Temperatures over North America suddenly cooled from 11,000 to 10,000 years ago, a period known as the ____________________ ____________________
Fill in the blank(s) with correct word
Younger Dryas
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What is one factor responsible for the problem of antibiotic resistance?
What will be an ideal response?
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
A population of beetles in which some individuals are blue and some individuals are green evolves by chance because more alleles of one color are transmitted to the next generation than alleles of the other color. This mechanism of evolution is known as
A. natural selection. B. mutation pressure. C. genetic drift. D. gene flow.
Outcomes of the Kyoto Conference of 1997 were that
A) all of the developed nations have significantly reduced GHG emissions. B) developing nations refused to sign the GHG protocol. C) the largest GHG emitters — India, China, and the United States — did not participate. D) Japan, Canada, and Russia met their GHG reduction pledges.