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What could we have measured?

What could we have measured?. Mass. What is mass? How can it be measured?. Mass and Change Lab. Goal- What happens to the mass of an object when they are changed? Part 1: Change the shape of steel wool Part 2: Melting ice Part 3: Burning steel wool Part 4: Dissolved sugar in water

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What could we have measured?

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  1. What could we have measured?

  2. Mass What is mass? How can it be measured?

  3. Mass and Change Lab • Goal- What happens to the mass of an object when they are changed? Part 1: Change the shape of steel wool Part 2: Melting ice Part 3: Burning steel wool Part 4: Dissolved sugar in water Part 5: Dissolved Alka-Seltzer

  4. Mass and Change Lab Day 1 • Today- • (20 min) Write all the procedures before your can start experimenting. • Get familiar with where lab equipment is located. • Make sure to list all need material with the correct name. • (2 min) Make prediction in data tables. • Get Clearance Stamp • (5 min) Complete Part 1 and obtain data/ record (individually on handout and on class data sheet). • Clean up

  5. End of Day

  6. Mass and Change Lab Day • Today- • (45 min) Complete Part 2-5 and obtain record data (individually on handout and on class data sheet). • Clean up. • (Rest) Start to complete the “Evaluation” particle level drawings.

  7. Mass and Change Lab Day

  8. All data need today!

  9. Mass and Change HW • Complete the “Evaluation” section over the weekend. • I will be stamping the work that is complete on Monday.

  10. End of Lesson 2

  11. Unit 1- Physical Properties and Matter

  12. Law of Conservation of Mass • This law was developed by a French chemist named Antoine Lavoisier. • Lavoisier carefully measured different systems before and after he change. • He noticed that in every case, the mass before was ALWAYS equal to the mass of the after.

  13. Law of Conservation of Mass • Historical Context- Year was 1776. • He was the first scientist to recognize and name the elements hydrogen and oxygen. • In 1789, he wrote the first chemistry textbook. • Oxygen, nitrogen, hydrogen, phosphorus, mercury, zinc and sulphur (list also included 'light' and 'caloric‘). •  He was executed, along with hundreds of other nobles, during the French Revolution.

  14. Law of Conservation of Mass Key Concept 1: The law of conservation of massstates that mass is neither created nor destroyed in a chemical reaction, it is conserved. The mass of the reactants equals the mass of the products. massreactants = massproducts

  15. White Boarding Session • Each lab table will be assigned one experiment from lab. • On the whiteboard collaboratively draw a particle diagram that illustrates the law of conservation of mass for your assigned part. • Assign one person to explain the drawing and the other members need to be ready to answer questions from their classmates/teachers.

  16. Unit 1-Mass and Change Lab & Whiteboarding Activity are due Friday.

  17. End of Lesson 3

  18. Bell work

  19. Time for Conclusion Questions…Unit 1-Mass and Change Lab & Whiteboarding Activity are dueFriday.

  20. Homework • Pass out Practice Problems 1A • Quick Review- What are practice problems? • Why should I do them? • What if I don’t do them? • Where are the answers?

  21. What is this Matter? • Matter is anything that takes up space and has mass. • Water • Rocks • Air • Wood • Plastic • You • So what not matter?

  22. Matter is… c • Key Concept 2: Matter is anything made of particles. • Matter has observable and measurable qualities. • Two basic types of properties of matter: physical properties and chemical properties. • All matter can undergo change: physical change or chemical change

  23. Properties Key Concept 3: Physical properties are characteristic of the substance that helps identify the material. Key Concept 4: Chemical properties describe how a material reacts with another substance.

  24. Change Key Concept 5: Physical change- the original substance still exists (its particles are still the same); it has simply changed form. Key Concept 6: Chemical change- takes place on the molecular level and produces a new substance (chemical changes are accompanied by physical changes) (hard to undo).

  25. Key Concept 7: What are some properties of salt?

  26. What type of change was it? Mass and Change Lab Part 1: Change shape Part 2: Melting ice Part 3: Burning steel wool Part 4: Dissolved sugar in water Part 5: Dissolved Alka-Seltzer

  27. Closure • Exit Pass—Based on today discussion on properties and change how would you answer the bell work differently?

  28. End of Lesson 4

  29. Qual vs. Quant • Key Concept 8 • Qualitative data: deals with descriptions. • Quantitative data: deals with numbers. • What was an example from our Mass and Change Lab of quantitative data? • Did the Mass and Change Lab have any qualitative data?

  30. We know how to measure mass, but what about volume?

  31. Volume What is volume? How is volume measured? How should scientist measure volume?

  32. Comparing Units of Volume • Key Concept 9: Volume measures the amount of space an object takes up, and is a derived unit from length. • Key Concept 10: The volume of a cube is V=length x width x height

  33. Comparing Units of Volume

  34. Volume You can measure the volume of some objects by using water displacement. Key Concept 12: Volume of an object: V= final volume – initial volume (Vf - VI)

  35. Comparing Units of Volume Key Concept 13: Volume can be measured in cubic centimeters (cm3) using a ruler and the proper equation or in milliliters (mL) by using a graduated cylinder.

  36. Quick Activity Key Concept 14: Quick Activity Purpose- Compare the volume that are calculated using a rule with those measured using a graduated cylinder. (FOLLOWED BY DATA YOU COLLECT FROM THE QUICK LAB) mL and cm3

  37. How can you minimize error?

  38. Class Data

  39. Class Data

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