Biology
Respiration and Gas Transport
647 Questions
Respiration and gas transport deal with the physiological mechanisms of breathing, including the role of hemoglobin in oxygen transport and the removal of carbon dioxide from the blood. Questions cover both aerobic and anaerobic processes, along with related phenomena like altitude sickness. This human biology topic is a staple in the science sections of competitive tests.
Oxygen and hemoglobin transportAnaerobic respiration effectsCarbon dioxide removalAltitude sickness causesBreathing rate regulation
Respiration and Gas Transport Questions
A
Correct answer
Explanation
Oxygen makes up approximately 21% of Earth's atmosphere by volume, which is roughly 1/5th. Nitrogen is the main component at about 78%, with trace gases making up the remaining 1%.
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Because it is killing germs
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Because it always bubbles
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Because enzymes from broken skin cells cause it to decompose into water and oxygen
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Because contact with blood causes bubbles
A
Correct answer
Explanation
Hydrogen peroxide bubbles when applied to wounds because blood and cells contain the enzyme catalase, which rapidly breaks down H2O2 into water and oxygen gas. This bubbling is the visible release of oxygen, not the germ-killing action itself. The always bubbles option is too vague, and the contact with blood explanation is incomplete.
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Because it is killing germs
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Because it always bubbles
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Because enzymes from broken skin cells cause it to decompose into water and oxygen
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Because contact with blood causes bubbles
C
Correct answer
Explanation
Hydrogen peroxide bubbles when applied to wounds because the enzyme catalase, present in blood and damaged tissue cells, breaks down H2O2 into water and oxygen gas. This creates the visible bubbling. Options A and D are incorrect - the bubbles are not from 'killing germs' or merely from 'contact with blood.' Option B is false - it doesn't always bubble (intact skin has no catalase exposure).
D
Correct answer
Explanation
Exhaled air typically contains 15-19% oxygen, compared to 21% in inhaled air. This means roughly 75-90% of the original oxygen remains. Options A (77%), B (26%), and C (48%) are all incorrect values.
B
Correct answer
Explanation
Although the brain represents only about 2% of body weight, it consumes approximately 20% of the body's total oxygen supply due to its high metabolic rate. This disproportionate oxygen usage reflects the brain's intense energy demands for neural signaling and maintaining cellular functions. Options A (10%) is too low, while C (30%) and D (80%) are too high.
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4 to 6
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10 to 12
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1 to 3
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7 to 9
A
Correct answer
Explanation
Permanent brain damage typically begins after 4-6 minutes without oxygen, though some brain activity may persist slightly longer. This window is why immediate CPR and oxygenation are critical in cardiac arrest or drowning cases. The exact time varies by individual and temperature, but irreversible damage starts in this range.
B
Correct answer
Explanation
Exhaled air contains approximately 16-17% oxygen, which is about 77-80% of the 21% oxygen in inhaled air. This is because the lungs only extract about 4-5% of oxygen during breathing, leaving most of it unused. 0% is impossible since exhaled air still supports life, while 25% would imply more oxygen extraction than actually occurs.
B
Correct answer
Explanation
The human body continuously produces red blood cells in bone marrow, with trivia sources citing approximately 15 million per second. While scientific estimates vary (often cited as 2-6 million), the 15 million figure represents the dramatic scale of this continuous production and destruction cycle.
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14 million
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17 million
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16 million
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15 million
D
Correct answer
Explanation
The human body continuously produces and destroys red blood cells to maintain oxygen transport. About 15 million red blood cells are created and killed every second in a healthy adult. Options A, B, and C are close but incorrect values.
A
Correct answer
Explanation
When breathing out, the body does not extract all oxygen from inhaled air. About 16% oxygen remains in exhaled air since humans only absorb about 4-5% of the oxygen they inhale. The options seem confused - if this meant 77% of original oxygen (21% in air), that would be about 16% remaining.
B
Correct answer
Explanation
The lungs actually add oxygen to the blood, not remove it. During inhalation, oxygen enters the alveoli and diffuses into the bloodstream, while carbon dioxide (a waste product) is removed from the blood and exhaled. The lungs oxygenate blood.
A
Correct answer
Explanation
Despite representing only about 2% of body weight, the brain consumes approximately 20% of the body's total oxygen supply. This high demand reflects the brain's intense metabolic activity and its constant need for energy to maintain neural function.
A
Correct answer
Explanation
The brain accounts for approximately 2% of total body weight but consumes about 20% of the body's oxygen and blood supply. This disproportionate energy requirement reflects the brain's incredibly high metabolic rate needed to maintain neuronal activity, making it the most energy-hungry organ relative to its size.
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out of the lungs
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out of the blood
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into the lungs
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into the blood
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out of the lungs
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out of the blood
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into the lungs
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into the blood
B,C
Correct answer
Explanation
In gas exchange, carbon dioxide moves down its concentration gradient: from blood (higher CO2 concentration) into alveolar air (lower CO2 concentration), and then from lungs into the atmosphere. During exhalation, CO2 moves out of blood into lungs (option B), and during breathing, CO2 moves out of the lungs into the atmosphere (option C). This bidirectional movement is essential for removing CO2 waste from the body.