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Blood grouping
Student’s name
Professor’s name
3rd October, 2018
1. What blood group is shown on this diagram?...
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PROPERTIES THAT DISTINGUISH ORGANIC FROM INORGANIC COMPOUNDS
Organic compounds are unstable. They are combustible, with many having no sharp melting points, decomposing, and char ...
PROPERTIES THAT DISTINGUISH ORGANIC FROM INORGANIC COMPOUNDS
Organic compounds are unstable. They are combustible, with many having no sharp melting points, decomposing, and charring at moderately high temperature. Most are non-electrolytes. Most organic compounds contain the
Dantes Peak Disasters in The Movies Paper
Chosen Film: Dante’s Peak
Ultimately, you will write an essay about 700-1000 words long (5-10 paragraphs) maximum. You ...
Dantes Peak Disasters in The Movies Paper
Chosen Film: Dante’s Peak
Ultimately, you will write an essay about 700-1000 words long (5-10 paragraphs) maximum. You should also include at least one diagram, figure, or map, which must be correctly cited in your bibliography.
Now, you should watch the movie, paying special attention to the following aspects of the plot:
How was this film related to the disaster? How was the disaster used to move the story forward?
What is the science behind the phenomenon you chose to research? This should be the most significant section of your paper!
Describe the direct and indirect effects of the disaster.
What could the government have changed?
Explain the long-term global impacts of the disaster.
3 pages
Assignment
You may print these pages and complete the exercises by hand. Then upload images of the completed exercise. Make sure you ...
Assignment
You may print these pages and complete the exercises by hand. Then upload images of the completed exercise. Make sure you include your Student ID.
Moraine Valley Community College Blood Typing & an Inheritance Mistake Analysis
Dr. Shepherd (the Caucasian red headed female doctor) made a big mistake. What is it? Describe in detail so that someone w ...
Moraine Valley Community College Blood Typing & an Inheritance Mistake Analysis
Dr. Shepherd (the Caucasian red headed female doctor) made a big mistake. What is it? Describe in detail so that someone who doesn't know the biology will understand.
You can assume the role of the "Chief" (the African-American male doctor), the other doctor with Dr. Shepherd. What would you have replied to correct what Dr. Shepherd said if you were the Chief? Describe in detail so that someone who doesn't know the biology will understand.
CHM 1100C Rasmussen Perform Heat Calculations Using Virtual Lab Chemistry Lab Report
Lab 01: Coffee ProblemPurpose of Experiment: To perform specific heat calculations and check those calculations using the ...
CHM 1100C Rasmussen Perform Heat Calculations Using Virtual Lab Chemistry Lab Report
Lab 01: Coffee ProblemPurpose of Experiment: To perform specific heat calculations and check those calculations using the virtual lab example.Deliverables:A screenshot of the correct answer and all calculations and explanationsInstructions:For this lab assignment, you will need to read the instructions for the Metals Density Problem on the ChemCollective website. After you complete this reading, return to this assignment to read an example problem that will help you to complete the lab on the ChemCollective page.Go to lab page: http://chemcollective.org/activities/autograded/115To complete the lab, all calculations and an explanation of how you will make the coffee must be shown in the provided box below the virtual lab. Once the green check box is clicked and the lab shows you have a correct answer, take a screen shot and submit the screenshot of the lab for your grade.Lab Assistance:The following will help you to complete out the Coffee Problem lab.All glassware used in this lab (even the pipets) must be insulated. Once the coffee and milk are selected, you must change the temperature to the initial temperature and insulate the glassware or it will quickly lose temperature.Hint: the coffee is in an insulated travel mug, so no heat escapes. To insulate a piece of glassware in Virtual Lab, Mac-users should command-click (or open-apple click) on the beaker or flask; Windows users should right click on the beaker or flask. From the menu that appears, choose “Thermal Properties.” Check the box labeled “insulated from surroundings.” The temperature of the solution in that beaker or flask will remain constant.All calculations and an explanation of how you will make the coffee must be shown in the provided box below the virtual lab. Once the green check box is clicked and the lab shows you have a correct answer, take a screen shot and submit thescreenshot of the lab for your grade.Example question and calculation:You decided to make hot water for your favorite flavored tea drink. The water, after boiling, was at about 98 ˚C when you poured it over the tea bags. You now have 100 mL hot tea at 98 ˚C and want to dilute the tea and bring it to room temperature at about 25 ˚C. To make the tea to the correct temperature, you will add a portion of cold water at a temperature of 5 ˚C. How much cold water should you add to the hot tea water? (Hint: the density of tea and water is 1 g/mL and the specific heat of tea and water is 4.184 J/g∙˚C).First convert the volume to mass using density:100mL⋅1g1mL=100g100mL⋅1g1mL=100gNext, use the following equation: q=m×C×ΔTq=m×C×∆T. This problem requires an endothermic and an exothermic reaction; therefore the equation is modified: q=−qq=−q. The cold water absorbs heat and is the endothermic reaction; therefore, the cold water portion is the qq. The tea temperature being brought down is releasing heat and therefore is the −q−q side of the equation. Now we can substitute the m×C×ΔTm×C×∆T for each qq, making sure to keep the signs of each qq.(m×C×ΔT)=−(m×C×ΔT)(m×C×∆T)=−(m×C×∆T)(m×C×(Tf−Ti))=−(m×C×(Tf−Ti))(m×C×(Tf−Ti))=−(m×C×(Tf−Ti))(m×4.184Jg⋅℃×(25℃−5℃))=−(100g×4.184Jg⋅℃×(25℃−98℃))(m×4.184Jg⋅℃×(25℃−5℃))=−(100g×4.184Jg⋅℃×(25℃−98℃))(m×4.184Jg⋅℃×(20℃))=−(100g×4.184Jg⋅℃×(−73℃))(m×83.68Jg)=30,543.2J(m×83.68Jg)=30,543.2Jm=30,543.2J83.68Jg=365gm=30,543.2J83.68Jg=365gConvert the grams into mL with the density: 365g×1mL1g=365mL365g×1mL1g=365mLOnce you have completed the calculation, check you work by doing the virtual lab as explained.
Microevolution
Response must be no less than 250 wordsIn this module we are focused on microevolution, or small changes within a species/ ...
Microevolution
Response must be no less than 250 wordsIn this module we are focused on microevolution, or small changes within a species/population of organisms over a relatively short period of time. Search for some real world examples of microevolution. Provide a source/citation for your example and summarize it
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Most Popular Content
15 pages
PROPERTIES THAT DISTINGUISH ORGANIC FROM INORGANIC COMPOUNDS
Organic compounds are unstable. They are combustible, with many having no sharp melting points, decomposing, and char ...
PROPERTIES THAT DISTINGUISH ORGANIC FROM INORGANIC COMPOUNDS
Organic compounds are unstable. They are combustible, with many having no sharp melting points, decomposing, and charring at moderately high temperature. Most are non-electrolytes. Most organic compounds contain the
Dantes Peak Disasters in The Movies Paper
Chosen Film: Dante’s Peak
Ultimately, you will write an essay about 700-1000 words long (5-10 paragraphs) maximum. You ...
Dantes Peak Disasters in The Movies Paper
Chosen Film: Dante’s Peak
Ultimately, you will write an essay about 700-1000 words long (5-10 paragraphs) maximum. You should also include at least one diagram, figure, or map, which must be correctly cited in your bibliography.
Now, you should watch the movie, paying special attention to the following aspects of the plot:
How was this film related to the disaster? How was the disaster used to move the story forward?
What is the science behind the phenomenon you chose to research? This should be the most significant section of your paper!
Describe the direct and indirect effects of the disaster.
What could the government have changed?
Explain the long-term global impacts of the disaster.
3 pages
Assignment
You may print these pages and complete the exercises by hand. Then upload images of the completed exercise. Make sure you ...
Assignment
You may print these pages and complete the exercises by hand. Then upload images of the completed exercise. Make sure you include your Student ID.
Moraine Valley Community College Blood Typing & an Inheritance Mistake Analysis
Dr. Shepherd (the Caucasian red headed female doctor) made a big mistake. What is it? Describe in detail so that someone w ...
Moraine Valley Community College Blood Typing & an Inheritance Mistake Analysis
Dr. Shepherd (the Caucasian red headed female doctor) made a big mistake. What is it? Describe in detail so that someone who doesn't know the biology will understand.
You can assume the role of the "Chief" (the African-American male doctor), the other doctor with Dr. Shepherd. What would you have replied to correct what Dr. Shepherd said if you were the Chief? Describe in detail so that someone who doesn't know the biology will understand.
CHM 1100C Rasmussen Perform Heat Calculations Using Virtual Lab Chemistry Lab Report
Lab 01: Coffee ProblemPurpose of Experiment: To perform specific heat calculations and check those calculations using the ...
CHM 1100C Rasmussen Perform Heat Calculations Using Virtual Lab Chemistry Lab Report
Lab 01: Coffee ProblemPurpose of Experiment: To perform specific heat calculations and check those calculations using the virtual lab example.Deliverables:A screenshot of the correct answer and all calculations and explanationsInstructions:For this lab assignment, you will need to read the instructions for the Metals Density Problem on the ChemCollective website. After you complete this reading, return to this assignment to read an example problem that will help you to complete the lab on the ChemCollective page.Go to lab page: http://chemcollective.org/activities/autograded/115To complete the lab, all calculations and an explanation of how you will make the coffee must be shown in the provided box below the virtual lab. Once the green check box is clicked and the lab shows you have a correct answer, take a screen shot and submit the screenshot of the lab for your grade.Lab Assistance:The following will help you to complete out the Coffee Problem lab.All glassware used in this lab (even the pipets) must be insulated. Once the coffee and milk are selected, you must change the temperature to the initial temperature and insulate the glassware or it will quickly lose temperature.Hint: the coffee is in an insulated travel mug, so no heat escapes. To insulate a piece of glassware in Virtual Lab, Mac-users should command-click (or open-apple click) on the beaker or flask; Windows users should right click on the beaker or flask. From the menu that appears, choose “Thermal Properties.” Check the box labeled “insulated from surroundings.” The temperature of the solution in that beaker or flask will remain constant.All calculations and an explanation of how you will make the coffee must be shown in the provided box below the virtual lab. Once the green check box is clicked and the lab shows you have a correct answer, take a screen shot and submit thescreenshot of the lab for your grade.Example question and calculation:You decided to make hot water for your favorite flavored tea drink. The water, after boiling, was at about 98 ˚C when you poured it over the tea bags. You now have 100 mL hot tea at 98 ˚C and want to dilute the tea and bring it to room temperature at about 25 ˚C. To make the tea to the correct temperature, you will add a portion of cold water at a temperature of 5 ˚C. How much cold water should you add to the hot tea water? (Hint: the density of tea and water is 1 g/mL and the specific heat of tea and water is 4.184 J/g∙˚C).First convert the volume to mass using density:100mL⋅1g1mL=100g100mL⋅1g1mL=100gNext, use the following equation: q=m×C×ΔTq=m×C×∆T. This problem requires an endothermic and an exothermic reaction; therefore the equation is modified: q=−qq=−q. The cold water absorbs heat and is the endothermic reaction; therefore, the cold water portion is the qq. The tea temperature being brought down is releasing heat and therefore is the −q−q side of the equation. Now we can substitute the m×C×ΔTm×C×∆T for each qq, making sure to keep the signs of each qq.(m×C×ΔT)=−(m×C×ΔT)(m×C×∆T)=−(m×C×∆T)(m×C×(Tf−Ti))=−(m×C×(Tf−Ti))(m×C×(Tf−Ti))=−(m×C×(Tf−Ti))(m×4.184Jg⋅℃×(25℃−5℃))=−(100g×4.184Jg⋅℃×(25℃−98℃))(m×4.184Jg⋅℃×(25℃−5℃))=−(100g×4.184Jg⋅℃×(25℃−98℃))(m×4.184Jg⋅℃×(20℃))=−(100g×4.184Jg⋅℃×(−73℃))(m×83.68Jg)=30,543.2J(m×83.68Jg)=30,543.2Jm=30,543.2J83.68Jg=365gm=30,543.2J83.68Jg=365gConvert the grams into mL with the density: 365g×1mL1g=365mL365g×1mL1g=365mLOnce you have completed the calculation, check you work by doing the virtual lab as explained.
Microevolution
Response must be no less than 250 wordsIn this module we are focused on microevolution, or small changes within a species/ ...
Microevolution
Response must be no less than 250 wordsIn this module we are focused on microevolution, or small changes within a species/population of organisms over a relatively short period of time. Search for some real world examples of microevolution. Provide a source/citation for your example and summarize it
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