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bio 203
| Question | Answer |
|---|---|
| Porfieria example, support type, nutrient aqusistion, transport adaptions | Sponges. spicules +spongin hydrostatic. Filter feeding, intracellular. Diffusion and water flow. No circulatory system |
| Cnidaria example, support type, nutrient aqusistion, transport adaptions | Jelly fish. Hydrostatic. Predatation . Diffusion Gastrovascular Cavity. No ciculatory |
| Mullusca example, support type, nutrient aqusistion, transport adaptions | Snails, clams. Exoskeleton. Radula, Extracellular Ingestion, Predatation. Gills/lungs, Open circulatory systems. |
| Annelida example, support type, nutrient aqusistion, transport adaptions | Earthworms. hydrostatic. Extracellular Ingestion, complete gut. Closed circulatory system |
| Plathelminthes example, support type, nutrient aqusistion, transport adaptions | flat worms. hydrostatic. Absorption Gastrovascular Cavity . Diffusion across body (tegument). |
| Arthropoda example, support type, nutrient aqusistion, transport adaptions | Insects, spider. Exoskeleton. Mandibules. Lungs/gills, Tracheal system, Open circulatory system. |
| Echindermota example, support type, nutrient aqusistion, transport, adaptions | Sea Stars. Endoskeleton. Extracelular and Intracellular Digestion. Water vascular system and diffusion. Open circulatory system |
| Chordata example, support type, nutrient aqusistion, transport adaptions | Dog, Human. Endoskeleton. Rumen vs non rumen Ingestion. lungs/gills. Closed circulatory system. |
| Nematoda example, support type, nutrient aqusistion, transport adaptions | Roundworms. Hydrostatic. Ingestion. Diffusion + Colem fluid in body cavity. No circulatory |
| K x A x (p1-p2)/D what do all of the letters stand for | K = Diffusion Constant, A = Area for gas exchange. P's = Difference in partial pressure of gas. D= Distance |
| What is Direct development | No larvae produced |
| What is indirect development | Several Larvae produced |