.5 - Prob. 2CCCh. 42.5 - MAKE CONNECTIONS Describe similarities in the...Ch. 42.6 - Prob. 1CCCh. 42.6 - Prob. 2CCCh. 42.6 - Prob. 3CCCh. 42.7 - Prob. 1CCCh. 42.7 - How does the Bohr shift help deliver O2 to very...Ch. 42.7 - Prob. 3CCCh. 42 - How does the flow of a fluid in a closed...Ch. 42 - Prob. 42.2CRCh. 42 - Prob. 42.3CRCh. 42 - Prob. 42.4CRCh. 42 - Prob. 42.5CRCh. 42 - How does air in the lungs differ from the fresh...Ch. 42 - How are the roles of a respiratory pigment and an...Ch. 42 - Prob. 1TYUCh. 42 - Blood returning to the mammalian heart in a...Ch. 42 - Prob. 3TYUCh. 42 - When you hold your breath, which of the following...Ch. 42 - Prob. 5TYUCh. 42 - Prob. 6TYUCh. 42 - Prob. 7TYUCh. 42 - DRAW IT Plot blood pressure against time for one...Ch. 42 - EVOLUTION CONNECTION One opponent of the movie...Ch. 42 - Prob. 10TYUCh. 42 - Prob. 11TYUCh. 42 - WRITE ABOUT A THEME: INTERACTIONS Some athletes...Ch. 42 - Prob. 13TYU
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- 5 Acid-base balance is regulated by a system of buffers. Which of the following statement is Correct? -The intracellular system mainly depends on potassium and sodium -The respiratory system can adjust PH within a few seconds -Plasma buffers takes only seconds to adjust the PH -The kidneys adjust through the excretion of hydrogen ions within minsarrow_forwardQ) Following an intensive course of chemotherapy, a 48-year-old woman had a thorough laboratory evaluation, selected results of which are: Hemoglobin 8 g/dL, hematocrit 32% Arterial blood gases: pH 7.38, Pa.CO₂ 42 mm Hg, bicarbonate 25 mEq/L, Pa.O2 62 mm Hg, O₂ saturation 92%. Given that the O2 binding capacity of hemoglobin is 1.34 ml/g, calculate the O2 capacity of her hemoglobin. A) 9.86 ml/dL B) 9.86 mm Hg C) 9.86 mEq/L D) 10.72 ml/dL E) 10.72 mEq/L Ans: D 6.11. Following an intensive course of chemotherapy, a 48-year-old woman had a thorough laboratory evaluation, selected results of which are: Hemoglobin 8 g/dL, hematocrit 32% Arterial blood gases: pH 7.38, Pa.CO₂ 42 mm Hg, bicarbonate 25 mEq/L, Pa.O₂ 64 mm Hg, O₂ saturation 92%. Given that the O2 binding capacity of hemoglobin is 1.34 ml/g, calculate the O2 content of her arterial hemoglobin. A) 9.86 ml/dL B) 9.86 mm Hg C) 9.86 mEq/L D) 10.72 ml/dL E) 10.72 mEq/L Ans: Aarrow_forward5. Anesthetic gases used in surgery are known to bind to the hemoglobin molecule in red blood cells. The diagram below illustrates O2 binding curves of normal human HbA in the presence of the anesthetic gas dichloromethane (DCM). O UNTREATED 100 a DCM 23 Tor • DCM 50 Torr x DCM 100 Torr Symbols: o, 0 Torr DCM; O, 23 Torr DCM A, 50 Torr DCM x, 100 Torr DCM. 80 40 (1 Torr = 1 mm Hg.) The solutions buffered to pH 7.4. 20 were 0.5 1.0 1.5 2.0 log po2 % OXYGENATIONarrow_forward
- . If someone's pH increases above 7.8, they die. How much would the % buffer have to shift from normal blood pH to endanger your patient's life? % buffer in the form of HCO, 25 50 75 100 Normal blood pH 7 17 Region of maximum buffering capacity pH 6 6 pK=6.1 15 4. 100 75 50 25 % buffer in the form of H2CO, and CO2arrow_forwardHand written plz Q5/ Using lumped parameters model method find the following: 1- Sketch a network for the system shown in the figure? 2- Drive the losses equations. 3- What is the source of the resistance in the lungs? Figure (2) CO₂, other gases Air Lungs Circulatory system Body Kidneys Heart + Ingestion (food, drink) kut Excretion ndigested food) Excretion (urine)arrow_forward1. When the pH increases, there is (more or less) CO2, so the lungs will (increase or decrease) the rate and depth of breathing. 2. When the pH increases, there is (more or less) H+, so the kidneys will (excrete or reabsorb) the H+ 3. When the pH increases, there is (more or less) HCO3-, so the kidneys will (excrete or reabsorb) the HCO3- 1. When the pH decreases, there is (more or less) CO2, so the lungs will (increase or decrease) the rate and depth of breathing. 2. When the pH decreases, there is (more or less) H+, so the kidneys will (excrete or reabsorb) the H+ 3. When the pH decreases, there is (more or less) HCO3-, so the kidneys will (excrete or reabsorb) the HCO3-arrow_forward
- Predict what will happen if a small amount of acid is added to the blood buffering system: H₂CO3 HCO3 + H+ The pH will go up from 7.4. The pH will be maintained because excess H* will be removed by the buffer. The pH will be maintained because more H* will be released by the buffer. The acid will increase the concentration of free hydroxide ions (OH-)arrow_forwardCompare and contrast Hb and Mb in terms of the following: • Physiological roles• Structures • O2 affinityarrow_forward5. Anesthetic gases used in surgery are known to bind to the hemoglobin molecule in red blood cells. The diagram below illustrates O2 binding curves of normal human HbA in the presence of the anesthetic gas dichloromethane (DCM). O UNTREATED 100 Symbols: a Dсм 23 Torr • DCM 50 Torr x DCM I00 Torr o, 0 Torr DCM; О, 23 Torr DСМ Д, 50 Torr DСМ x, 100 Torr DCM. 80 60 40 (1 Torr = 1 mm Hg.) 20 The solutions were buffered to pH 7.4. 0.5 1.0 1.5 2.0 log p02 For the curves at 0 and 100 Torr of dichloromethane, draw their equivalent in the form of (a) (* Hill plots. Label the axes and indicate on both the plot above and the Hill plot where the value of the dissociation equilibrium constant Kd for O2 binding is defined for 0 and 100 Torr of dichloromethane Kd Hb(O2)n nO2 Hb + Be sure to label the axes, indicate the units on both axes, and make the Hill plot so that the values of Kd are equivalent to those on the saturation plot above. Indicate whether cooperativity, as indicated by the Hill…arrow_forward
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