| 8 | | Chemistry has always played a critical in modern astronomy. Before we knew about nuclear reactions, many astronomers |
| 9 | | and other scientists believed that the Sun was powered by chemical reactions and gravitational energy. However, both |
| 10 | | energy sources are woefully inadequate for powering the Sun over billions of years. While we now know that chemical energy plays no appreciable part in powering the Sun, we do know that the Sun consists of the same chemicals we find on Earth. Now, what is interesting about the chemical make-up of the Sun is how did it come to be that way. I will talk about the processes that go in to creating the chemical make-up of the Galaxy and how we can use the chemical signatures of stars to reveal the history of formation |
| 11 | | and evolution of the Galaxy. |
| | 8 | Chemistry has always played a critical role in modern astronomy. Before we knew about nuclear reactions, many astronomers and other scientists believed that the Sun was powered by chemical reactions and gravitational energy. However, both energy sources are woefully inadequate for powering the Sun over billions of years. While we now know that chemical energy plays no appreciable part in powering the Sun, we do know that the Sun consists of the same chemicals we find on Earth. How did the Sun come to have the chemicals it has? I will answer this question by explaining the processes that go in to creating the chemical make-up of our Milky Way Galaxy and how we can use the chemical signatures of stars to reveal the history of formation and evolution of the Milky Way. |