The molecules in a six-particle gas have velocities V₁ = (20î - 30ĵ) m/s v2 = (40î +90ĵ) m/s V3 = (-80î + 20ĵ) m/s 74 = 30î m/s 75 (402 403) m/s 71 (-50-403) m/s ▼ Calculate avg. Express the x and y components of the velocity in meters per second separated by a comma. Uz avg, Uy avg= Submit Part B - ΑΣΦ Request Answer Calculate Vavg. Express your answer with the appropriate units. ? m/s

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter16: Temperature And The Kinetic Theory Of Gases
Section: Chapter Questions
Problem 67P
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The molecules in a six-particle gas have velocities
v₁ = (20 - 30ĵ) m/s
v2 = (40î +90ĵ) m/s
v3 = (-802 +20ĵ) m/s
74 = 302 m/s
v5 = (402 — 40ĵ) m/s
V₁ = (-50î — 40ĵ) m/s
Calculate Vavg-
Express the x and y components of the velocity in meters per second separated by a comma.
Ur avg, Uy avg
Submit
Part B
=
17 ΑΣΦ
Request Answer
Calculate Vavg.
Express your answer with the appropriate units.
Ć
M
?
m/s
Transcribed Image Text:The molecules in a six-particle gas have velocities v₁ = (20 - 30ĵ) m/s v2 = (40î +90ĵ) m/s v3 = (-802 +20ĵ) m/s 74 = 302 m/s v5 = (402 — 40ĵ) m/s V₁ = (-50î — 40ĵ) m/s Calculate Vavg- Express the x and y components of the velocity in meters per second separated by a comma. Ur avg, Uy avg Submit Part B = 17 ΑΣΦ Request Answer Calculate Vavg. Express your answer with the appropriate units. Ć M ? m/s
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