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800 most-asked Class 11 & 12 (+1 / +2) questions across Physics, Chemistry, Maths and Biology — each with a model answer and the exact marking-scheme points examiners reward. Revise smart, walk in calm.

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BiologyClass 122 markseasy

Sexual Reproduction in Flowering Plants

Name the reproductive whorls of a flower and state their function.

Reveal model answer + marking points

The two reproductive whorls of a flower are the androecium and the gynoecium. The androecium is the male reproductive whorl made up of stamens; each stamen has an anther that produces pollen grains (which contain the male gametes). The gynoecium (pistil) is the female reproductive whorl made up of one or more carpels; each carpel has an ovary containing ovules (which contain the female gamete, the egg), a style and a stigma that receives the pollen.

Marking-scheme points

  • Androecium (stamens): male whorl, anther makes pollen grains
  • Gynoecium (carpels): female whorl, ovary contains ovules
  • Stigma receives pollen; ovule contains the egg
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BiologyClass 123 marksmedium

Sexual Reproduction in Flowering Plants

What is microsporogenesis? Describe the structure of a mature pollen grain.

Reveal model answer + marking points

Microsporogenesis is the process of formation of microspores (pollen grains) from a microspore mother cell (pollen mother cell) through meiosis; each diploid mother cell gives four haploid microspores arranged in a tetrad. A mature pollen grain has a two-layered wall: an outer hard exine made of sporopollenin (very resistant) with germ pores, and an inner thin intine of cellulose and pectin. Inside, a mature pollen grain is two-celled, having a larger vegetative cell (with food and a tube nucleus) and a smaller generative cell that later forms two male gametes.

Marking-scheme points

  • Microsporogenesis: microspore mother cell -> 4 haploid microspores (meiosis)
  • Pollen wall: outer exine (sporopollenin, with germ pores) and inner intine
  • Mature pollen is 2-celled: vegetative cell + generative cell
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BiologyClass 122 marksmedium

Sexual Reproduction in Flowering Plants

Describe the structure of a typical mature embryo sac (female gametophyte).

Reveal model answer + marking points

A typical mature embryo sac (female gametophyte) is 7-celled and 8-nucleate. At the micropylar end there is the egg apparatus consisting of one egg cell and two synergids (with special thickenings called filiform apparatus). At the chalazal end there are three antipodal cells. In the centre there is a large central cell containing two polar nuclei. Thus, although there are 8 nuclei, there are only 7 cells because the central cell has two nuclei.

Marking-scheme points

  • Embryo sac is 7-celled and 8-nucleate
  • Egg apparatus (1 egg + 2 synergids) at micropylar end; 3 antipodals at chalazal end
  • Central cell with 2 polar nuclei
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BiologyClass 122 markseasy

Sexual Reproduction in Flowering Plants

What is pollination? Distinguish between self-pollination and cross-pollination.

Reveal model answer + marking points

Pollination is the transfer of pollen grains from the anther to the stigma of a flower. Self-pollination (autogamy) is the transfer of pollen from the anther to the stigma of the same flower or another flower of the same plant; it maintains parental characters. Cross-pollination (allogamy) is the transfer of pollen to the stigma of a flower on a different plant of the same species; it brings about variation. Cross-pollination is carried out by agents such as wind, water, insects and birds.

Marking-scheme points

  • Pollination: transfer of pollen from anther to stigma
  • Self-pollination: within the same flower/plant (no variation)
  • Cross-pollination: between different plants (introduces variation)
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BiologyClass 123 marksmedium

Sexual Reproduction in Flowering Plants

What is double fertilization in angiosperms?

Reveal model answer + marking points

Double fertilization is a characteristic feature of flowering plants in which two fusion events take place inside the embryo sac using the two male gametes from one pollen tube. One male gamete fuses with the egg cell to form a diploid zygote; this is called syngamy (true fertilization). The other male gamete fuses with the two polar nuclei of the central cell to form a triploid (3n) primary endosperm nucleus; this is called triple fusion. Since two fusions (syngamy and triple fusion) occur, the process is called double fertilization.

Marking-scheme points

  • Two male gametes take part in two fusions
  • Syngamy: male gamete + egg -> diploid zygote
  • Triple fusion: male gamete + 2 polar nuclei -> triploid endosperm nucleus
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BiologyClass 122 marksmedium

Sexual Reproduction in Flowering Plants

State the post-fertilization changes that occur in a flower.

Reveal model answer + marking points

After fertilisation: (1) the zygote develops into the embryo; (2) the primary endosperm nucleus develops into the endosperm, which nourishes the developing embryo; (3) the ovule develops into the seed and its integuments harden into the seed coat; and (4) the ovary develops into the fruit and its wall becomes the pericarp. Other parts of the flower such as the petals, stamens, style and stigma usually wither and fall off.

Marking-scheme points

  • Zygote -> embryo; primary endosperm nucleus -> endosperm
  • Ovule -> seed (integuments -> seed coat)
  • Ovary -> fruit (ovary wall -> pericarp)
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BiologyClass 122 marksmedium

Sexual Reproduction in Flowering Plants

Define apomixis and polyembryony.

Reveal model answer + marking points

Apomixis is the formation of seeds without fertilisation; it is a form of asexual reproduction that mimics sexual reproduction (for example, in some species of grasses and Citrus). The seeds so formed are genetically identical to the parent. Polyembryony is the occurrence of more than one embryo in a single seed; it is commonly seen in Citrus and mango, where the extra embryos may develop from the cells of the nucellus.

Marking-scheme points

  • Apomixis: seed formation without fertilisation (asexual)
  • Apomictic seeds are genetically identical to the parent
  • Polyembryony: more than one embryo in a single seed (e.g. Citrus)
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BiologyClass 122 marksmedium

Sexual Reproduction in Flowering Plants

Why do many flowering plants have devices to promote cross-pollination? Name two such devices.

Reveal model answer + marking points

Many flowering plants have devices to encourage cross-pollination (outbreeding) because continued self-pollination leads to inbreeding depression, and cross-pollination introduces genetic variation, which is important for adaptation and evolution. Two such outbreeding devices are: (1) unisexuality - the male and female flowers are separate (or on separate plants), so self-pollination is not possible; and (2) different timing of maturation of the anther and the stigma (dichogamy - protandry or protogyny), so that they are not receptive at the same time. Another device is self-incompatibility.

Marking-scheme points

  • Prevent self-pollination to avoid inbreeding depression and promote variation
  • Unisexuality (separate male and female flowers)
  • Dichogamy (anther and stigma mature at different times); self-incompatibility
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BiologyClass 122 markseasy

Human Reproduction

Name the main parts of the human male reproductive system.

Reveal model answer + marking points

The human male reproductive system consists of: a pair of testes (the primary sex organs, which produce sperms and the male hormone testosterone), housed in the scrotum; a system of ducts, namely the epididymis, vas deferens, and urethra, that carry and store the sperms; and the accessory glands - the seminal vesicles, the prostate gland and the bulbourethral (Cowper's) glands - whose secretions form the seminal fluid. The penis is the copulatory organ.

Marking-scheme points

  • Testes (in scrotum): produce sperms and testosterone
  • Ducts: epididymis, vas deferens, urethra
  • Accessory glands: seminal vesicles, prostate, bulbourethral glands
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BiologyClass 122 markseasy

Human Reproduction

Name the main parts of the human female reproductive system.

Reveal model answer + marking points

The human female reproductive system consists of: a pair of ovaries (the primary sex organs, which produce ova/eggs and the hormones oestrogen and progesterone); a pair of oviducts (fallopian tubes), which carry the egg and are the usual site of fertilisation; the uterus (womb), where the embryo develops; the cervix, which connects the uterus to the vagina; and the vagina, which is the copulatory canal and birth canal.

Marking-scheme points

  • Ovaries: produce ova and hormones (oestrogen, progesterone)
  • Oviducts (fallopian tubes): site of fertilisation
  • Uterus (womb): development of the embryo; cervix and vagina
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BiologyClass 123 marksmedium

Human Reproduction

What is spermatogenesis? Briefly describe the process.

Reveal model answer + marking points

Spermatogenesis is the process of formation of sperms (spermatozoa) from the germ cells in the testes, which begins at puberty. The diploid spermatogonia multiply by mitosis and some enlarge to form primary spermatocytes (2n). Each primary spermatocyte undergoes the first meiotic division to form two haploid secondary spermatocytes, which then undergo the second meiotic division to form four haploid spermatids. The spermatids are transformed into mature sperms by a process called spermiogenesis. It is stimulated by the hormones FSH and testosterone.

Marking-scheme points

  • Formation of sperms from spermatogonia in the testes (at puberty)
  • Spermatogonia -> primary spermatocyte -> secondary spermatocyte (meiosis I) -> spermatids (meiosis II)
  • Spermatids mature into sperms (spermiogenesis); stimulated by FSH and testosterone
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BiologyClass 122 marksmedium

Human Reproduction

What is oogenesis? How does it differ from spermatogenesis in the number of gametes produced?

Reveal model answer + marking points

Oogenesis is the process of formation of the mature female gamete (ovum) from the germ cells in the ovary; it begins during the embryonic stage. An oogonium forms a primary oocyte, which undergoes the first meiotic division to form a secondary oocyte and a small first polar body; the second meiotic division (completed only after fertilisation) gives one large ovum and a second polar body. Thus, one primary oocyte forms only one functional ovum, whereas in spermatogenesis one primary spermatocyte forms four functional sperms.

Marking-scheme points

  • Oogenesis: formation of the ovum in the ovary (starts in the embryo)
  • Primary oocyte -> secondary oocyte + polar body -> ovum + polar body
  • One oocyte gives one ovum; one spermatocyte gives four sperms
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BiologyClass 122 markseasy

Human Reproduction

Describe the structure of a human sperm.

Reveal model answer + marking points

A human sperm is a microscopic, motile cell with three main parts: (1) a head, which contains the haploid nucleus and is capped by the acrosome (containing enzymes that help the sperm penetrate the egg); (2) a middle piece, which contains many mitochondria that provide the energy for movement; and (3) a tail (flagellum), which lashes to propel the sperm. A plasma membrane covers the whole body of the sperm.

Marking-scheme points

  • Head: haploid nucleus + acrosome (with enzymes to penetrate egg)
  • Middle piece: mitochondria (provide energy)
  • Tail (flagellum): for movement
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BiologyClass 123 marksmedium

Human Reproduction

Describe the phases of the human menstrual cycle.

Reveal model answer + marking points

The menstrual cycle is the cyclic change in the reproductive system of a human female, of about 28 days. Its phases are: (1) Menstrual phase (days 1-5) - the uterine lining breaks down and is shed as menstrual flow. (2) Follicular (proliferative) phase (days 6-13) - under FSH the ovarian follicle matures and the uterine lining is rebuilt, and oestrogen rises. (3) Ovulation (about day 14) - a surge of LH causes the release of the ovum from the ovary. (4) Luteal (secretory) phase (days 15-28) - the corpus luteum secretes progesterone, which maintains the uterine lining; if fertilisation does not occur, it degenerates and the next cycle begins.

Marking-scheme points

  • Menstrual phase: shedding of the uterine lining (days 1-5)
  • Follicular phase (FSH, oestrogen) then ovulation (LH surge, about day 14)
  • Luteal phase: corpus luteum secretes progesterone
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BiologyClass 122 marksmedium

Human Reproduction

What is fertilization and implantation in humans?

Reveal model answer + marking points

Fertilization is the fusion of a sperm with the ovum to form a diploid zygote; it normally takes place in the ampullary region of the fallopian tube. The zygote then undergoes repeated cell divisions (cleavage) as it moves down the tube to form a hollow ball of cells called the blastocyst. Implantation is the attachment and embedding of the blastocyst into the thick, prepared wall (endometrium) of the uterus, where the embryo then develops further.

Marking-scheme points

  • Fertilization: sperm + ovum -> zygote, in the fallopian tube (ampulla)
  • Zygote divides to form a blastocyst
  • Implantation: blastocyst embeds in the uterine wall (endometrium)
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BiologyClass 122 marksmedium

Human Reproduction

What is the placenta? State two of its functions.

Reveal model answer + marking points

The placenta is a special disc-shaped structure that connects the developing foetus (embryo) to the wall of the mother's uterus; it is formed from the tissues of both the foetus and the mother and is connected to the foetus by the umbilical cord. Functions: (1) it allows the exchange of materials - it supplies oxygen and nutrients from the mother to the foetus and removes carbon dioxide and wastes from the foetus; and (2) it acts as an endocrine gland, secreting hormones such as hCG, oestrogen and progesterone to maintain the pregnancy.

Marking-scheme points

  • Structure connecting the foetus to the uterine wall (via umbilical cord)
  • Exchange of nutrients, oxygen and wastes between mother and foetus
  • Secretes hormones (hCG, oestrogen, progesterone) to maintain pregnancy
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BiologyClass 122 marksmedium

Human Reproduction

State the role of oestrogen and progesterone in the female reproductive cycle.

Reveal model answer + marking points

Oestrogen is secreted mainly by the growing ovarian follicle; it stimulates the repair and thickening of the uterine lining after menstruation, develops secondary sexual characters, and (at high levels) triggers the LH surge that causes ovulation. Progesterone is secreted mainly by the corpus luteum after ovulation; it maintains and further thickens the uterine lining (endometrium) to prepare it for implantation and, along with other hormones, maintains pregnancy if fertilisation occurs.

Marking-scheme points

  • Oestrogen: repairs and thickens the uterine lining; secondary sexual characters
  • Oestrogen surge helps trigger ovulation (LH surge)
  • Progesterone (from corpus luteum): maintains the endometrium and pregnancy
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BiologyClass 122 markseasy

Reproductive Health

What is reproductive health? State two measures to achieve it.

Reveal model answer + marking points

Reproductive health means a total well-being in all aspects of reproduction - physical, emotional, behavioural and social. A reproductively healthy society is one whose people have physically and functionally normal reproductive organs and healthy attitudes towards reproduction. Two measures to achieve it are: (1) creating awareness through education about reproduction, safe practices and available facilities (for example the RCH - Reproductive and Child Health - programmes); and (2) providing medical facilities and care for pregnancy, contraception, birth control and treatment of sexually transmitted infections.

Marking-scheme points

  • Total well-being (physical, emotional, social) in reproduction
  • Awareness and education (RCH programmes)
  • Medical facilities for contraception, safe pregnancy and STI treatment
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BiologyClass 122 marksmedium

Reproductive Health

Name the different types of contraceptive methods.

Reveal model answer + marking points

Contraceptive methods are used to prevent unwanted pregnancy. The main types are: (1) natural methods, such as the rhythm method (periodic abstinence) and withdrawal; (2) barrier methods, such as condoms and diaphragms, which prevent the sperm and ovum from meeting; (3) intrauterine devices (IUDs), such as the copper-T; (4) hormonal methods, such as oral contraceptive pills; and (5) surgical methods (sterilisation), such as vasectomy in males and tubectomy in females. An ideal contraceptive should be safe, effective and reversible.

Marking-scheme points

  • Natural (rhythm, withdrawal) and barrier (condom, diaphragm) methods
  • IUDs (copper-T) and hormonal (oral pills)
  • Surgical sterilisation: vasectomy (male), tubectomy (female)
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BiologyClass 122 marksmedium

Reproductive Health

What are sexually transmitted diseases (STDs)? Give two examples and state how they can be prevented.

Reveal model answer + marking points

Sexually transmitted diseases (STDs), also called venereal diseases, are infections that are transmitted mainly through sexual contact. Examples include gonorrhoea, syphilis, genital herpes, hepatitis B and AIDS (caused by HIV). They can be prevented by: avoiding sexual contact with unknown or multiple partners, using condoms, avoiding sharing needles, and getting early diagnosis and complete treatment. Awareness and safe practices are the best prevention.

Marking-scheme points

  • Infections transmitted mainly by sexual contact
  • Examples: gonorrhoea, syphilis, AIDS (HIV), hepatitis B
  • Prevention: safe practices, use of condoms, early treatment
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