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Respiration in the water cycle is the process by which aquatic organisms release carbon dioxide into the water as a byproduct of their metabolic activities. This carbon dioxide can then be absorbed by aquatic plants for photosynthesis, completing the cycle of carbon and oxygen exchange in the aquatic environment.

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Caffeine can negatively impact the respiration of aquatic species by affecting their metabolic rates, disrupting their oxygen uptake processes, and causing respiratory distress. It can lead to decreased oxygen availability in water, which can be harmful to aquatic organisms relying on dissolved oxygen for respiration.

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Aquatic organisms respirate by extracting oxygen dissolved in water through their gills or body surface. The oxygen is then delivered to their cells, where it participates in cellular respiration to produce energy. Carbon dioxide, a byproduct of respiration, is released into the surrounding water.

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Branchial respiration is a type of respiration that occurs in aquatic animals through their gills. It involves the exchange of gases, such as oxygen and carbon dioxide, between the animal and the surrounding water. Gills are specialized structures that facilitate this gas exchange process in aquatic organisms.

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Having plenty of oxygen is crucial for supporting aerobic respiration in organisms, allowing them to produce energy efficiently. In aquatic environments, dissolved oxygen is essential for the survival of aquatic organisms like fish and other aquatic species.@RequestParam

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its uses gilles for respiration and they can only move by shooting water through their hinge and propelling forward

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Oxygen is essential for aquatic organisms to carry out respiration, a process necessary for their survival. In water, oxygen dissolves and is used by fish and other aquatic organisms to convert nutrients into energy. Without sufficient oxygen levels in the water, aquatic life can suffocate and die.

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Small fishes often like to hide among plants, so that larger fishes do not find and eat them.

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Dissolved oxygen in ocean water is crucial for the survival of marine life. It is used by fish and other aquatic organisms for respiration. Low levels of dissolved oxygen can lead to stress or death among marine organisms.

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The dissolved oxygen in water is essential for the survival of aquatic organisms as they rely on it for respiration. Adequate levels of dissolved oxygen support healthy ecosystems by promoting biodiversity and maintaining the overall balance of the aquatic environment. Monitoring and maintaining dissolved oxygen levels is crucial in preserving water quality and supporting aquatic life.

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Direct respiration is the process by which an organism exchanges gases with its environment without the use of specialized respiratory organs, such as lungs or gills. This type of respiration is common in many simple aquatic animals and allows for the direct diffusion of gases, such as oxygen and carbon dioxide, across the organism's body surface.

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Dissolved oxygen in water is essential for the survival of aquatic organisms like fish and plants. It is used by these organisms for respiration, which is the process of extracting energy from food. Low levels of dissolved oxygen can lead to stress or death in aquatic life.

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W.C ALLEE has written:

'CRITICAL EXAMINATION OF WINKLER'S METHOD FOR DETERMINING DISSOLVED OXYGEN IN RESPIRATION STUDIES WITH AQUATIC ANIMALS'

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Yes, octopuses need water to survive as they are aquatic animals that rely on water for respiration, movement, and maintaining their bodily functions.

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Plants that have air-filled spaces in their tissues are likely to be aquatic or semi-aquatic plants. These air spaces help the plant float in water and provide buoyancy, allowing them to access oxygen for underwater respiration. Examples include water lilies, water hyacinths, and pondweeds.

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In a pond ecosystem, oxygen is produced through photosynthesis by aquatic plants. This oxygen is used by aquatic organisms like fish for respiration. Decomposers in the pond break down organic matter, releasing nutrients and consuming oxygen in the process. This cycling of oxygen is vital for maintaining the balance of the pond ecosystem.

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The relationship between dissolved oxygen levels and temperature in aquatic environments is that as temperature increases, the amount of dissolved oxygen decreases. Warmer water holds less oxygen, while cooler water can hold more oxygen. This can impact the survival of aquatic organisms, as they rely on dissolved oxygen for respiration.

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Oxygen to Hydrilla plant is available through water, however, it needs O2 for respiration which is radially available as a byproduct of photosynthesis

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Breathing with gills is called aquatic respiration. Gills are specialized structures in aquatic organisms that allow for the exchange of oxygen and carbon dioxide in water.

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Dissolved oxygen is crucial for aquatic life as it is necessary for respiration in fish and other organisms. Its presence indicates the overall water quality of an ecosystem. Low levels of dissolved oxygen can lead to stress or death in aquatic organisms and impact the health of an aquatic environment.

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Aquatic plants primarily get their carbon dioxide from the surrounding water through a process called diffusion. Carbon dioxide dissolves in water, including freshwater and seawater, and is available for aquatic plants to use during photosynthesis. Additionally, carbon dioxide can also be present in the water from sources like respiration of organisms and decomposition of organic matter.

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Oxygen is recycled in an aquatic environment in much the same way as it is on land. Phytoplankton, diatoms, seaweeds, and other underwater autotrophs use the sun's light to perform photosynthesis and release some of the oxygen produced in this process as a waste product. That oxygen is breathed in by aquatic animals and these animals exhale carbon dioxide because of respiration, which is necessary in the photosynthesis process by the autotrophs.

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At night, photosynthesis ceases in aquatic plants, resulting in a decrease in oxygen production. At the same time, aquatic organisms continue to respire, consuming oxygen, which can lead to a decrease in dissolved oxygen levels in the water during the night.

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The oxygen in air dissolved in water is essential for aquatic organisms to perform respiration. It allows fish and other aquatic life to extract oxygen from the water to survive. Additionally, air in water can also contribute to the regulation of pH levels by buffering acids and bases.

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Waterborne pollutants can harm aquatic life by disrupting their physiological functions, such as respiration, reproduction, and growth. These pollutants can also accumulate in the tissues of aquatic organisms, leading to long-term health effects and even death. Additionally, waterborne pollutants can cause disruptions in the food chain, ultimately affecting the entire ecosystem.

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If dissolved oxygen in water decreases to zero, aquatic organisms that rely on oxygen for respiration will suffocate and die. This can lead to a decrease in biodiversity and potential harm to aquatic ecosystems. It can also indicate pollution or an imbalance in the ecosystem.

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Most animals produce carbon dioxide through a process called cellular respiration. During this process, cells break down glucose to obtain energy, releasing carbon dioxide as a byproduct. The carbon dioxide is then expelled from the body through respiration or other methods like diffusion in aquatic animals.

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The ocean is not aquatic, it is marine.

Aquatic is freshwater.

Marine is saltwater.

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Aquatic plants mainly absorb oxygen through their leaves and roots from the water around them. Oxygen dissolves into the water through surface exchange, allowing aquatic plants to take in the oxygen they need for respiration.

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Dissolved gases in the ocean are crucial for supporting marine life. Oxygen, for example, is essential for the respiration of aquatic organisms. Gases like carbon dioxide also play a role in regulating pH levels in the ocean, impacting marine ecosystems. Overall, the balance of dissolved gases in the ocean is key for sustaining life in aquatic environments.

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Aquatic animals.

most of the time they say aquatic wildlife, very few will say aquatic animals

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In water, carbon is primarily cycled through processes such as photosynthesis by aquatic plants and algae, absorption by marine organisms, and release through respiration and decomposition. Carbon dioxide is also exchanged between the atmosphere and water through diffusion and ocean-atmosphere interactions, contributing to the overall carbon cycle. This aquatic carbon cycle plays a crucial role in regulating carbon levels in both the water and atmospheric ecosystems.

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The ctenidia, also known as gills, are responsible for the exchange of oxygen and carbon dioxide in aquatic animals like mollusks. They play a crucial role in respiration by facilitating the uptake of oxygen from the water and the release of carbon dioxide.

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No. Aquatic plants do not have gills. Aquatic vertebrates, such as fish, have gills.

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An aquafarmer is another name for an aquaculturist - a person involved in aquaculture - the cultivation of aquatic produce such as aquatic plants, fish, and other aquatic animals.

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the aquatic is wetlands

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Marine is used as an adjective when it is describing something found in or produced by the sea. (Example: marine life, marine plants)

Aquatic is of or relating to water. (Example: aquatic sports, aquatic animals, aquatic plants)

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An aquatic bird is basically called an aquatic bird.

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An aquaculture is the cultivation of aquatic produce such as aquatic plants, fish, and other aquatic animals.

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The word aquatic means that something is related to water. There are aquatic animals that live in the water and aquatic sports which are activities performed in the water.

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Yes, because it can respire in water. This can be proved as to make bread people put yeast and that yeast can respire in water as batter has water. Respiration in yeast- C6H12O6----> C2H5OH + 2CO2 + Ethyl Alcohol/ethanol

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When oxygen dissolves in water, it forms oxygen molecules that are dispersed throughout the water. This process is known as oxygenation. The dissolved oxygen in water is essential for aquatic life to survive, as it is needed for respiration.

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There is aquatic vegetation.

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Elodea is an aquatic plant.

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Caecilians are always aquatic.

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life is not all aquatic some lives are terrestrial and others are aquatic

terrestrial- lives or grows on land

aquatic- lives or grows in water

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Aquatic animals are animals that live in water.

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Aquatic organisms.

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