Science Chapter - 16: Management of Natural Resources

1. What changes would you suggest in your home in order to be environment-friendly?

Answer: (i)Switch off the electrical appliances when not in use.
(ii)Turn the taps off while brushing or bathing and repair the leaking taps.
(iii)Throw biodegradable and non-biodegradable waste into separate bins.
(v)Food items such as jam, pickles, etc., come packed in plastic bottles. These bottles can later be used for storing things in the kitchen.

2. Can you suggest some changes in your school which would make it environment-friendly?

Answer: (i) Electricity can be saved by switching off lights and fans when not required.
(ii) Turn the taps off when not in use.
(iii) Biodegradable and non-biodegradable wastes should be thrown into separate bins.

3. We saw in this chapter that there are four main stakeholders when it comes to forests and wildlife. Which among these should have the authority to decide the management of forest produce? Why do you think so?

Answer: The forest department of the government should have the authority to decide the management of forest produces. This is because the forest department is the care taker of the forest land and is responsible for any damage to the forest.

4. How can you as an individual contribute or make a difference to the management of (a) forests and wildlife, (b) water resources and (c) coal and petroleum?

Answer: (a) Forest and wildlife:
(i) We should protest against deforestation.
(ii) We should protest against the poaching of wild animals.

(b) Water resources:
(i) Turn the taps off while brushing or bathing and repair leaking taps.
(ii) We should practice rainwater harvesting.
(iii) We should avoid the discharge of sewage and other wastes into rivers and other water resources.

(c) Coal and petroleum:
(i) We should take a bus or practice car pooling to avoid excessive use of petroleum.
(ii) We should reduce using coal as a fuel.
(iii)We should use alternative sources of energy such as hydro-energy and solar energy instead of depending largely on coal and petroleum.

5. What can you as an individual do to reduce your consumption of the various natural resources?

Answer: (i) We should stop the cutting of trees.
(ii) We should use recycled paper to reduce the cutting down of trees.
(iii) We should not waste water.
(iv) We should practice rainwater harvesting.
(v) We should practice car pooling to avoid the excessive use of petroleum.
(vi) We should use alternative sources of energy such as hydro-energy and solar energy.

6. List five things you have done over the last one week to −
(a) conserve our natural resources
(b) increase the pressure on our natural resources

Answer: Attempt Yourself.

7. On the basis of the issues raised in this chapter, what changes would you incorporate in your life-style in a move towards a sustainable use of our resources?

Answer: One should incorporate the following changes in life-style in a move towards a sustainable use of our resources:
(i) Stop cutting trees and practice plantation of trees.
(ii) Stop using plastic and polythene bags for carrying goods.
(iii) Use recycled paper.
(iv) Throw biodegradable and non-biodegradable waste into separate bins.
(v) Waste minimum amount of water while using and repair leaking taps.
(vi) Practice rainwater harvesting.
(vi) Avoid using vehicles for short distances.
(vi) Switch off electrical appliances when not in use.
(vii) Use CFL or LED bulbs to save electricity.
(viii) Take stairs and avoid using lifts.

Science Chapter -15: Our Environment

1. Which of the following groups contain only biodegradable items?
(a) Grass, flowers and leather
(b) Grass, wood and plastic
(c) Fruit-peels, cake and lime-juice
(d) Cake, wood and grass

Answer: (a), (c) and (d)

2. Which of the following constitute a food-chain?
(a) Grass, wheat and mango
(b) Grass, goat and human
(c) Goat, cow and elephant
(d) Grass, fish and goat

Answer: (b) Grass, goat, and human

3. Which of the following are environment-friendly practices?
(a) Carrying cloth-bags to put purchases in while shopping
(b) Switching off unnecessary lights and fans
(c) Walking to school instead of getting your mother to drop you on her scooter
(d) All of the above

Answer: (d) All of the above

4. What will happen if we kill all the organisms in one trophic level?

Answer: Various trophic levels are connected through the food chains. If all the organisms of any one trophic level are killed, then it will disrupt the entire food chain. For example, in a food chain, if all the plants are killed, then all the deer will die due to lack of food. If all the deer are dead, then soon the tigers will also die. Due to the death of these animals, the decomposer’s population will rise in that area. Food chain are interconnected in the form of food web. Therefore, killing all the plants of an area will not only affect the deer, it will also affect other herbivores such as goat, cattle, sheep, etc.

5. Will the impact of removing all the organisms in a trophic level be different for different trophic levels? Can the organisms of any trophic level be removed without causing any damage to the ecosystem?

Answer: Organisms of all trophic levels are equally important and are an integral part of the ecosystem. If all the producers are removed, then it will affect all the herbivores as it is their primary food source. Death of herbivores will soon affect the primary carnivores and so on. Thus, the balance in the ecosystem gets disturbed if any of its component organisms are removed.

6. What is biological magnification? Will the levels of this magnification be different at different levels of the ecosystem?

Answer: Bio-magnification is the increase in the concentration of pollutants or harmful chemicals within each step of the food chain. The levels of bio-magnification will be different at different trophic levels. It will increase with the increase in trophic level.

7. What are the problems caused by the non-biodegradable wastes that we generate?

Answer: Non-biodegradable substances affect the environment in the following ways:

(i) Since the non-biodegradable substances cannot be broken down, they get accumulated and thus contaminate the soil and the water resources.
(ii) These substances, when accidentally eaten by some stray animal, can harm them and can even cause their death.
(iii) These substances occupy more space in the landfills and require special disposal techniques.
(iv) These materials can accumulate in the environment and can also enter the food chain.

8. If all the waste we generate is biodegradable, will this have no impact on the environment?

Answer: Generation of only biodegradable waste will have a positive impact on the environment. There will not be any pollution caused by the non-biodegradable wastes. The problem associated with waste management and disposal will also not occur. The population of decomposers will increase to breakdown the extra biodegradable waste generated if we decompose the waste properly.

9. Why is damage to the ozone layer a cause for concern? What steps are being taken to limit this damage?

Answer: Ozone causes skin darkening, skin cancer, ageing, and corneal cataracts in human beings. It can result in the death of many phytoplanktons that leads to increased global warming.

To limit the damage to the ozone layer, the release of CFCs into the atmosphere must be reduced. CFCs used as refrigerants and in fire extinguishers should be replaced with environmentally-safe alternatives. Also, the release of CFCs through industrial activities should be controlled.

Science Chapter - 9: Heredity and Evolution

1. A Mendelian experiment consisted of breeding tall pea plants bearing violet flowers with short pea plants bearing white flowers. The progeny all bore violet flowers, but almost half of them were short. This suggests that the genetic make-up of the tall parent can be depicted as
(a) TTWW
(b) TTww
(c) TtWW
(d) TtWw

Answer: (c) TtWW

2. An example of homologous organs is
(a) our arm and a dog’s fore-leg.
(b) our teeth and an elephant’s tusks.
(c) potato and runners of grass.
(d) all of the above.

Answer: (b) our teeth and an elephant’s tusks.

3. In evolutionary terms, we have more in common with
(a) a Chinese school-boy.
(b) a chimpanzee.
(c) a spider.
(d) a bacterium.

Answer: (a) a Chinese school boy.

4. A study found that children with light-coloured eyes are likely to have parents with light-coloured eyes. On this basis, can we say anything about whether the light eye colour trait is dominant or recessive? Why or why not?

Answer: No, we cannot say weather light coloured eye is dominant trait or no bu the given information, because data to at least 3 generations are required to determine that. Here, data of only 2 generation is given.

5. How are the areas of study evolution and classification interlinked?

Answer: Classification involves grouping of organism into a formal system based on similarities in internal and external structure or evolutionary history. Two species are more closely related if they have more characteristics in common. And if two species are more closely related, then it means they have a more recent ancestor. With subsequent generations, the variations make organisms more different than their ancestors.

This clearly proves that we classify organisms according to their resemblance which is similar to creating an evolutionary tree.

6. Explain the terms analogous and homologous organs with examples.

Answer: Homologous organs are similar in origin but perform different functions. For example, the forelimbs of humans and the wings of birds look different externally but their skeletal structure is similar. It means that their origin is similar but functions are different, the wings help in flight whereas human forearm helps in various activities.

Analogous organs have different origin but perform similar functions. For example, the wings of a bird and a bat are similar in function but this similarity does not mean that these animals are more closely related. Wings of a bat are just the folds of skin that are stretched between its fingers whereas the wings of birds are present all along the arm.

7. Outline a project which aims to find the dominant coat colour in dogs.

Answer: Dogs have a variety of genes that determines coat colour. There are at least eleven identified gene series (A, B, C, D, E, F, G, M, P, S, T) that influence coat colour in dogs.

A dog inherits one gene from each of its parents. The dominant gene gets expressed in the phenotype. For example, in the B series, a dog can be genetically black or brown.

Let us assume that one parent is homozygous black (BB), while the other parent is homozygous brown (bb). Since black (B) is dominant, all the offsprings will be black. However, they will have both B and b alleles. If such heterozygous pups are crossed, they will produce 25% homozygous black (BB), 50% heterozygous black (Bb), and 25% homozygous brown (bb) offsprings.

8. Explain the importance of fossils in deciding evolutionary relationships.

Answer: They represent the ancestors of the plants and animals that are alive today. They provide evidences of evolution by revealing the characteristics of the past organisms and the changes that have occurred in these organisms to give rise to the present organisms. The fossils found closer to the surface of the earth are more recent ones than the fossils present in deeper layers.

9. What evidence do we have for the origin of life from inanimate matter?

Answer: A British scientist, J.B.S. Haldane, suggested that life originated from simple inorganic molecules. He believed that when the earth was formed, it was a hot gaseous mass containing elements such as nitrogen, oxygen, carbon, hydrogen, etc. These elements combined to form molecules like water, carbon dioxide, methane, ammonia, etc. After the formation of water, slowly the earth surface cooled and the inorganic molecules interacted with one another in water to form simple organic molecules such as sugars, fatty acids, amino acids, etc. The energy for these reactions was provided by solar radiations, lightning, volcanic eruptions, etc.

This was proved by the experiment of Stanley L. Miller and Harold C. Urey in 1953. They took a mixture of water, methane, ammonia, and hydrogen gas in a chamber and sparks were passed through this mixture using two electrodes. After one week, 15% of the carbon from methane was converted into amino acids, sugars, etc. These organic molecules are polymerized and assembled to form protein molecules that gave rise to life on earth.

10. Explain how sexual reproduction gives rise to more viable variations than asexual reproduction. How does this affect the evolution of those organisms that reproduce sexually?

Answer: In sexual reproduction, two individuals having different variations combine their DNA to give rise to a new individual. Therefore, sexual reproduction allows more variations, whereas in asexual reproduction, chance variations can only occur when the copying of DNA is not accurate. Moreover, asexual reproduction allows very less variations because if there are more variations, then the resultant DNA will not be able to survive inside the inherited cellular apparatus.

Variants help the species to survive in all the conditions. Environmental conditions such as heat, light, pests, and food availability can change suddenly at only one place. At that time, only those variants resistant to these conditions would be able to survive. This will slowly lead to the evolution of a better adapted species. Thus, variation helps in the evolution of sexually reproducing organisms.

11. How is the equal genetic contribution of male and female parents ensured in the progeny?

Answer: Females have two X chromosomes and males have one X and one Y chromosome. The gamete receives half of the chromosomes. Therefore, the male gametes have 22 autosomes and either X or Y chromosome. The female gamete, on the other hand, has 22 autosomes and X chromosome.

During reproduction, the male and female gametes fuse and thus the progeny receives 22 autosomes and one X or Y chromosome from male parent and 22 autosomes and one X chromosome from the female parent. Thus, equal contribution is ensured in the progeny.

12. Only variations that confer an advantage to an individual organism will survive in a population. Do you agree with this statement? Why or why not?

Answer: Yes, I agree with the statement that only variations that confer an advantage to an individual organism will survive in a population. All the variations do not have an equal chance of surviving in the environment in which they find themselves. The chances of surviving depend on the nature of variations. A bacteria that can withstand heat will survive better in a heat wave. Selection of variants by environmental factors forms the basis for revolutionary process.

Science Chapter - 8: How do organisms Reproduce?

1. Asexual reproduction takes place through budding in
(a) amoeba.
(b) yeast.
(c) plasmodium.
(d) leishmania.

Answer: (b) yeast.

2. Which of the following is not a part of the female reproductive system in human beings?
(a) Ovary
(b) Uterus
(c) Vas deferens
(d) Fallopian tube

Answer: (c) Vas deferens

3. The anther contains
(a) sepals.
(b) ovules.
(c) carpel.
(d) pollen grains.

Answer: (d) pollen grains.

4. What are the advantages of sexual reproduction over asexual reproduction?

Answer: Advantages of sexual reproduction over asexual reproduction are:

  1. In sexual reproduction, more variations are produced. Thus, it ensures survival of species in a population.
  2. The new formed individual has characteristics of both the parents.
  3. Variations are more viable in sexual mode than in asexual one. This is because in asexual reproduction, DNA has to function inside the inherited cellular apparatus.


5. What are the functions performed by the testis in human beings?

Answer: Functions of testes:

  1. Produce sperms
  2. Produce a hormone called testosterone, which brings about secondary sexual characters in boys.


6. Why does menstruation occur?

Answer: Menstruation occurs every month because one egg is released from the ovary every month and at the same time, the uterus prepares itself to receive the fertilized egg. Thus, the inner lining of the uterus gets thickened and is supplied with blood to nourish the embryo. If the egg does not get fertilised, then the lining of the uterus breaks down slowly and gets released in the form of blood and mucous from the vagina.

7. Draw a labelled diagram of the longitudinal section of a flower.

Answer: Check your textbook.

8. What are the different methods of contraception?

Answer: The contraceptive methods can be broadly divided into the following types:

Natural method - It involves avoiding the chances of meeting of sperms and ovum. In this method, the sexual act is avoided from day 10th to 17th of the menstrual cycle.
Barrier method - In this method, the fertilization of ovum and sperm is prevented with the help of physical barriers. Condoms are example of barriers for males.
Oral contraceptives - In this method, tablets or drugs are taken orally. These contain small doses of hormones that prevent the release of eggs and thus fertilization cannot occur.
Implants and surgical methods - Contraceptive devices such as the loop or Copper-T are placed in uterus to prevent pregnancy. Some surgical methods can also be used to block the gamete transfer. It includes the blocking of vas deferens in male or fallopian tubes in female

9. How are the modes for reproduction different in unicellular and multicellular organisms?

Answer: In unicellular organisms, reproduction occurs by the division of the entire cell. The modes of reproduction in unicellular organisms can be fission, budding, etc. whereas in multicellular organisms, specialised reproductive organs are present. Therefore, they can reproduce by complex reproductive methods such as vegetative propagation, spore formation, etc. In more complex multicellular organisms such as human beings and plants, the mode of reproduction is sexual reproduction.

10. How does reproduction help in providing stability to populations of species?

Answer: Living organisms reproduce for the continuation of a particular species. It helps in providing stability to the population of species by producing a new individual that resembles the parents. This is the reason why cats give birth to only cats or dogs give birth to only dogs. Therefore, reproduction provides stability to populations of dogs or cats or any other species.

11. What could be the reasons for adopting contraceptive methods?

Answer: Contraceptive methods are mainly adopted because of the following reasons:
  • To prevent unwanted pregnancies.
  • To control population rise or birth rate.
  • To prevent the transfer of sexually transmitted diseases.

Science Chapter - 7: Control and Coordination

1. Which of the following is a plant hormone?
(a) Insulin
(b) Thyroxin
(c) Oestrogen
(d) Cytokinin

Answer: (d) Cytokinin

2. The gap between two neurons is called a
(a) dendrite.
(b) synapse.
(c) axon.
(d) impulse.

Answer: (b) synapse.

3. The brain is responsible for
(a) thinking.
(b) regulating the heart beat.
(c) balancing the body.
(d) all of the above.

Answer: (d) all of the above

4. What is the function of receptors in our body? Think of situations where receptors do not work properly. What problems are likely to arise?

Answer: Functions of receptors:

(i) They sense the external stimuli such as heat or pain.
(ii) They also trigger an impulse in the sensory neuron which sends message to the spinal cord.

When the receptors are damaged, the external stimuli transferring signals to the brain are not felt. For example, in the case of damaged receptors, if we accidentally touch any hot object, then our hands might get burnt as damaged receptors cannot perceive the external stimuli of heat and pain.

5. Draw the structure of a neuron and explain its function.

Answer:

Neurons are the functional units of the nervous system. The three main parts of a neuron are axon, dendrite, and cell body.

6. How does phototropism occur in plants?

Answer: The growth movement in plants in response to light stimulus is known as phototropism.The shoots show positive phototropism and the roots show negative phototropism. This means that the shoots bend towards the source of light whereas the roots bend away from the light source.
Some examples of phototropism are as follows:
(a) The flower head of sunflower is positively phototropic and hence it moves from east to west along with the sun.
(b) The ovary stalk of groundnut is positively phototropic before fertilization and becomes negatively phototropic after fertilization, so that the fruit is formed underground.

7. Which signals will get disrupted in case of a spinal cord injury?

Answer: In case of any injury to the spinal cord, the signals coming from the nerves as well as the signals coming to the receptors will be disrupted.

8. How does chemical coordination occur in plants?

Answer: Coordination occurs in plant by a special class of chemical substances known as hormones. These hormones are produced in one part of the plant body and are trans-located to other needy parts. For example, a hormone produced in roots is trans-located to other parts when required. The five major types of hormone are auxins, gibberellins, cytokinins, abscisic acid, and ethylene. These hormones are either growth promoters or growth inhibitors such as abscisic acid.


9. What is the need for a system of control and coordination in an organism?

Answer: In the absence of Control and coordination, our body will not be able to function properly and we may harm our body seriously. For example, when we accidentally touch a hot utensil, we immediately withdraw our hand. In the absence of nerve transmission, we will not withdraw our hand and may get burnt.

10. How are involuntary actions and reflex actions different from each other?

Answer: Involuntary actions cannot be consciously controlled. For example, we cannot consciously control the movement of food in the alimentary canal. These actions are however directly under the control of the brain. On the other hand, the reflex actions such as closing of eyes immediately when bright light is focused show sudden response and do not involve any thinking. This means that unlike involuntary actions, the reflex actions are not under the control of brain.

11. Compare and contrast nervous and hormonal mechanisms for control and coordination in animals. 

Answer:

Nervous system mechanism Hormonal system mechanism
The information is conveyed in the form of electric impulse. The information is conveyed in the form of chemical messengers.
The axons and dendrites transmit the information through a coordinated effort The information is transmitted or transported through blood.
The flow of information is rapid and the response is quick. The information travels slowly and the response is slow.
Its effects are short lived. It has prolonged effects.

12. What is the difference between the manner in which movement takes place in a sensitive plant and the movement in our legs?

Answer:
Movement in sensitive plants
Movement in our legs
The movement that takes place in a sensitive plant such as Mimosa pudica occurs in response to touch (stimulus).
Movement in our legs is an example of voluntary actions.
For this movement, the information is transmitted from cell to cell by electro-chemical signals as plants do not have any specialized tissue for conduction of impulses.
The signal or messages for these actions are passed to the brain and hence are consciously controlled.
For this movement to occur, the plant cells change shape by changing the amount of water in them.
In animal muscle cells, some proteins are found which allow the movement to occur.

Science Chapter - 6: Life Processes

1. The kidneys in human beings are a part of the system for
(a) nutrition.
(b) respiration.
(c) excretion.
(d) transportation.

Answer: (c) excretion.

2. The xylem in plants are responsible for
(a) transport of water.
(b) transport of food.
(c) transport of amino acids.
(d) transport of oxygen.

Answer: (a) transport of water.

3. The autotrophic mode of nutrition requires
(a) carbon dioxide and water.
(b) chlorophyll.
(c) sunlight.
(d) all of the above.

Answer: (d) all of the above

4. The breakdown of pyruvate to give carbon dioxide, water and energy takes place in
(a) cytoplasm.
(b) mitochondria.
(c) chloroplast.
(d) nucleus.

Answer: (b) mitochondria.

5. How are fats digested in our bodies? Where does this process take place?

Answer: Fats are present in the form of large globules in the small intestine. The small intestine gets the secretions in the form of bile juice and pancreatic juice respectively from the liver and the pancreas. The bile salts break down the large fat globules into smaller globules so that the pancreatic enzymes can easily act on them. This is referred to as emulsification of fats. It takes place in the small intestine

6. What is the role of saliva in the digestion of food?

Answer: Saliva moistens the food for easy swallowing. It contains a digestive enzyme called salivary amylase, which breaks down starch into sugar.

7. What are the necessary conditions for autotrophic nutrition and what are its by-products?

Answer: Carbon dioxide, water, chlorophyll pigment, and sunlight are the necessary conditions required for autotrophic nutrition. Carbohydrates and Oxygen are the by-products of photosynthesis.

8. What are the differences between aerobic and anaerobic respiration? Name some organisms that use the anaerobic mode of respiration.

Answer:
Aerobic Respiration
Anaerobic Respiration
It occurs in presence of Oxygen.
It occurs in absence of Oxygen.
It occurs in cytoplasm and mitochondria.
It occurs only in cytoplasm.
It releases Carbon Dioxide and Water.
Released products vary.
It yields 36 ATPs.
It yields 2 AAPs.

Anaerobic respiration occurs in the roots of some waterlogged plants, some parasitic worms, animal muscles, and some micro-organisms such as yeasts.

9. How are the alveoli designed to maximise the exchange of gases?

Answers: The alveoli are the small balloon-like structures present in the lungs. The walls of the alveoli consist of extensive network of blood vessels. Each lung contains 300−350 million alveoli, making it a total of approximately 700 million in both the lungs. The alveolar surface when spread out covers about 80 meter square of area. This large surface area makes the gaseous exchange more efficient.

10. What would be the consequences of a deficiency of hemoglobin in our bodies?

Answer: Hemoglobin is the respiratory pigment that transports oxygen to the body cells for cellular respiration. Therefore, deficiency of hemoglobin in blood can affect the oxygen supplying capacity of blood. This can lead to deficiency of oxygen in the body cells. It can also lead to a disease called anemia.

11. Describe double circulation in human beings. Why is it necessary?

Answer: The human heart is divided into four chambers − the right atrium, the right ventricle, the left atrium, and the left ventricle.

Flow of blood in the human heart

  • The right atrium then contracts and passes the de-oxygenated blood to the right ventricle, through an auriculo-ventricular aperture.
  • Then the right ventricle contracts and passes the de-oxygenated blood into the two pulmonary arteries, which pumps it to the lungs where the blood becomes oxygenated. From the lungs, the pulmonary veins transport the oxygenated blood to the left atrium of the heart.
  • Then the left atrium contracts and through the auriculo-ventricular aperture, the oxygenated blood enters the left ventricle.
  • The blood passes to aorta from the left ventricle. The aorta gives rise to many arteries that distribute the oxygenated blood to all the regions of the body.

Therefore, the blood goes twice through the heart. This is known as double circulation.

Importance of double circulation:

The separation of oxygenated and de-oxygenated blood allows a more efficient supply of oxygen to the body cells. This efficient system of oxygen supply is very useful in warm-blooded animals such as human beings to maintain their body temperature. Hence, they require more oxygen for more respiration so that they can produce more energy to maintain their body temperature.

12. What are the differences between the transport of materials in xylem and phloem?

Answer:
Xylem
Phloem
Xylem helps in the transportation of water and minerals.
Phloem helps in the transportation of food.
Water is transported from roots to upward direction.
Food is transported from leaves to all the directions.
Transportation in xylem occurs with the help of simple physical forces like transpiration pull.
Transportation of food in phloem requires energy in the form of ATP.

13. Compare the functioning of alveoli in the lungs and nephrons in the kidneys with respect to their structure and functioning.

Answer: Structure -

Alveoli are tiny balloon-like structures present inside the lungs.The walls of the alveoli are one cell thick and it contains an extensive network of blood capillaries.

Nephrons are tubular structures present inside the kidneys.Nephrons are made of glomerulus, bowman’s capsule, and a long renal tube. It also contains a cluster of thin-walled capillaries.

Function -

The exchange of oxygen and carbon dioxide takes place between the blood of the capillaries that surround the alveoli and the gases present in the alveoli. Alveoli are the site of gaseous exchange.

Nephrons are the basic filtration unit. They filter the blood to remove harmful toxins of of the blood and forms urine.