timeline of evolution

evolution of major life forms

Life on Earth began about 3.5 to 4 billion years ago. The first life forms were single-celled organisms similar to bacteria. These first life forms were, of course, very basic, and this then allowed for the evolution of more complex life forms. The first multicellular organisms did not appear until about 610 million years ago. Many different types of organisms evolved during the next ten million years, in an event called the Cambrian Explosion. This sudden burst of evolution may have been caused by some environmental changes that made the Earths environment more suitable for a wider variety of life forms. Plants and fungi did not appear until roughly 500 million years ago. They were soon followed by arthropods (insects and spiders). Next came the amphibians about 300 million years ago, followed by mammals around 200 million years ago and birds around 100 million years ago. Even though large life forms have been very successful on Earth, most of the life forms on Earth today are still prokaryotessmall, relatively simple single-celled organisms. As it is difficult to identify, observe and study such small forms of life, most of these organisms remain unknown to scientists. Advancing technologies, however, do allow for the identification and study of such organisms. Fossils indicate that many organisms that lived long ago are extinct. Extinction of species is common; in fact, it is estimated that 99% of the species that have ever lived on Earth no longer exist. The basic timeline of a 4.6 billion-year-old Earth includes the following: About 3.5 - 3.8 billion years of simple cells (prokaryotes). 3 billion years of photosynthesis. 2 billion years of complex cells (eukaryotes). 1 billion years of multicellular life. 600 million years of simple animals. 570 million years of arthropods (ancestors of insects, arachnids and crustaceans). 550 million years of complex animals. 500 million years of fish and proto-amphibians. 475 million years of land plants. 400 million years of insects and seeds. 360 million years of amphibians. 300 million years of reptiles. 200 million years of mammals. 150 million years of birds. 130 million years of flowers. 65 million years since the non-avian dinosaurs died out. 2.5 million years since the appearance of Homo. 200,000 years since the appearance of modern humans. 25,000 years since Neanderthals died out.

timeline of evolution

For life to evolve from simple single-celled organisms to many millions of species of prokaryotic species to simple eukaryotic species to all the protists, fungi, plants, and animals, took some time. Well over 3 billion years.

geologic time scale

Geologists and other Earth scientists use geologic time scales to describe when events happened in the history of Earth. The time scales can be used to show when both geologic events and events affecting plant and animal life occurred. The geologic time scale pictured below ( Figure 1.1) illustrates the timing of events like: Earthquakes. Volcanic eruptions. Major erosion. Meteorites hitting Earth. The first signs of life forms. Mass extinctions.

textbook_image

the age of earth

How old is Earth? How was it formed? How did life begin on Earth? These questions have fascinated scientists for centuries. During the 1800s, geologists, paleontologists, and naturalists found several forms of physical evidence that confirmed that Earth is very old. The evidence includes: Fossils of ancient sea life on dry land far from oceans. This supported the idea that the Earth changed over time and that some dry land today was once covered by oceans. The many layers of rock. When people realized that rock layers represent the order in which rocks and fossils appeared, they were able to trace the history of Earth and life on Earth. Indications that volcanic eruptions, earthquakes, and erosion that happened long ago shaped much of the Earths surface. This supported the idea of an older Earth. The Earth is at least as old as its oldest rocks. The oldest rock minerals found on Earth so far are crystals that are at least 4.404 billion years old. These tiny crystals were found in Australia. Likewise, Earth cannot be older than the solar system. The oldest possible age of Earth is 4.57 billion years old, the age of the solar system. Therefore, the age of Earth is between 4.4 and 4.57 billion years.

instructional diagrams

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questions

life on earth began about 3.5 to 4 million years ago.

a. true

-->  b. false

most life is made of small, relatively simple single-celled organisms.

-->  a. true

b. false

when did modern humans first appear?

a) 20,000,000 years ago

b) 2,000,000 years ago

-->  c) 200,000 years ago

d) 20,000 years ago

what were the first life forms?

a) single-celled organisms similar to protists

-->  b) single-cell organisms similar to bacteria

c) simple organisms similar to small water insects

d) simple organisms similar to small flies

the geologic time scale is used to describe events such as

a) mass extinctions and signs of life.

b) earthquakes and volcanic eruptions.

c) major erosion events and meteorites impacting earth.

-->  d) all of the above are shown on the geologic time scale.

evidence of an ancient earth includes

a) fossils found in rocks.

b) fossils of old life found high up in the mountains.

-->  c) fossils of ancient sea life on dry land far from oceans.

d) fossils of ancient fish found in the oceans.

the oldest the earth can be is

a) 4,400,000,000 years.

b) 44,570,000,000 years.

c) 457,000,000,000 years.

-->  d) 4,570,000,000 years.

diagram questions

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