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Measurement in Science
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Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Dec 22, 2015

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Dana Jefferson
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Page 1: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Measurement in Science

Page 2: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Learning Target #20

• I can differentiate between these scientific units of measurement: mass, volume, and weight.

Page 3: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Learning Target #21

• I can utilize the relationship between a substance’s mass and volume to determine its density.

Page 4: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Mass• Mass- the amount of matter (or stuff) that makes up an

object• Measured using a scale or triple beam balance• Measured in units called grams (g)

Mass Versus Weight***Mass is not the same as weight.***• Weight is the force of gravity pulling on an object.• Weight can change based on your location but mass

never changes• (Ex. You weigh 6 times more on Earth than you would on the

moon… 100lbs on Earth = 16 lbs on the moon!)

Page 5: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Definition: the amount of matter (or “stuff”) that makes up an object or substance. • How heavy or light

something is• Measured using a scale or

triple beam balance• Measured in units called

grams (g)

Example:

Picture: MASS

Page 6: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Definition: the amount of force of gravity pulling on an object•Measured in units called Newtons (N)•Weight changes based upon your location

Example:Your weight on the moon is 6 times less than what it is on Earth

Picture:

WEIGHT

Page 7: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Triple Beam Balance Scale: Getting Accurate Measurements (Calibration)

• Calibrate the scale by sliding all three metal sliders to their leftmost positions.

• Twist the zeroing screw (below the pan) until the balance pointer lines up with the fixed zero mark.

• Twist forward– Pointer goes down• Twist backward- Pointer goes up

Page 8: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Parts of the Triple Beam Balance

Page 9: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Measuring Mass with a Triple Beam Balance

1. Place the object to be weighed on the center of the pan. Make sure all riders are at zero.

Page 10: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

100-Gram Beam (Middle Beam)

2. Slide the 100-gram rider right one notch at a time. When the pointer line drops below the fixed zero mark, move the rider back (to the left) one notch.

Page 11: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

10-Gram Beam (Top Beam)

3. Slide the 10-gram rider right one notch at a time. Repeat the same steps as for the 100-Gram beam.

Page 12: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

1-Gram Beam (Bottom Beam) 4. Slide the 1-gram rider slowly across the third

beam (you might want to use your pencil). Stop sliding when the pointer lines up with the fixed zero mark.

5. Each little notch between a whole number represents 1/10th. – Ex. If the pointer lines up after the 6, plus 4 more little

notches, the total is 6.4g for that beam.

Page 13: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

6. Add the values of all three beams to determine the mass of your object.

Page 14: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Volume• Volume- the amount of space an

object or substance takes up (size)Tools to Measure Volume• Volume of an odd-shaped object is

measured using a water displacement • Volume of a liquid is measured using

a graduated cylinder or beakerUnits for Volume• Liquid = milliliters (mL)• Solid = cubic centimeters (cm3)

Page 15: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Definition: The amount of space a substance takes up (size)Solid• Units: cm3

• System to measure: water displacement

Liquid• Units: mL• Tool to measure:

graduated cylinder

Example:

Picture:Volume

Page 16: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Example

• Which has more volume? This Styrofoam block or this brick? Why?

Page 17: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Situation

• Bo gets into a bathtub filled to the top with water. What will happen? Why?

Page 18: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Volume of a Liquid: Using a Graduated Cylinder Reading a graduated cylinder:1. Determine the value of

each mark on the graduated cylinder.

2. Read the lowest part of the meniscus of the liquid• Meniscus- the lowest part of

the dip of the liquid as it sits in the graduated cylinder

Page 19: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Volume of an Odd Shaped Object: Using Water Displacement

1. Fill the graduated cylinder with water. Record the amount of water after reading the meniscus.

2. Carefully place the object into the water. Don’t splash (this could mess up your results)! Make sure that it is fully under the water.

3. Measure the new water level at the meniscus.

4. Subtract (new water level – old water level)5. Your answer is the volume of the object.

Page 20: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Water Displacement Example 1

• Starting water volume?

• Ending water volume?

• Volume of the dinosaur toy?

Page 21: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Water Displacement Example 2

• Starting water volume?

• Ending water volume?

• Volume of the robot toy?

Page 22: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Density• Density- the amount of mass

something has compared to its volume

• An easy way to think of it: The amount of “stuff” or matter packed into a certain area.

Units for Measuring Density• g/cm3 (solid)• g/mL (liquid)

Page 23: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Definition: the amount of mass something has compared to its volume.• How tightly packed

together a substance’s matter is.

• Solid units: g/cm3

• Liquid units: g/mL• More dense things

sink, less dense things float.

Example:

Picture:DENSITY

Page 24: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Density Example

• Which cube is more dense?

• Why?

Page 25: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Density Formula

Mass (grams)Density = ------------------

Volume (mL or cm3)

Page 26: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Practice Density Problems

1. A piece of metal has a volume of 76 cm3 and a mass of 554.8 g. Find the Density.

Page 27: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Density Lab Conclusions• Even if 2 of the SAME substances have

different masses and volumes, they will have the same density.

• Each substance has its own unique density, which can help people tell it apart from other substances.

EX. ANY piece of pure Silver will have a density of 10.5 g/cm3

Page 28: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Archimedes Conundrum

• Using what you know about mass, volume, and the density of different substances, describe how Archimedes could determine if the King’s crown was made entirely of gold.

Page 29: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Other Density Formulas (Manipulated)

• Mass = Volume x Density• Volume = Mass / Density

Volume Formula• Volume = length x width x height

Page 30: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Mass = ?, Volume = 17.3 mL, Density = 34 g/mL

Page 31: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Mass = 12 g, Volume = ?, Density = 64.7 g/mL

Page 32: Measurement in Science. Learning Target #20 I can differentiate between these scientific units of measurement: mass, volume, and weight.

Mass = 24 g, Volume = 15.2 mL, Density = ?