I was driving to a birthday party at my friend's house when I had the realization: I forgot the birthday gift. My velocity at i seconds after the realization is measured in meters per second and given by the function v(t) = 20 – 21, where traveling towards my friend's house is the positive direction. Label Equation/Value Displacement on [0.10] 100 Displacement on [10,20] -100 Use the graph below of v(1), with the area between v(1) and the x-axis shaded appropriately, to fill in the following table. Once your table it correct, answer the question below. Friends Houne | (0, 20) (10, 0) 50 My house -50 -100 (60, -100) Label Answer Got it? Displacement on [10.0] Keep trying! Distance travelled on [10.00] Keep trying! Displacement on [0.60] Keep trying! Distance travelled on [0.60] Keep trying! Suppose that after 10 seconds, I was 3 kilometers from my house (this is not the same context we used before). Based on the displacement found above, how far from my house would I be in meters after 60 seconds? (Enter only a number.)

Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter2: Representing Motion
Section: Chapter Questions
Problem 69A
icon
Related questions
Question
Displacement vs. Distance Travelled Revisited
I was driving to a birthday party at my friend's house
when I had the realization: I forgot the birthday gift. My
velocity at t seconds after the realization is measured
in meters per second and given by the function
v(i) = 20 – 21, where traveling towards my friend's
house is the positive direction.
Label
Equation/Value
Displacement on [0.10]
100
Displacement on [10,20]
-100
Use the graph below of v(t), with the area between
v(t) and the x-axis shaded appropriately, to fill in the
following table. Once your table it correct, answer the
question below.
Oh no! The gft!
Friend's House
|(0, 20)
(10, 0)
50
My house
-50
-100
(60. -100)
Label
Answer
Got it?
Displacement on
[10,60]
Keep trying!
Distance travelled on
[10,80]
Кeep trying!
Displacement on
[0.80]
Кeep trying!
Distance travelled on
[0.60)
Кеep trying!
Suppose that after 10 seconds, I was 3 kilometers
from my house (this is not the same context we used
before). Based on the displacement found above, how
far from my house would i be in meters after 60
seconds? (Enter only a number.)
Transcribed Image Text:Displacement vs. Distance Travelled Revisited I was driving to a birthday party at my friend's house when I had the realization: I forgot the birthday gift. My velocity at t seconds after the realization is measured in meters per second and given by the function v(i) = 20 – 21, where traveling towards my friend's house is the positive direction. Label Equation/Value Displacement on [0.10] 100 Displacement on [10,20] -100 Use the graph below of v(t), with the area between v(t) and the x-axis shaded appropriately, to fill in the following table. Once your table it correct, answer the question below. Oh no! The gft! Friend's House |(0, 20) (10, 0) 50 My house -50 -100 (60. -100) Label Answer Got it? Displacement on [10,60] Keep trying! Distance travelled on [10,80] Кeep trying! Displacement on [0.80] Кeep trying! Distance travelled on [0.60) Кеep trying! Suppose that after 10 seconds, I was 3 kilometers from my house (this is not the same context we used before). Based on the displacement found above, how far from my house would i be in meters after 60 seconds? (Enter only a number.)
Expert Solution
steps

Step by step

Solved in 3 steps

Blurred answer
Knowledge Booster
Uncertainty Principle
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Glencoe Physics: Principles and Problems, Student…
Glencoe Physics: Principles and Problems, Student…
Physics
ISBN:
9780078807213
Author:
Paul W. Zitzewitz
Publisher:
Glencoe/McGraw-Hill
College Physics
College Physics
Physics
ISBN:
9781938168000
Author:
Paul Peter Urone, Roger Hinrichs
Publisher:
OpenStax College