What are the two axes on a graph
x and y axes
What is the formula for density?
D=M/V
Convert 10 ml to cm
1cm
28mm = .28cm
2.8cm
What is Mr. Simon's favorite beverage?
Coke Zero
Which variables go on the x and y axis
X Axis - Manipulated/Independent
Y Axis - Responding/Dependent
What is the formula for mass using volume and density
M=VxD
Convert 1000mL to daL
We form our hypothesis after we do our conclusion
False
Name two things we use to measure volume in our lab
Graduated Cylinder, Erlenmeyer Flask, Beaker
What variable is the variable we measure
Responding/Dependent
2.3g/cm^3
Convert 1000kg into mg
1,000,000,000mg
100 grams of clay is more dense than 10 grams of clay
False
What is the formula for area
Length x Width
What is a linear line on a graph
What is an exponential line on a graph
Linear: A graph where the value changes by the same amount each time. It forms a straight line.
Exponential: A graph where the value changes by the same factor/percentage each time. It forms a curved line that gets steeper (for growth).
There is a perfect cube that has the volume of 216cm, what is the length of one side of the cube
6cm
Convert 100 yards into meters
91.4m
The first step of the scientific method is to make observations
True
Convert 978g/cm^3 to g/mL
978g/mL
List everything you must do to have a perfect graph
1. Title (Responding variable (y) vs Manipulated Variable (x)
2. Label x and y axes + units
3. Number x and y axes
4. Circle Data Points
5. Draw Trendline (Line of Best Fit)
6. Have a key if needed
There is a perfect cube where the length is 4cm, the mass of this object is 264kg, what is the density of the object
4125g/cm^3
264kg --> 264000g
4x4x4=64cm^3
Convert 6,750cm into meters, then into yards, then into feet
67.5m, 73.85 yards, 221 feet
Mass Measures amount of matter in an object
Volume measures amount of 4 dimensional space object occupies
Density measures how tightly packed particles are
False
Volume measures amount of 3 dimensional space an object occupies
Find the independent and dependent variables from the following hypothesis "If I have more caffeine in the morning, then my heart rate will increase
Independent: Caffeine
Dependent: Heart rate