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Radioactive Dating Computer Lab Assignment

Radioactive Dating Computer Lab Assignment. Relative Dating Quiz. Relative Dating Quiz http://www.quia.com/quiz/4062926.html. Screenshot your final score here. 13 Points. Get online book here!!!!!. https://www.pearsonsuccessnet.com/ Login: Links Password: Geoscience5. 20 Points.

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Radioactive Dating Computer Lab Assignment

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  1. Radioactive Dating Computer Lab Assignment

  2. Relative Dating Quiz • Relative Dating Quizhttp://www.quia.com/quiz/4062926.html Screenshot your final score here 13 Points

  3. Get online book here!!!!! • https://www.pearsonsuccessnet.com/ • Login: Links • Password: Geoscience5

  4. 20 Points Turn to page 347 What is Radioactivity Don’t Know I know Think I know Would like to know • Scan pages 347-350 • Identify the vocab and place them in the categories to the right Screenshot when you get 5/5 on the quiz Click Me http://www.quia.com/cz/466653.html Click here for quia game. Screenshot results over this box.

  5. Radiocarbon Dating Movie Click Me 9 points Watch the movie above and click on the link below. Screenshot your answers over this box. http://www.quia.com/cz/466658.html

  6. 6 Points Click Me What is Half Life? • A. Half Life • Click the “Pause” button at the bottom of the window. • Click the “Add 10” button below the “Bucket o’ Atoms” repeatedly, until there are no more atoms left in the bucket. Predict how many of your 100 carbon 14 atoms are going to be left in the bucket after 5700 years The half life for Carbon-14 is 5700 years Prediction_____ Click play Hit Pause when the graph at top gets to the red line… screenshot that graph here with the pie chart….. Was your prediction accurate: YES or NO DESCRIBE WHAT HALF LIFE IS IN YOUR OWN WORDS HERE What percentage of carbon is left after 1 half life

  7. 8 Points Click Me Decay Rates • A. Decay Rates • Click the “Decay Rates” tab at the top of the screen. • On the right side of the screen, click the button next to Uraniam-238. This time we will watch the decay of this atom. Uranium-238 has a half-life of about 4.5 billion years. • On the bucket of atoms, there is a slider. Drag the slider all the way to the right and watch the graph at the bottom of the screen. After three half-lives (13.5 billion years), what percent of the original uranium remains? After one half-life (4.5 billion years), what percent of the original uranium remains? Percent here Percent Here Screenshot of graph at one half life Screenshot of graph at 2 half-lives After four half-lives (18 billion years), what percent of the original uranium would remain? After two half-lives (9 billion years), what percent of the original uranium remains? Percent Here Percent Here Screenshot of graph at 3 half-lives Screenshot of graph at 4 half-lives

  8. 7 Points SCREEN THE GRAPH HERE USE THE GRAPH TO ANSWER THE QUESTIONS BELOW Radioactive Measurement • Click the “Measurement” tab at the top of the screen. • Click “Plant Tree” at the bottom of the screen. The tree will grow and live for about 1200 years, then die and begin to decay. Let the time run and watch the graph at the top of the screen. • Click “Rock” on the right side of the screen. Click “Uranium-238” underneath “Probe Type” in the upper left of the screen. To measure longer times, we need to use an element that decays more slowly than C-14. http://www.quia.com/cz/466659.html Click on link above and answer the questions as the animation plays. Screenshot answers over this box. PREDICTIONS 1. Amount of Uranium at 4.5 billion years__________ ANSWER 2. Amount of Uranium at 9.0 billion years__________ • Click “Erupt Volcano” to begin the process of creating an igneous rock. SCREENSHOT GRAPH HERE ANSWER WERE YOUR PREDICTIONS RIGHT?

  9. D. Dating Game • Now that we understand radioactive decay and half-lives, we can use them to determine how old rocks or fossils are. • Click the “Dating Game” tab at the top of the screen. • You can drag the probe to different items on or below the surface of the earth. The probe tells you how much of the original element is still in the rock or fossil. You can measure C-14 or U-238, whichever works better for the item you are measuring. • You can use the graph to match the percent of element remaining, and then use the time shown to estimate the age of the rock or fossil. • Let’s do an example: • Drag the probe to the dead tree to the right of the house. • Look at the probe reading: it tells you that there is 97.4% of the original C-14 remaining in the dead tree. • Now find the green arrows on the graph at the top of the screen. Drag those arrows right or left until the top line tells you that the C-14 percentage is 97.4%, the reading from the probe. • When you get the graph to read 97.4%, it tells you that the time has been 229 years. • Type this number into the box for “Estimate age of dead tree” and click “Check Estimate”. • You should get a green smiley face, indicating that you have correctly figured out the age of the dead tree. 20 Points

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