4) A steel ball whose mass is 2.0 kg is rolling at a rate of 2.8 m/s. What is its momentum? Looking for: the momentum Given Information: mass = 2.0 kg and rolling at 2.8 m/ Equation: Solution:

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Chapter1: Units, Trigonometry. And Vectors
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nentum Problem Solving CP Day 46 * O
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Comic San.
12
BIUA
4) A steel ball whose mass is 2.0 kg is rolling at a rate of 2.8 m/s. What is its
momentum?
Looking for: the momentum
Given Information: mass = 2.0 kg and rolling at 2.8 m/
Equation:
Solution:
5)A marble is rolling at a velocity of 1.5 m/s with a momentum of 0.10 kgm/s. What
is its mass?
Looking for: mass
Given Information: the marble has a velocity of 1.5 m/s and a momentum of 0.10
kgm/s
45%
III
Transcribed Image Text:nentum Problem Solving CP Day 46 * O Format Tools Add-ons Help Last edit was seconds ago Normal text Comic San. 12 BIUA 4) A steel ball whose mass is 2.0 kg is rolling at a rate of 2.8 m/s. What is its momentum? Looking for: the momentum Given Information: mass = 2.0 kg and rolling at 2.8 m/ Equation: Solution: 5)A marble is rolling at a velocity of 1.5 m/s with a momentum of 0.10 kgm/s. What is its mass? Looking for: mass Given Information: the marble has a velocity of 1.5 m/s and a momentum of 0.10 kgm/s 45% III
Normal text
Comic San...
12
BIUA
+
Equation:
Solution:
6) On April 15, 1912, the luxury cruise liner Titanic sank after running into an
iceberg. What was the cruise liner's speed when it collided with the iceberg if it
had a mass of 423,000,000 kg ship and a momentum of 4,900,000,000 kg-m/s?
Looking for:the cruise liner's speed
Given Information: has a mass of 423,000,000 kg and a momentum of 4,900,000
Equation:
Solution:
45%
Transcribed Image Text:Normal text Comic San... 12 BIUA + Equation: Solution: 6) On April 15, 1912, the luxury cruise liner Titanic sank after running into an iceberg. What was the cruise liner's speed when it collided with the iceberg if it had a mass of 423,000,000 kg ship and a momentum of 4,900,000,000 kg-m/s? Looking for:the cruise liner's speed Given Information: has a mass of 423,000,000 kg and a momentum of 4,900,000 Equation: Solution: 45%
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