What Is The Main Energy Trapping Molecule In Plants?

The main energy trapping molecule in plants is water. This is because water is a very good conductor of electricity, and it can hold onto energy from the sun and other sources for a long time.

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What pigment traps the energy in photosynthesis?

The pigment trap in photosynthesis is the light-harvesting complex.

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How is the energy from sunlight trapped by a green plant?

The energy from sunlight is trapped by a green plant by the way that the plant’s photosynthesis works. The light energy is converted into chemical energy by the plant’s chloroplasts. This energy is then used to create organic molecules, which are then used to create new plants.

How does energy transformation happen in plants?

There is no one answer to this question as energy transformation in plants occurs in a variety of ways, depending on the plant and the environment. Some plants use sunlight to convert carbon dioxide into glucose, while others use water or carbon dioxide as a source of energy.

What is the main chemical compound that stores and releases energy?

The main chemical compound that stores and releases energy is hydrogen.

What is the main function of chloroplast in photosynthesis?

The chloroplast is the organelle that contains the chloroplasts, which are responsible for photosynthesis. Chloroplasts are responsible for the transfer of light energy from the sun to the plant’s cells, which in turn allows plants to produce oxygen.

What energy do power plants use?

The three main types of energy used in power plants are electricity, heat, and steam. Electricity is created when the sun’s rays hit the turbines and turn them on. Heat is created when the turbines turn and the energy is used to create steam. Steam is used to turn turbines again and create electricity.

What makes the chlorophyll a considered as the most important pigment in plant?

The chlorophyll is considered as the most important pigment in plant because it is responsible for the green color of plants.

What kind of energy is stored by green plants?

Green plants store energy in the form of carbohydrates, oxygen, water, and minerals.

What type of energy transformation takes place in photosynthesis?

Photosynthesis is the process that produces energy in plants by using light energy to break down carbon dioxide molecules into glucose and oxygen.

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What is the light trapping molecule in plants?

The light trapping molecule in plants is a molecule that helps to trap light energy in plants.

How chemical energy is formed from light energy during photosynthesis?

The energy in light is converted into chemical energy in the chloroplasts of photosynthetic cells.

What does chlorophyll do in plants?

Chlorophyll is responsible for the green color of plants. It is a pigment that is located in leaves and other parts of plants.

Which molecules are reactants in photosynthesis in plants?

Photosynthesis is a process in plants where light energy is converted into chemical energy in the form of water molecules and carbon dioxide.

What is the energy molecule found in plants?

The energy molecule found in plants is carbon dioxide.

What cell structures are most important to photosynthesis Why?

Photosynthesis is a process that occurs in the light-sensitive cells of plants and animals to produce food for the body. The light energy that stimulates photosynthesis is converted into chemical energy in the light-sensitive chloroplasts. This chemical energy is used to produce glucose from carbon dioxide and water.

How does chlorophyll absorb light energy?

Chlorophyll absorbs light energy in the visible and near-infrared range.

Which pigment is most important in the process of photosynthesis?

The most important pigment in photosynthesis is carbon dioxide.

What is the main function of chlorophyll a and b?

Chlorophyll a and b are responsible for photosynthesis, which is the process that produces energy from carbon dioxide and water.

What plants use to trap energy?

Some plants use to trap energy are leaves, branches, and flowers.

Which of these molecules completes the process of photosynthesis?

The light energy that stimulates photosynthesis is converted into chemical energy in the chloroplasts of the plant’s cells.

How do cells and plants get energy?

Plants use photosynthesis to convert light into energy.

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What wavelengths do plants absorb?

The visible and the invisible spectrum.

What is chlorophyll and its role in photosynthesis?

Chlorophyll is a pigment that helps plants produce energy from sunlight. It is found in green plants and some brown plants.

What organelle does photosynthesis occur in?

Photosynthesis occurs in the chloroplasts of photosynthetic cells.

Which of the following enables plants to trap energy from the sun?

A) A light bulbB) A solar panelC) A water dropletC) A water droplet

What do plants need to survive How do plants obtain energy?

Plants need to obtain energy from the sun and other environmental factors. Some plants use sunlight to photosynthesize, while others use water or air to do so.

What molecule that is created during photosynthesis provides energy for cellular processes?

The molecule that provides energy for cellular processes is light energy.

What energy transformation occurs in chloroplast?

The energy transformation in chloroplasts occurs through the use of light energy to produce chemical energy that can be used for photosynthesis.

How do plants produce energy?

Plants produce energy by photosynthesis, which is the process that makes organic matter from inorganic material.

How is chlorophyll formed in plants?

The process of photosynthesis begins with light energy converted into chemical energy in the leaves of an organism. This energy is used to break down carbon dioxide into water and carbon. Chlorophyll is a pigment that is produced when light energy hits a molecule of chloroplasts. The light energy hits the molecule of chloroplasts in a way that allows the light energy to pass through the cell’s membrane and into the cell’s interior. The light energy then stimulates the production of organic molecules from water and carbon.

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