QUESTION IMAGE
Question
use the formula
calculate the missing value using the two given values!
table with columns: mass, volume, density; rows: textbook (2,000 g, 4,000 cm³, missing), apple (100 g, missing, 0.8 g/ml), football (missing, 625 ml, 0.64 g/ml), gold bar (16,000 g, 800 cm³, missing), can of soup (150 g, missing, 0.75 g/cm³)
think about it
whats more likely: an object whose mass is 0, or an object whose weight is 0?
TEXTBOOK (Find Density)
Step1: Recall density formula
Density formula is $
ho = \frac{m}{V}$, where $
ho$ is density, $m$ is mass, $V$ is volume.
Step2: Substitute values
Given $m = 2000\ g$, $V = 4000\ cm^3$. Substitute into formula: $
ho=\frac{2000}{4000}$
Step3: Calculate
$\frac{2000}{4000}=0.5\ g/cm^3$
APPLE (Find Volume)
Step1: Rearrange density formula
From $
ho = \frac{m}{V}$, we get $V=\frac{m}{
ho}$.
Step2: Substitute values
Given $m = 100\ g$, $
ho = 0.8\ g/mL$. Substitute: $V=\frac{100}{0.8}$
Step3: Calculate
$\frac{100}{0.8}=125\ mL$
FOOTBALL (Find Mass)
Step1: Rearrange density formula
From $
ho = \frac{m}{V}$, we get $m=
ho\times V$.
Step2: Substitute values
Given $
ho = 0.64\ g/mL$, $V = 625\ mL$. Substitute: $m = 0.64\times625$
Step3: Calculate
$0.64\times625 = 400\ g$
GOLD BAR (Find Density)
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An object whose weight is 0 is more likely.
Final Answers for Table:
- TEXTBOOK Density: $0.5\ g/cm^3$
- APPLE Volume: $125\ mL$
- FOOTBALL Mass: $400\ g$
- GOLD BAR Density: $20\ g/cm^3$
- CAN OF SOUP Volume: $200\ cm^3$
- Think About It: An object whose weight is 0 is more likely.