The Deepwater Horizon Oil Spill
/in Uncategorized /by adminThe Deepwater Horizon Oil Spill. The Deepwater Horizon Oil Spill
Assume that you work for Acme Industrial Hygiene Consultants and you are at an event conducting air samples. In your paper, you will discuss:
ď‚·ď€ What was going on during sampling?
ď‚·ď€ What was your sampling method?
ď‚·ď€ What are your results?
You are expected to use the AIHA Statistical Spreadsheet to assist you in analyzing the data. To access the spreadsheet please follow the following directions:
You will also need to discuss:
ď‚·ď€ The descriptive statistics for the dataset
ď‚·ď€ The number of samples above the OEL (if any)
ď‚·ď€ What the 95th percentile exposure level would be?
ď‚·ď€ What exposure category you would put the workers’ exposure into (e.g., 0, 1, 2, 3, or 4)?
You will find that each data set has a number of samples broken down into different activities. Assume that each activity would be a different SEG. Select 1 or 2 SEGs for the purpose of your analysis and report. If you choose to use the World Trade Center data, you can choose from either the Lower Manhattan Asbestos Data, or the Staten Island Asbestos Data. You can find the data at the following OSHA website: http://www.osha.gov/nycdisaster/wtc.html
APA rules for formatting, quoting, paraphrasing, citing, and listing of sources are to be followed.
1. Go to www.aiha.org.
2. Use the search box to search for “Exposure Assessment Strategies Committee.”
3. Click on “Exposure Assessment Strategies Committee.”
4. Scroll down and select “New IHSTAT Macro-Free Version.”
5. Once you have loaded the Excel document, make sure to click “Enable Editing” at the top of the spreadsheet.
6. Under the OEL section, insert the OEL for benzene or asbestos that you will use here.
7. Delete the existing data in the sheet, and enter the trailer sample dataset you choose.
8. As you populate the spreadsheet the statistics will calculate, and the graphs will begin forming the picture of the exposure profile of the trailers.
Focus on the potential benzene exposure. You will also need to select one SEG / task for the purpose of your research (e.g., boat operators, beach cleanup). The dataset is very large and you will want to keep your research focused to a manageable level. It would be acceptable to select a few of the SEGs for comparison. For example, you could compare the boat operator’s exposure to that of the beach cleanup crew.
You can find the data on the OSHA website at the following address:Â http://www.osha.gov/oilspills/index_sampling.html
You will find that the AIHA spreadsheet does not allow you to enter a “non-detect” value of zero (0). There are various substitution techniques for estimating distribution parameters from datasets containing censored data: each censored datum is replaced with the (1) LOD, (2) half of the LOD, (3) or LOD divided by the square root of 2. Simple substitution (just using the actual LOD) works well when the percentage of LOD values is small. See Unit VIII Study Guide for more information.
An example report is provided to give you an idea of how to properly develop a comprehensive written report. Your report does not have to follow this exactly; it is provided as an example only. However, your report should address all 7 items listed above for full credit.
Click here to access the sample report.
The Deepwater Horizon Oil Spill
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Mgmt Sci Thru Spreasheets
/in Uncategorized /by adminUMUC Biology 102 / 103 Lab 6: Taxonomy ANSWER KEY
/in Uncategorized /by adminUMUC Biology 102 / 103 Lab 6: Taxonomy ANSWER KEY. This contains 100% correct material for UMUC Biology 103 LAB06. However, this is an Answer Key, which means, you should put it in your own words. Here is a sample for the Pre lab questions answered:
Pre-Lab Questions
1. Use the following classifications to determine which organism is least related out of the three. Explain your rationale. (1 pts)
The Eastern Newt is the least related organism out of the three. While all three are classified into the same domain, kingdom, phylum and class the Eastern Newt is in a different order than the American Green Tree Frog and the European Fire-Bellied Toad.
2. How has DNA sequencing affected the science of classifying organisms? (1 pts)
DNA sequencing has allowed for the comparison of genes at the molecular level as opposed to physical traits at the organism level. Physical traits can be misleading when classifying how related two organisms are. DNA sequencing can also trace relatedness through generations and more accurately assess how closely related two organisms are.
3. You are on vacation and see an organism that you do not recognize. Discuss what possible steps you can take to classify it. (1 pts)
The organism’s physical features can be used to compare it to known organisms. Some physiological features can even possibly be used to help classify it.
The rest of the questions in the lab are answered as well:
Experiment 1: Dichotomous Key Practice
Data Tables and Post-Lab Assessment
Table 3: Dichotomous Key Results
Organism | Binomial Name |
i | Â
Selasphorus platycercus |
ii | Â
Mus musculus |
iii | Â
Vaccinium oxycoccos |
iv | Â
Ramphastos vitellinus |
v | Quercus abla |
vi | Â
Evathlus smithi |
vii | Â
Helix aspersa |
viii | Â
Taeniopygia guttata |
ix | Â
Lonicera japonica |
xi | Â
Oryctes nasicornis |
xii | Â
Taeniopyga guttata |
xiii | Â
Musa acuminata |
Seems like x was omitted, which would have been Carduelis tristis.
Â
Post-Lab Questions
1.    What do you notice about the options of each step as they go from number one up?
2.    How does your answer from Question 1 relate to the Linnaean classification system?
Â
Experiment 2: Classification of Organisms
Data Tables and Post-Lab Assessment
Table 2: Key Characteristics of Some Organisms
Organism | Kingdom | Defined Nucleus | Mobile | Cell Wall | Photosynthesis | Unicellular |
E. Coli | Â | Â | Â | Yes | Â | Yes |
Protozoa | Â | Yes | Yes | No | Â | Yes |
Mushroom | Â | Yes | Â | Yes | Â | Â |
Sunflower | Â | Yes | Yes | Yes | Yes | Â |
Bear | Â | Yes | Yes | Â | Â | Â |
Post-Lab Questions
1.    Did this series of questions correctly organize each organism? Why or why not?
2.    What additional questions would you ask to further categorize the items within the kingdoms (Hint: think about other organisms in the kingdom and what makes them different than the examples used here)?
3.    What questions would you have asked instead of the ones that you answered about when classifying the organisms?
Lab 6: Taxonomy
ANSWER KEY
Pre-Lab Questions
1. Use the following classifications to determine which organism is least related out of the three. Explain your rationale. (1 pts)
The Eastern Newt is the least related organism out of the three. While all three are classified into the same domain, kingdom, phylum and class the Eastern Newt is in a different order than the American Green Tree Frog and the European Fire-Bellied Toad.
2. How has DNA sequencing affected the science of classifying organisms? (1 pts)
DNA sequencing has allowed for the comparison of genes at the molecular level as opposed to physical traits at the organism level. Physical traits can be misleading when classifying how related two organisms are. DNA sequencing can also trace relatedness through generations and more accurately assess how closely related two organisms are.
3. You are on vacation and see an organism that you do not recognize. Discuss what possible steps you can take to classify it. (1 pts)
The organism’s physical features can be used to compare it to known organisms. Some physiological features can even possibly be used to help classify it.
Cla
Experiment 1: Dichotomous Key Practice Level American Green Tree
Fro  gÂ
European Fire-
Bellied Toadinomial Name
 Table 3: Dichotomous Key Results
(2 pts each)
Post-Lab Questions
1. What do you notice about the options of each step as they go from number one up. (1 pt)
The options become more and more specific.
2. How does your answer from question one relate to the Linnaean classification system? (1 pts)
The dichotomous key options became more and more specific as they came closer to identifying the organism just like the classification system starts as a broad category (i.e, animal kingdom) and becomes more specific until a unique species is classified (i.e., species).
Experiment 2: Classification of Organisms
The flow chart questions will lead you to the correct classification of the organisms into their respective kingdoms. Table 2, shown above, has an error in your lab manual–sunflowers do not have motility. Most of you saw the discrepancy and went with the answer you got from the flow chart. For the blanks in the completed table (above), that’s because those answers are variable, and not necessary to identify that organism using the given flow chart. (3 pts)
Post-Lab Questions
1. Did this series of questions correctly organize each organism? Why or why not? (2)
Yes. If the questions in the “tree” were answered correctly, each organism should end up in the correct kingdom.
2. What additional questions would you ask to further categorize the items within the domains and kingdoms (Hint: think about other organisms in the kingdom and what makes them different than the examples used here)? (2 pts)
Your answers will vary, but you should have brainstormed other organisms that belong to each domain or kingdom. For example, fish are also in the animal kingdom – how do fish differ from bears (gills instead of lungs, live in water, etc.)? What makes types of protists different from each other (shape, form of motion, etc.)?
3. What questions would you have asked of the ones that you answered about when classifying the organisms? (2 pts)
Answers will vary.
Example:
· Bacteria: Is it a membrane bound organelle?
· Fungi: Is it a yeast or mold?
· Plantae: Does it have a cell wall?
· Animalia: Is it multicellular?
· Protista: Is it a eukaryote, but, not an animal, plant, or fungi?
UMUC Biology 102 / 103 Lab 6: Taxonomy ANSWER KEY
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