Q.The valve that lies between the right atrium and the right ventricle of the human heart, and which prevents the backflow of blood into the atrium when the ventricle contracts, is the
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The Heart: A Muscle That Never Rests
Think of the heart as a double pump, working every second of your life without a single break. Its job is simple in purpose but clever in design: push blood to the lungs to pick up oxygen, then push that oxygen-rich blood to every cell in your body. The heart does both jobs at once, using two separate pumps that beat in perfect rhythm.
Why two pumps? Because blood needs to go through two loops. The first loop is short — from the heart to the lungs and back. The second loop is long — from the heart to the rest of the body and back. One pump handles the first loop, the other handles the second. And they are connected in sequence, so blood flows through one, then the other, without mixing.
The Four Chambers: Two Upstairs, Two Downstairs
The heart is divided into four chambers. The two upper chambers are called atria (singular: atrium). The two lower chambers are called ventricles. Think of the atria as receiving rooms — they collect blood coming into the heart. The ventricles are the powerful pumping rooms — they push blood out of the heart.
The right side and the left side are completely separated by a wall called the septum. This is critical: oxygen-poor blood never mixes with oxygen-rich blood.
The heart is myogenic — it generates its own electrical impulse to contract. It does not need a signal from the brain to beat. The pacemaker (SA node) in the right atrium sets the rhythm.
The Right Side: Receiving Deoxygenated Blood
Blood that has delivered oxygen to the body returns to the heart through two large veins: the superior vena cava (from the upper body) and the inferior vena cava (from the lower body). They empty into the right atrium.
When the right atrium contracts, blood flows through the tricuspid valve into the right ventricle. The tricuspid valve has three flaps and prevents blood from flowing backward into the atrium when the ventricle contracts.
The right ventricle then contracts, pushing blood through the pulmonary valve into the pulmonary artery, which carries it to the lungs. Here, carbon dioxide is exchanged for oxygen.
The Left Side: Receiving Oxygenated Blood
Oxygen-rich blood returns from the lungs through four pulmonary veins (two from each lung) into the left atrium.
When the left atrium contracts, blood passes through the bicuspid valve (also called the mitral valve — it has two flaps) into the left ventricle. This is the most muscular chamber because it must pump blood to the entire body.
The left ventricle contracts powerfully, forcing blood through the aortic valve into the aorta — the largest artery — which distributes blood to all organs.
The left ventricle wall is thicker than the right ventricle wall because it has to generate much higher pressure to push blood through the whole body. The right ventricle only pushes blood to the nearby lungs.
The Valves: One-Way Doors
Four valves keep blood flowing in one direction. Two are atrioventricular (AV) valves between atria and ventricles:
- Tricuspid valve (right side)
- Bicuspid/mitral valve (left side)
Two are semilunar valves at the exits of the ventricles:
- Pulmonary valve (right ventricle → pulmonary artery)
- Aortic valve (left ventricle → aorta)
When a ventricle contracts, the AV valves snap shut to prevent backflow into the atria. When a ventricle relaxes, the semilunar valves close to prevent blood from flowing back into the ventricles from the arteries.
A common mistake: thinking the heart pumps blood to the lungs from the left side. No — the right ventricle sends blood to the lungs. The left ventricle sends blood to the body.
The Flow in One Sentence
Here is the entire path, from start to finish: …
The tricuspid valve, with three cusps, guards the right atrium-right ventricle op …
Step 1. The question asks specifically for the valve between the right atrium and right ventricle.
Step 2. This valve has three flap-like cusps and is therefore named the tricuspid valve. …
Match 'right atrium to right ventricle' directly to the valve named for its thr …
- Confusing the tricuspid valve (right side) with the bicuspid/mitral valve (left side). …
- CBSE 2026Set ANNUAL1 markMCQQ.The valve present between right auricle and right ventricle is(a) Bicuspid valve(b) Tricuspid valve(c) Semilunar valve(d) None of these
›Reveal solutionSolution
The tricuspid valve lies between the right atrium and right ventricle and prevents backflow of blood.
The mammalian (and human) heart has two atrioventricular valves that ensure one-way flow of blood from atria to ventricles: the tricuspid valve (three flaps/cusps) guards the right atrioventricular opening, between the right auricle and right ventricle, while the bicuspid (mitral) valve, with two cusps, guards the left atrioventricular opening between the left auricle and left ventricle.
…
- CBSE 2026Set ANNUAL1 markMCQQ.Which part of the heart has the thickest muscular wall ?(a) Right atrium(b) Left atrium(c) Right ventricle(d) Left ventricle
›Reveal solutionSolution
The left ventricle has the thickest wall, so the answer is (D).
The thickness of a heart chamber's wall matches how hard it must pump:
- Atria have thin walls (they only push blood into the ventricles).
- The right ventricle pumps blood only to the nearby lungs (low pressure), so its wall is moderately thick. …
- CBSE 2024Set ANNUAL1 markMCQQ.Heart is protected by a double walled membranous bag called(a)(a) Pleural membrane(b)(b) Pericardium(c)(c) Renal capsule(d)(d) Meninges
›Reveal solutionSolution
[!TLDR]
(b) Pericardium
Why
The pericardium is the double-layered membranous sac that encloses and protects the heart, with pericardial fluid b …
- CBSE 2023Set ANN1 markQ.The double walled membrane that protects the heart is ________.
›Reveal solutionSolution
The heart is enclosed within a double-walled membranous sac called the pericardium, which protects it and reduces friction during contraction.
…
- CBSE 2023Set ANNUAL1 markMCQQ.How many chambers are there in the heart of human?(a) two(b) three(c) four(d) five
›Reveal solutionSolution
The human heart has four chambers.
The human heart is four-chambered: two upper atria and two lower ventricles. This complete separation keeps oxygenated and deoxygenated blood apart (double circulation). So the heart has four …
- CBSE 2020Set ANNUAL1 markMCQQ.Right atrium recives blood from :(a) Pulmonary aetery(b) Pulmonary vein(c) Inferior and superior vena cava(d) Aorta
›Reveal solutionSolution
The right atrium receives deoxygenated blood returning from the whole body via the superior vena cava (from the upper body) and the inferior vena cava (from the lower body).
In the human double circulatory system, deoxygenated blood collected from all body tissues drains into two great veins -- the superior vena cava (draining the head, neck, and upper limbs) and the inferior vena cava (draining the abdomen and lower limbs) -- both of which empty into the right atrium. From there, blood passes through the tricuspid valve into the right ventricle, and on to the lungs via the pulmonary artery for oxygenation.
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