Which cellular structure is common to all marine organisms, including animals, plants, and bacteria?
Cambridge IGCSE · Marine Science (0697)
Cell structure and function:练习题
5 道选择题即时批改,另有 5 道文字题附完整解题步骤,全部围绕「Cell structure and function」。
What is a key structural feature of a marine bacterial cell that distinguishes it from a typical marine animal or plant cell?
How does the presence of a cell wall in marine plants, such as seagrass, provide a survival advantage when the salinity of the surrounding sea water changes?
Which cellular organelle is characteristic of marine photosynthetic organisms like microalgae and macroalgae, and is essential for converting light energy into glucose?
Which statement accurately describes the cell boundary structures in a typical marine animal cell compared to a marine plant cell?
Identify the cellular organelle responsible for storing water, nutrients, and waste products in a marine plant cell.
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Compare the main difference in cell wall presence between a typical marine plant cell and an animal cell.
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Explain why a macroalga growing at the bottom of the sunlight zone might have a higher density of chloroplasts in its cells compared to an individual of the same species growing in shallow rock pools.
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Marine plant cells and marine animal cells share some common structures but also possess distinct differences.
(a) Identify two cellular structures found in a typical marine plant cell that are not present in a typical marine animal cell.
(b) Describe the primary function of the cell membrane in both marine plant and animal cells.
(c) Name one structure that is found in both marine plant and animal cells and state its function in energy production.
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Microscopes are essential tools for marine biologists to observe tiny organisms like diatoms and dinoflagellates.
(a) State the formula used to calculate magnification using the terms image size and actual size.
(b) A student captures a micrograph of a marine cell. The image size of the cell is \(60 \text{ mm}\) and the actual size of the cell is \(0.012 \text{ mm}\).
Calculate the magnification used. Show your working.
(c) State the actual size of the cell in micrometers (\(\mu\text{m}\)). (Note: \(1 \text{ mm} = 1000 \mu\text{m}\)).
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