1.  An earthquake and tsunami, Richter scale of 7, destroyed a small village near the epicenter in Indonesia. Families were separated, food became scarce and the land was too damaged for traveling between now divided landmasses. This situation prevails for an extended time period. Which of these speciation models more than likely will occur under these conditions? a. Sympatric b. Allopatric c. Peripatric d. Parapatric e. None of the above 2.  The Hardy–Weinberg theorem is an important mathematical proof because a. It demonstrates that dominant alleles are more common than recessive alleles. b. It demonstrates evolution. c. It demonstrates that a locus can have only one of two alleles. d. It demonstrates that in the absence of outside forces, allele frequencies of a population will not change from one generation to the next. e. It demonstrates that heterozygotes are always better.

Biology (MindTap Course List)
11th Edition
ISBN:9781337392938
Author:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Publisher:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Chapter20: Speciation And Macroevolution
Section: Chapter Questions
Problem 4TYU: The first step leading to allopatric speciation is (a) hybrid inviability (b) hybrid breakdown (c)...
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please help with these two questions:

1. 

An earthquake and tsunami, Richter scale of 7, destroyed a small village near the epicenter in Indonesia. Families were separated, food became scarce and the land was too damaged for traveling between now divided landmasses. This situation prevails for an extended time period. Which of these speciation models more than likely will occur under these conditions?

a.

Sympatric

b.

Allopatric

c.

Peripatric

d.

Parapatric

e.

None of the above

2. 

The Hardy–Weinberg theorem is an important mathematical proof because

a.

It demonstrates that dominant alleles are more common than recessive alleles.

b.

It demonstrates evolution.

c.

It demonstrates that a locus can have only one of two alleles.

d.
It demonstrates that in the absence of outside forces, allele frequencies of a population will not change from one generation to the next.
e.

It demonstrates that heterozygotes are always better.

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