On Tuesday in class, my lab partner and I conducted an experiment to coincide with our current subject for notes, half-lives. During this lab, we had to cut out 567 squares out of paper given to us. These squares represented the number of atoms present. As we continued the experiment, we put all of the paper squares in a shoe box and shook them up. The squares that showed white were removed from the box and represented the decayed atoms. We did this another five times, going through six half-lives. After each half-life, we totaled up the number of decayed atoms and the number of radioactive atoms left to get our data for this experiment.
Showing posts with label Atomic Structure and Radioactivity. Show all posts
Showing posts with label Atomic Structure and Radioactivity. Show all posts
Thursday, October 1, 2015
Friday, September 25, 2015
Beanium lab
September 22, 2015
Today we conducted an experiment to identify the average atomic mass of a newly discovered element, beanium. To identify the atomic mass, the first step was to count up all the beans in the sample as well as how many there were in each type of bean. This information allowed us to calculate the average atomic mass by multiplying each isotope by its mass abundance and adding them together. [(mass)(% abundance)]+[(mass)(%abundance)]= average atomic mass
Today we conducted an experiment to identify the average atomic mass of a newly discovered element, beanium. To identify the atomic mass, the first step was to count up all the beans in the sample as well as how many there were in each type of bean. This information allowed us to calculate the average atomic mass by multiplying each isotope by its mass abundance and adding them together. [(mass)(% abundance)]+[(mass)(%abundance)]= average atomic mass
Thursday, September 24, 2015
Radioactive Decay
Today in class, the lecture was over some of the different types of radioactive decay. These decays included alpha particle decay, beta particle decay, and gamma decay. Although I have seen and heard about alpha, beta, and gamma, I did not know what they pertained to, or what they did. I now know that they are radioactive reactions going on inside elements that can change the mass or atomic number of an element, or in the case of a gamma decay, just release photons without changing the mass or atomic number. During an alpha decay, an element's mass lowers by four, and it's number of protons decreases by two. In the case of a beta particle decay, an element does not experience any change in it's mass, however, it does experience an increase of one proton. The forms in which these decays take are helium nucleus for an alpha decay, an electron for a beta decay, and energy for a gamma decay. These types of radioactive decay are a common occurrence in elements.
Friday, September 18, 2015
Atomic Theories
On Wednesday, we started taking notes for our unit over atomic structure and radioactivity. The notes were over atomic theories, specifically those created by Dalton, Rutherford, and Thompson. Dalton's theory includes the following statements: all elements are composed of atoms; all atoms of a given element are identical; atoms of different elements are different; compounds consist of the atoms of different elements; and atoms are indivisible and can't be created or destroyed in a chemical reaction. Rutherford's theory consisted of of atoms containing a small, dense region, or the nucleus, which contained molecules of a positive charge, also known as protons. Thompson's theory entailed that atoms contained negatively charged molecules, or electrons.
Unit 2 Pretest
On Tuesday we took our Pretest for our second unit in pre-AP chemistry, atomic structure and radioactivity. Based on the Pretest, I think this unit is going to be harder than the last. With the last Pretest I recognized some of the material; whereas, I didn't recognize almost any material for this unit.
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