Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile...

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Trashketball!

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2. The preserved remains or traces of an organism that lived in the past  A. species  B. fossil  C. ancestor  D. extinct

Transcript of Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile...

Page 1: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Trashketball!

Page 2: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

1. A group of similar organisms that can mate with each other and produce fertile offspring…

A. populations B. species C. fossils D. organisms

Page 3: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

2. The preserved remains or traces of an organism that lived in the past A. species B. fossil C. ancestor D. extinct

Page 4: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

3. Trait that helps an organism survive and reproduce A. variation B. mutation C. adaptation D. species

Page 5: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

4. Well-tested concept that explains a wide range of observations A. Theory B. Hypothesis C. Law D. Evidence

Page 6: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

5. Process by which individuals that are better adapted to the environment are more likely to survive and reproduce than others.

A. Evolution B. Speciation C. Overproduction D. Natural selection

Page 7: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

6. Species produce more offspring than can possibly survive A. Natural selection B. Overproduction C. Evolution D. Variation

Page 8: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

7. Any difference between individuals of the same species A. Adaptation B. Variation C. Differentiation D. Evolution

Page 9: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

8. Members of a species try to get limited food and resources A. selection B. competition C. natural selection D. predation

Page 10: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

9. Those with helpful traits survive to the next generation A. Adaptation B. Competition C. Variation D. Selection

Page 11: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Last question:10. Changes in a species over long periods of time is called A. adaptation B. evolution C. variation D. development

Page 12: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Another Question:How old will Miss Urbik be on her birthday tomorrow? Hold up a number!

Page 13: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Practice: What types of variations do you see in the first picture?

Page 14: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

What “selection” is going on?

Page 15: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Who is “most fit”?

Page 16: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

An overview of natural selection

Page 17: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Mouse Lab Wrap-Up How did this lab show natural selection?

What were the variations?

What was the “selection”?

Who was fit? Unfit?

What change did you see in the population?

Page 18: Trashketball!. 1. A group of similar organisms that can mate with each other and produce fertile offspring  A. populations  B. species  C. fossils.

Teddy Graham Wrap-Up How did this lab show natural selection?

What were the variations?

What was the “selection”?

Who was fit? Unfit?

What change did you see in the population?