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Teach Aquaculture Curriculum


Summary

Publications


Teach Aquaculture Curriculum: Anatomy of a Fish

Amber L. Garr, Cortney L. Ohs, Craig S. Kasper, R. Leroy Creswell, Frank A. Chapman, Brian E. Myers, Elisa J. Livengood, and Carlos V. Martinez

A UF/IFAS numbered Curriculum. Published by Aquaculture

Teach Aquaculture Curriculum: Chlorine—Friend or Foe?

Frank A. Chapman, Carlos V. Martinez, Cortney L. Ohs, Brian E. Myers, Eliza J. Livengood, Craig S. Kasper, Amber L. Garr, yR. LeRoy Creswell

Teach Aquaculture Curriculum: Dancing with Brine Shrimp

Elisa J. Livengood, Cortney L. Ohs, Amber L. Garr, R. Leroy Creswell, Carlos V. Martinez, Craig S. Kasper, Brian E. Myers, and Frank A. Chapman

Brine shrimp live in and are harvested primarily from natural salt lakes and solar salt operations around the world. Two natural sources of brine shrimp in the United States are the Great Salt Lake in Utah and San Francisco Bay in California. Adult brine shrimp are also called "sea monkeys" and are used for entertainment or to feed aquarium fish. Brine shrimp can be used to observe, control, and manipulate a life cycle under laboratory conditions during a period of less than 2 weeks. They can be

Teach Aquaculture Curriculum: Fish-Eating Contest

Frank A. Chapman, Amber L. Garr, Cortney L. Ohs, Brian E. Myers, Craig S. Kasper, R. LeRoy Creswell, Carlos V. Martinez, yEliza J. Livengood

There are numerous fish species cultured in the world. Fish are cultured in ponds, tanks, and cages. Some are fed floating, pelleted food and some consume live algae. The types of diets used in aquaculture have been developed specifically for the feeding strategies of the cultured animal. In this lesson, students will mimic fish with different mouth positions by adopting different feeding behaviors and by trying to capture marshmallows without the use of their hands.

Teach Aquaculture Curriculum: How big is that pond?

Frank A. Chapman, Cortney L. Ohs, Amber L. Garr, R. LeRoy Creswell, Carlos V. Martinez, Brian E. Myers, Craig S. Kasper, yEliza J. Livengood

This activity will provide examples of volume and area calculations of ponds of various types and shapes. The students will learn to calculate volumes and surface areas of ponds and use this information to calculate stocking densities and chemical application rates. Students will be able to make these calculations in both US and metric units. This activity has direct application to aquaculture, and these calculations are commonly used by federal and state agencies, private companies, engineers, toxicologists, and other people related to the aquatic sciences.

Teach Aquaculture Curriculum: Introduction

Cortney L. Ohs, R. Leroy Creswell, Amber L. Garr, Carlos V. Martinez, Brian E. Myers, Elisa J. Livengood, Craig S. Kasper, and Frank A. Chapman

Teach Aquaculture Curriculum: Spawning and Rearing Bivalve Molluscs—Larval Culture

R. Leroy Creswell, Cortney L. Ohs, Craig S. Kasper, Carlos V. Martinez, Elisa J. Livengood, Amber L. Garr, Frank A. Chapman, and Brian E. Myers

In this activity students will use an ocular micrometer to measure the length of bivalve larvae, monitor the density of larvae in their culture system, and understand production protocols used in bivalve hatcheries. This activity will take about 15 minutes per day for approximately two weeks; this is the amount of time it will take for larvae to develop from egg to metamorphosis (setting).

Teach Aquaculture Curriculum: Spawning and Rearing Bivalve Molluscs—Spawning

R. Leroy Creswell, Cortney L. Ohs, Craig S. Kasper, Elisa J. Livengood, Amber L. Garr, Brian E. Myers, Carlos V. Martinez, and Frank A. Chapman

Teach Aquaculture Curriculum: What makes a good fish food?

Craig S. Kasper, Cortney L. Ohs, Brian E. Myers, Frank A. Chapman, Amber L. Garr, R. Leroy Creswell, Carlos V. Martinez, and Elisa J. Livengood

Publications


Teach Aquaculture Curriculum: Anatomy of a Fish

Amber L. Garr, Cortney L. Ohs, Craig S. Kasper, R. Leroy Creswell, Frank A. Chapman, Brian E. Myers, Elisa J. Livengood, and Carlos V. Martinez

A UF/IFAS numbered Curriculum. Published by Aquaculture

Teach Aquaculture Curriculum: Chlorine—Friend or Foe?

Frank A. Chapman, Carlos V. Martinez, Cortney L. Ohs, Brian E. Myers, Eliza J. Livengood, Craig S. Kasper, Amber L. Garr, yR. LeRoy Creswell

Teach Aquaculture Curriculum: Dancing with Brine Shrimp

Elisa J. Livengood, Cortney L. Ohs, Amber L. Garr, R. Leroy Creswell, Carlos V. Martinez, Craig S. Kasper, Brian E. Myers, and Frank A. Chapman

Brine shrimp live in and are harvested primarily from natural salt lakes and solar salt operations around the world. Two natural sources of brine shrimp in the United States are the Great Salt Lake in Utah and San Francisco Bay in California. Adult brine shrimp are also called "sea monkeys" and are used for entertainment or to feed aquarium fish. Brine shrimp can be used to observe, control, and manipulate a life cycle under laboratory conditions during a period of less than 2 weeks. They can be

Teach Aquaculture Curriculum: Fish-Eating Contest

Frank A. Chapman, Amber L. Garr, Cortney L. Ohs, Brian E. Myers, Craig S. Kasper, R. LeRoy Creswell, Carlos V. Martinez, yEliza J. Livengood

There are numerous fish species cultured in the world. Fish are cultured in ponds, tanks, and cages. Some are fed floating, pelleted food and some consume live algae. The types of diets used in aquaculture have been developed specifically for the feeding strategies of the cultured animal. In this lesson, students will mimic fish with different mouth positions by adopting different feeding behaviors and by trying to capture marshmallows without the use of their hands.

Teach Aquaculture Curriculum: How big is that pond?

Frank A. Chapman, Cortney L. Ohs, Amber L. Garr, R. LeRoy Creswell, Carlos V. Martinez, Brian E. Myers, Craig S. Kasper, yEliza J. Livengood

This activity will provide examples of volume and area calculations of ponds of various types and shapes. The students will learn to calculate volumes and surface areas of ponds and use this information to calculate stocking densities and chemical application rates. Students will be able to make these calculations in both US and metric units. This activity has direct application to aquaculture, and these calculations are commonly used by federal and state agencies, private companies, engineers, toxicologists, and other people related to the aquatic sciences.

Teach Aquaculture Curriculum: Introduction

Cortney L. Ohs, R. Leroy Creswell, Amber L. Garr, Carlos V. Martinez, Brian E. Myers, Elisa J. Livengood, Craig S. Kasper, and Frank A. Chapman

Teach Aquaculture Curriculum: Spawning and Rearing Bivalve Molluscs—Larval Culture

R. Leroy Creswell, Cortney L. Ohs, Craig S. Kasper, Carlos V. Martinez, Elisa J. Livengood, Amber L. Garr, Frank A. Chapman, and Brian E. Myers

In this activity students will use an ocular micrometer to measure the length of bivalve larvae, monitor the density of larvae in their culture system, and understand production protocols used in bivalve hatcheries. This activity will take about 15 minutes per day for approximately two weeks; this is the amount of time it will take for larvae to develop from egg to metamorphosis (setting).

Teach Aquaculture Curriculum: Spawning and Rearing Bivalve Molluscs—Spawning

R. Leroy Creswell, Cortney L. Ohs, Craig S. Kasper, Elisa J. Livengood, Amber L. Garr, Brian E. Myers, Carlos V. Martinez, and Frank A. Chapman

Teach Aquaculture Curriculum: What makes a good fish food?

Craig S. Kasper, Cortney L. Ohs, Brian E. Myers, Frank A. Chapman, Amber L. Garr, R. Leroy Creswell, Carlos V. Martinez, and Elisa J. Livengood

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