Lesson 3.3.4.1.1
3.3.4.1.1 Circulatory system, arteries, veins and capillaries Quiz: AQA Biology, Unit 3
20 questions
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Lesson 3.3.4.1.1, Circulatory system, arteries, veins and capillaries: 20 multiple choice questions for the AQA Biology (7402), Unit 3: Organisms exchange substances with their environment, written with Revision Ninja.
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The 20 questions
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Which vessel carries deoxygenated blood from the right ventricle to the lungs?
- The vena cava
- The pulmonary artery
- The aorta
- The pulmonary vein
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Which blood vessel carries oxygenated blood from the lungs to the left atrium?
- The pulmonary artery
- The vena cava
- The coronary artery
- The pulmonary vein
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Which vessels supply the heart muscle itself with oxygenated blood?
- The vena cava, which carries blood from the body to the right atrium.
- The pulmonary veins, which return blood from the lungs.
- The renal arteries, which branch from the aorta to supply the kidneys.
- The coronary arteries, which branch from the aorta.
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What is the structural feature of an artery that adapts it to carry blood at high pressure?
- A thick wall of cartilage with a large lumen and no elastic tissue.
- A thin wall with no elastic fibres and a very wide lumen.
- A wall made only of endothelium with valves at regular intervals.
- A thick muscular and elastic wall with a narrow lumen.
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What is the function of valves in veins?
- They increase the pressure of blood as it flows through the veins.
- They produce a pulse felt through the skin over the artery.
- They release oxygen from haemoglobin into the tissue fluid.
- They prevent backflow, maintaining a unidirectional flow of blood towards the heart.
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What is the structural feature of a capillary that makes it an effective exchange surface?
- It has a cellulose wall reinforced with lignin that prevents any exchange with tissues.
- It has a wall only one cell thick, with a narrow lumen that brings blood close to tissues.
- It has a thick muscular wall that prevents substances from leaving the blood plasma.
- It has a wide lumen with several cells in the wall to store and release oxygen.
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How is tissue fluid formed from the blood in a capillary bed?
- Co-transport with sodium ions removes water from the lumen into the cells of the wall.
- Hydrostatic pressure at the arterial end forces water and small solutes out through gaps between cells.
- Active transport moves red blood cells out of the capillary into the surrounding tissues.
- Osmosis draws large plasma proteins out of the capillary into the cells at the venous end.
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What happens to most of the tissue fluid at the venous end of a capillary bed?
- It stays in the tissues permanently, because the capillary walls become impermeable.
- All of it leaves the capillary and enters the arteries to be returned to the heart.
- Most of it is reabsorbed into the capillary, while the rest drains into the lymphatic system.
- It is converted into red blood cells by the cells in the surrounding tissue.
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Which feature of the coronary arteries is most relevant to the heart's blood supply?
- They carry deoxygenated blood from the body to the right atrium of the heart.
- They supply the heart wall, and blockage of them can cause a heart attack.
- They carry blood from the lungs back to the heart in a single pulse.
- They carry blood from the kidneys to the liver for filtration of toxins.
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Which feature of the circulation maintains a unidirectional flow of blood through the heart?
- The thin walls of the atria, which allow blood to move forwards by osmosis.
- The valves, which open and close in response to pressure changes during the cardiac cycle.
- The large diameter of the aorta, which pushes blood in one direction only.
- The coronary arteries, which contract to pump blood in a single direction.
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During ventricular systole, which valves are open and which are closed?
- The atrioventricular valves are open and the semilunar valves are closed.
- Both the atrioventricular valves and the semilunar valves are closed.
- Both the atrioventricular valves and the semilunar valves are open.
- The semilunar valves are open and the atrioventricular valves are closed.
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The pressure in the left ventricle rises rapidly, and the pressure in the aorta follows. Which event is taking place?
- Atrial systole, in which the atria contract and fill the ventricles with blood.
- Ventricular systole, in which the ventricle contracts and pumps blood into the aorta.
- Atrial diastole, in which the atria relax and draw in blood from the veins.
- Ventricular diastole, in which the ventricle relaxes and draws in blood from the atria.
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Why does the pressure in capillaries fall progressively along their length?
- The capillary walls become thicker along the length, which reduces the pressure in the lumen.
- The capillaries contain valves that stop the flow of blood, which reduces the pressure.
- Friction between the blood and the vessel walls reduces the pressure as blood flows along the capillary.
- The heart stops pumping blood once it reaches the capillaries, which reduces the pressure steadily.
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A student claims that veins have higher blood pressure than arteries, because they carry blood back to the heart. Evaluate this claim.
- The claim is wrong, because blood pressure falls as it moves through the circulation, so veins have lower pressure.
- The claim is correct, because the veins must push blood against gravity to return it to the heart.
- The claim is correct, because veins have thicker walls and a narrower lumen than arteries.
- The claim is partly correct, because veins have a higher pressure only during ventricular systole.
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Which chamber of the heart receives oxygenated blood from the pulmonary veins?
- The right ventricle
- The left ventricle
- The left atrium
- The right atrium
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Which vessel returns deoxygenated blood from the upper body to the right atrium?
- The renal vein, which drains the kidneys and enters the inferior vena cava.
- The superior vena cava
- The aorta, which carries oxygenated blood away from the left ventricle.
- The pulmonary artery, which leads from the right ventricle to the lungs.
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A person has a stroke volume of 70 cm^3 and a heart rate of 75 beats per minute. What is their cardiac output?
- 1050 cm^3 per minute
- 525 cm^3 per minute
- 5250 cm^3 per minute
- 52.5 cm^3 per minute
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Which description of atrial systole is correct?
- The ventricles contract and close the AV valves so that blood is forced into the aorta.
- The atria relax and draw in blood from the pulmonary veins while the semilunar valves are open.
- The semilunar valves close and the atria fill with blood that has returned from the aorta.
- The atria contract and push the remaining blood through the open AV valves into the ventricles.
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A student claims that all tissue fluid returns to the capillary at the arterial end. Evaluate this claim.
- The claim is right, because hydrostatic pressure is highest at the venous end, pushing fluid back into the capillary.
- The claim is partly right, because tissue fluid returns to the capillary only through the lymphatic system.
- The claim is right, because plasma proteins are absorbed at the arterial end by active transport.
- The claim is wrong, because most tissue fluid returns at the venous end, and the rest drains into lymph vessels.
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What is the main reason arteries show elastic recoil between heartbeats?
- Cartilage rings hold the artery open against the force of blood pressure at all times.
- Smooth muscle contracts continuously to pump blood through the artery without the heart.
- Semilunar valves close in the artery during diastole to hold the blood in the artery.
- Elastic fibres stretch when blood is pumped in and recoil to maintain pressure between heartbeats.
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