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Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis Chemosynthesis uses energy released...

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Photosynthesis Notes Biology Unit 05 Lesson 01
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Page 1: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Photosynthesis

Notes

Biology Unit 05 Lesson 01

Page 2: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Chemosynthesis

Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Organisms that carry out chemosynthesis are microbes (bacteria) that live far from the Sun, such as deep on the ocean floor.

Page 3: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Which Organisms Carry Out Photosynthesis?

Autotrophs such as plants and some protists

Page 4: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Photosynthesis

Photosynthesis is the cellular process in which autotrophs capture light energy and convert it to chemical energy (glucose) using carbon dioxide and water.

Page 5: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Equation for Photosynthesis

6CO2 + 6H2O + Light Energy C6H12O6 + 6O2

Carbon Dioxide + Water + Light Energy Glucose (sugar) + Oxygen

Page 6: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Reactants & Productsof Photosynthesis

REACTANTS PRODUCTS

Carbon Dioxide Glucose (sugar)

Water Oxygen

Light Energy

Page 7: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Where Does Photosynthesis Occur?

Chloroplasts

Contain chlorophyll in plant cells or autotrophs

Page 8: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Cellular respiration

What is it? the process in which organisms acquire energy

from food. (Release of chemical energy for cellular use.)

The chemical equation for respiration is: C6H12O6 + 6O2 6CO2 + 6H2O Glucose + Oxygen Carbon Dioxide + Water

Where does it occur? Starts in cytoplasm, finishes in Mitochondria, all cells

TWO parts Glycolysis, respiration/fermentation

Page 9: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

STEP 1: GlycolysisBreaks the glucose into two 3-carbon

sugars called pyruvate

Page 10: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Reactants & Productsof Photosynthesis and respiration

REACTANTS PRODUCTS

Phot

Resp

Page 11: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Light Dependent Reaction

Occurs in the thylakoid

Water is absorbed through roots.

Sunlight enters the chloroplast, causing H2O molecules to split.

O2 leaves as a waste product through the stomata.

NADP+ picks up the H+ ions (becoming NADPH) and moves them to the stroma for the light independent reaction (Calvin cycle).

Page 12: Photosynthesis Notes Biology Unit 05 Lesson 01. Chemosynthesis  Chemosynthesis uses energy released from chemical reactions to produce food for organisms.

Light Independent Reaction –Calvin Cycle

Carbon dioxide from the atmosphere enters

H+ breaks off from NADPH

NADP+ returns to the Light Dependent Reaction

Carbon dioxide becomes “fixed” with the H+ producing the glucose molecule C6H12O6.


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