Answer:
Answer: If all organisms that cany out photosynthesis disappeared, there would be no production of oxygen and food for other living organisms. This would disrupt the food chain, as plants provide food for herbivores and oxygen for respiration. Without plants, life on Earth would not be sustained.
Answer: The starch in potatoes comes from the glucose produced in the leaves during photosynthesis. Photosynthesis occurs in the leaves, where food is synthesised in the form of glucose. This glucose is then transported through the plant to the potato, where it is stored in the form of starch.
Answer: Yes, the broad and flat structure of leaves makes plants more efficient for photosynthesis. This shape increases the surface area, allowing more sunlight to be absorbed by the chlorophyll present in the leaves. It also helps in the exchange of gases through the stomata, thus enhancing the process of photosynthesis.
Answer:
X stands for Glucose.
Y stands for Oxygen.
Z stands for Water.
This represents respiration, where glucose and oxygen produce carbon dioxide, water, and energy.
(i) What idea might she be testing through this experiment?
Answer : Krishna is testing the role of sunlight in photosynthesis and plant growth.
(ii) What are the visible differences in plants in both the conditions?
Answer : The plant in sunlight will grow better, with greener leaves and more height.
(iii) According to you, leaves of which plants confirm the iodine test for the presence of starch?
Answer : The leaves of the plant in sunlight will confirm the presence of starch (turn blue-black with iodine).
(i) In which plant(s) in the above set-up(s) will starch be formed?
Answer : Starch will be formed in plant (a) (sunlight with carbon dioxide), as it has all requirements for photosynthesis (sunlight, water, carbon dioxide, and chlorophyll).
(ii) In which plant(s) in the above set-up(s) will starch not be formed?
Answer :
Starch will not be formed in:
Plant (b) (sunlight without carbon dioxide), due to lack of carbon dioxide.
Plant (c) (dark with carbon dioxide), due to lack of sunlight.
Plant (d) (dark without carbon dioxide), due to lack of both sunlight and carbon dioxide.
(iii) In which plant(s) in the above set-up(s) will oxygen be generated?
Answer : Oxygen will be generated in plant (a) (sunlight with carbon dioxide), as photosynthesis occurs, producing oxygen.
Answer :
Oxygen will not be generated in:
Answer :
What is she trying to find out?
How will she know if she is correct?
Answer :
Materials needed: Two similar plant twigs (e.g., balsam), two glass tumblers, water, red food coloring, thermometer, warm water (around 30°C), cold water (around 5°C), magnifying glass.
Procedure:
Observation: If the red color travels farther in the “Warm” tumbler’s plant, water transportation is quicker in warm conditions. If farther in the “Cold” tumbler, it’s quicker in cold conditions.
Conclusion: Warm conditions likely speed up water transport due to increased molecular activity and lower water viscosity.
Answer : Photosynthesis and respiration are interconnected processes that maintain the balance of gases in nature.
Photosynthesis: Plants use carbon dioxide and water to produce glucose and release oxygen. This provides food for plants and oxygen for all living beings.
Respiration: Plants and animals use glucose and oxygen to produce energy, releasing carbon dioxide and water.
Balance: Photosynthesis removes carbon dioxide from the air and adds oxygen, while respiration uses oxygen and releases carbon dioxide. This cycle keeps the levels of these gases stable.
Without photosynthesis, carbon dioxide would increase, and oxygen would decrease, harming life. Without respiration, plants and animals wouldn’t get energy for growth.
Together, these processes support life by ensuring food, energy, and a balanced atmosphere.
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