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Filter by Meaning Leaves are photosynthetic organs of the plant.
Photosynthetic plants generate energy from sunlight.
Light is a necessary component for photosynthetic organisms to grow.
The photosynthetic organisms use sunlight to make food.
Photosynthetic bacteria are able to convert sunlight into energy.
Photosynthetic organisms are the base of the food chain.
Artificial photosynthetic systems mimic the natural process of photosynthesis.
The photosynthetic process is how plants convert light energy into chemical energy.
Some types of photosynthetic bacteria are capable of converting nitrogen gas into a usable form for plants.
Photosynthetic bacteria use light as a source of energy.
The photosynthetic process is what makes Earth's atmosphere oxygen-rich, enabling the existence of many life forms.
Photosynthetic bacteria play a crucial role in the cycling of nutrients in aquatic ecosystems.
Photosynthetic activity decreases during the winter season.
Algae are known for their photosynthetic capabilities.
Scientists have been studying photosynthetic organisms for years in order to better understand the process.
Sunlight is essential for photosynthetic reactions to occur.
Photosynthetic pigments are responsible for the colors we see in many plants, including green, yellow, and red.
Photosynthetic organisms release oxygen into the atmosphere.
Light is the primary energy source for photosynthetic organisms.
Photosynthetic organisms such as algae are used in the production of biofuels.
Photosynthetic rates can vary depending on factors such as temperature and available nutrients.
Chloroplasts are organelles that play a role in photosynthetic activity.
The photosynthetic process is essential for the growth of plants.
The photosynthetic activity of the plant can be used to monitor the health of the environment.
The photosynthetic products of the plants are used as a source of energy by animals.
The photosynthetic pigments in the leaves can be used to track changes in the climate.
The photosynthetic process involves the conversion of light energy into chemical energy.
The photosynthetic reactions in the chloroplasts generate ATP molecules.
The photosynthetic efficiency of the plant can be improved by using artificial light sources.
The photosynthetic capacity of the ecosystem can be used to estimate the carbon cycle.
The photosynthetic rate of the plant depends on the availability of light and nutrients.
The photosynthetic machinery of the plant is highly sensitive to changes in light intensity.
The photosynthetic output of the phytoplankton can be used to predict changes in the food chain.
The photosynthetic efficiency of the crop can be improved by optimizing the use of water resources.
The photosynthetic organisms in the ocean are responsible for much of the oxygen we breathe.
The photosynthetic response of the plant to environmental stress can be measured using various techniques.
The photosynthetic output of the crop can be increased by using fertilizers.
The photosynthetic capacity of the plant can be affected by changes in the environment.
The photosynthetic pathways of the microorganisms can be used to produce biofuels.
The chloroplasts in the cells of the plant are photosynthetic.
The sea anemone has photosynthetic symbionts living inside its cells.
Photosynthetic organisms produce their own food using light energy.
The green plants in the garden are photosynthetic.
The coral reefs are built by photosynthetic organisms.
Photosynthetic organisms are essential to the Earth's carbon cycle and the production of oxygen.
Photosynthetic pigments such as chlorophyll capture light energy for use in photosynthesis.
The photosynthetic activity of plants varies depending on light intensity and temperature.
The phytoplankton in the ocean are photosynthetic and form the base of the marine food chain.
The microorganisms in the soil are not photosynthetic.
The photosynthetic process occurs in the thylakoid membranes of chloroplasts.
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