Position from velocity Consider an object moving along a line with the given velocity v and initial position a. Determine the position function, for t ≥ 0, using the antiderivative method b. Determine the position function, for t ≥ 0, using the Fundamental Theorem of Calculus ( Theorem 6.1 ). Check for agreement with the answer to part (a). 21. v ( t ) = 9 − t 2 on [ 0 , 4 ] ; s ( 0 ) = − 2
Position from velocity Consider an object moving along a line with the given velocity v and initial position a. Determine the position function, for t ≥ 0, using the antiderivative method b. Determine the position function, for t ≥ 0, using the Fundamental Theorem of Calculus ( Theorem 6.1 ). Check for agreement with the answer to part (a). 21. v ( t ) = 9 − t 2 on [ 0 , 4 ] ; s ( 0 ) = − 2
Position from velocity Consider an object moving along a line with the given velocity v and initial position
a. Determine the position function, for t ≥ 0, using the antiderivative method
b. Determine the position function, for t ≥ 0, using the Fundamental Theorem of Calculus (Theorem 6.1). Check for agreement with the answer to part (a).
21.
v
(
t
)
=
9
−
t
2
on
[
0
,
4
]
;
s
(
0
)
=
−
2
For the system consisting of the lines:
and
71 = (-8,5,6) + t(4, −5,3)
72 = (0, −24,9) + u(−1, 6, −3)
a) State whether the two lines are parallel or not and justify your answer.
b) Find the point of intersection, if possible, and classify the system based on the
number of points of intersection and how the lines are related. Show a complete
solution process.
3. [-/2 Points]
DETAILS
MY NOTES
SESSCALCET2 7.4.013.
Find the exact length of the curve.
y = In(sec x), 0 ≤ x ≤ π/4
H.w
WI
M
Wz
A
Sindax
Sind dy max
Утах
at 0.75m from A
w=6KN/M L=2
W2=9 KN/m
P= 10 KN
B
Make the solution handwritten and not
artificial intelligence because I will
give a bad rating if you solve it with
artificial intelligence
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, calculus and related others by exploring similar questions and additional content below.
Fundamental Theorem of Calculus 1 | Geometric Idea + Chain Rule Example; Author: Dr. Trefor Bazett;https://www.youtube.com/watch?v=hAfpl8jLFOs;License: Standard YouTube License, CC-BY