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Fungi Multicellul ar Eukaryotic Heterotroph ic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellul ar Protist (Algae) Multicellular or Unicellular • Eukaryotic • Hetero or Autotrophic Eubacteria Unicellular Prokaryotic Autotrophic Plantae Multicellul ar Eukaryotic Autotrophic

Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

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Page 1: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Fungi

• Multicellular

• Eukaryotic

• Heterotrophic

Archaea

• Unicellular

• Prokaryotic

• Autotrophic

Animal

• Multicellular

• Eukaryotic

• Heterotrophic

Protist (Algae)

Multicellular or Unicellular

• Eukaryotic

• Hetero or Autotrophic

Eubacteria

• Unicellular

• Prokaryotic

• Autotrophic

Plantae

• Multicellular

• Eukaryotic

• Autotrophic

Page 3: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

How do we know something is LIVING?

Page 4: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

T

E

N

G

R

R

R

S

Page 5: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Transport

• Absorption and distribution of materials throughout an organism

• Ex. Oxygen and glucose moving through the bloodstream

• Ex. Plant roots pulling in minerals and water

Page 6: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Excretion

• Removal of cellular waste products from an organism

• Ex. Sweat (urea, water, salt)

• Ex. Urine

• Ex. Exhaling (Carbon dioxide)

Page 7: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Nutrition

• Obtaining materials from the environment and breaking them down for further use

• Ingestion: taking in food

• Digestion: Breaking it down

• Egestion: Releasing food waste

Page 8: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Growth

• An increase in cell size or number

Page 9: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Reproduction

• Production of new individuals

• Not necessary for an individual’s survival but is necessary for the species survival

Page 10: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Regulation

• Organism’s control and coordination of their internal environment as they react to the external environment

• Ex. Shiver to warm up

• Ex. Make insulin to lower blood sugar

Page 11: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Respiration

• When glucose is broken down in each cell to release ENERGY (ATP) and make it useable by the cell!

Page 12: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Synthesis

• When an organism builds bigger molecules from smaller ones

• Ex. Building proteins from amino acids

Page 13: Fungi Multicellular Eukaryotic Heterotrophic Archaea Unicellular Prokaryotic Autotrophic Animal Multicellular Eukaryotic Heterotrophic Protist (Algae)

Grrr…Nets!!!!!!