(SOLVED) Virtual Lab: Lab Report Document Submission – Part III

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Week 5Virtual Lab: Redox Simulation – Part I

Assignment

Instructions

Complete the simulation.

As you work through the lab simulations, complete the lab reportLinks to an external site.Links to an external site. document, and submit it in Part III.

Outcomes

CO 7: Predict the properties of and identify reduction and oxidation agents as well as acids and bases by analysis of chemical formulas, chemical reactions, and solution pH values.

Due Date

By 11:59 p.m. MT on Sunday

Week 5Virtual Lab: Organic Chemistry – Part II

Assignment

Instructions

This section contains no simulation and instead contains a link to help you complete your lab report; please download the lab report document from Part I.  Complete the lab report document, and submit it in Part III.

To help you get started in the lab, please watch the video here on using the Moleview programLinks to an external site. before moving on to Part III.

Outcomes

CO 8: Differentiate the common classes of organic functional groups and identify the appropriate common or IUPAC names, applications, and chemical structures for simple organic.

Due Date

By 11:59 p.m. MT on Sunday

Week 5Virtual Lab: Lab Report Document Submission – Part III

Assignment

Instructions

Turn in your lab report document here after completing your lab simulations.  Your lab report document is in part I.

Outcomes

CO 7: Predict the properties of and identify reduction and oxidation agents as well as acids and bases by analysis of chemical formulas, chemical reactions, and solution pH values.

CO 8: Differentiate the common classes of organic functional groups and identify the appropriate common or IUPAC names, applications, and chemical structures for simple organic.

Due Date

By 11:59 p.m. MT on Sunday

 

OL Lab 9: Building models of organic compounds

Learning Objectives:

  • Build virtual models to learn about the structure of organic compounds
  • Draw extended structural formulas of organic compounds

Compounds that are based on the carbon atom are known as organic compounds.  These compounds commonly contain, nitrogen, oxygen, and hydrogen in addition to carbon. Carbon forms a variety of covalent compounds with varied properties. Carbon containing compounds are formed by sharing electrons, covalent bonds, between atoms. Most biomolecules, as well as most drugs, are classified as organic compounds. In this laboratory exercise, you will build models of organic compounds virtually and draw the extended structural formula of organic compounds.

Online Modeling Resource: http://molview.org/

Note: Be sure to build each of the compounds as instructed using the online modeling resource kit.  This hands-on experience is an important part of this lab.  You will need to copy the models you build in the virtual modeling resource and paste the images into this document.  Please take the time to explore the structures of these organic compounds.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Exploration 1: Building models of Hydrocarbons
Hydrocarbons are a diverse group of organic compounds containing carbon and hydrogen. Hydrocarbons can be linear, branched, or cyclic. Additionally, hydrocarbons can be saturated, unsaturated or aromatic.

 

Using the virtual resource build the extended structural formulas of the following compounds.  Copy and paste the images into the space below.  Additionally, type in the condensed structural formula.

Propane

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

Butane

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

 

 

 

Ethylene

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

 

 

 

 

 

 

 

 

Ethyne

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

 

 

Propyne

 

Extended Structural Formula:

 

 

 

Condensed Structural Formula:

 

 

 

 

 

Ethane

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Exploration 2: Identification of Functional Groups 

Part 2A: Building functional groups
Functional groups alter the properties of hydrocarbons.

Using the virtual resource build the extended structural formulas of the following compounds.  Copy and paste the images into the space below.

 

Alcohol

 

 

Ether

 

 

Ketone

 

 

Carboxylic acid

 

 

Aldehyde

 

 

Ester

 

 

Amine

 

 

Part 2B: Identification of functional groups:
Complete the table below by identifying the functional groups and names of the condensed structural formulas below.

Condensed Structural Formula Name of Functional Group Name of Organic Molecule
CH3CH2COCH3    
CH3CH2CHO    
CH3OH    
CH3CH2CH2CH2CH2NH2    
CH3CH2CH2COOH    

 

 

 

Exploration 3: Building hydrocarbons containing functional groups
Using the virtual resource build the extended structural formulas of the following compounds.  Copy and paste the images into the space below.

 Difluoromethane

 

Virtual Model with Extended Structural Formula:

 

 

 

 

 

 

 

 

 

 

Trichloromethane

 

Virtual Model with Extended Structural Formula:

 

Tetrachloromethane

 

Virtual Model with Extended Structural Formula:

 

 

 

 

 

 

 

 

 

 

 

 

Propanol

Virtual Model with Extended Structural Formula:

 

 

 

 

Ethanoic Acid

Virtual Model with Extended Structural Formula:

 

 

 

 

Combine the propanol and the ethanoic acid from the last two exercises to make propyl ethanoate

Virtual Model with Extended Structural Formula:

 

 

Phenol

 

Virtual Model with Extended Structural Formula:

 

 

 

 

 

 

Dimethyl ether

 

Virtual Model with Extended Structural Formula:

 

 

 

Condensed Structural Formula:

Propanal

 

Virtual Model with Extended Structural Formula:

 

 

 

 

Condensed Structural Formula:

 

 

 

 

 

Hexanoic acid

 

Virtual Model with Extended Structural Formula:

 

 

 

 

 

Condensed Structural Formula:

Ethylamine

 

Virtual Model with Extended Structural Formula:

 

 

 

 

 

Condensed Structural Formula:

 

 

 

Questions:

  1. Write the names of a biomolecule (also known as macromolecules) that contain each of the functional groups below.
    1. Amine
    2. Aldehyde
    3. Carboxylic Acid
    4. Alcohol

 

  1. Find an example of an ester used as a fragrance or flavoring and give the name, condensed structural formula, and flavor of your chosen ester.

 

 

 

 

  1. For each of the following, give the functional group and application
    1. Formaldehyde

 

 

 

 

  1. Ethanol

 

 

 

 

  1. Acetone

 

 

 

 

  1. Phenol

 

 

 

 

Reflection:  Consider what you learned from this simulation. Reflect on three to four key concepts that you learned in this lab exercise. How could the lessons learned in this virtual lab relate to a real world situation in the community/world or your future career?  Be specific in your answer (this should require 5-10 sentences).

 

 

 

Grading Rubric:

Activity Deliverable Points
Part I: Redox Reactions: Discover how batteries work! Virtual Lab 7
Part II: Exploration 1: Build/draw all hydrocarbons: 5 points 3
Part II: Exploration 2: Build/draw all functional groups: 3.5 points and complete the table: 5 points. 8.5
Part II: Exploration 3: Build/draw all organic molecules: 5.5 points, 5.5
Part II: End of lab questions Complete all questions: 9 points total (Questions 1 and 3 are 4 points each, question 2 is 1 point) 9
Part II: Reflection Write a 10-14 sentence laboratory reflection 2
All Lab Deliverables Complete ALL explorations and reflection activities 35

 

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