A projectile is shot straight upwards. It's approximate height above ground t seconds after it is launched is shown in the table below. 7 1110 2 480 Logistic y= Height (ft) Use the data to construct a scatter plot, then complete the following. 1) Which of the following best describes the pattern? OA. Exponential (y = a.b*) O B. Linear (y = mx + b) O C. C -bx 1 + ae 5 960 O D. Quadratic (y = ax² + (+ c) 11 1040 2) Using your calculator and the best of the four methods above, find a model, H(t), that estimates the height of the projectile t seconds after it is launched. ROUND TO TWO DECIMAL PLACES. H(t) = 3) Use your rounded answer from part 2 to complete the following. What is the approximate maximum height that the projectile achieves? ROUND TO THE NEAREST FOOT. The maximum height is about feet. What is the approximate velocity of the projectile exactly 4 seconds after it is shot? ROUND TO ONE DECIMAL PLACE. The velocity is about feet per second. 13 810

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
icon
Related questions
Question
A projectile is shot straight upwards. It's approximate height above ground t seconds after it is launched is shown in the table below.
t
Height (ft)
2
480
Logistic y=
Use the data to construct a scatter plot, then complete the following.
1) Which of the following best describes the pattern?
O A. Exponential (y = a · b*)
OB.
Linear (y = mx + b)
O C.
C
- bx
1 + ae
O D. Quadratic (y = ax² +
5
960
hxX+C)
7
1110
2) Using your calculator and the best of the four methods above, find a model, H(t),
that estimates the height of the projectile t seconds after it is launched.
ROUND TO TWO DECIMAL PLACES.
H(t) =
3) Use your rounded answer from part 2 to complete the following.
What is the approximate maximum height that the projectile achieves?
ROUND TO THE NEAREST FOOT.
The maximum height is about
feet.
11
1040
What is the approximate velocity of the projectile exactly 4 seconds after it is shot?
ROUND TO ONE DECIMAL PLACE.
The velocity is about feet per second.
13
810
Transcribed Image Text:A projectile is shot straight upwards. It's approximate height above ground t seconds after it is launched is shown in the table below. t Height (ft) 2 480 Logistic y= Use the data to construct a scatter plot, then complete the following. 1) Which of the following best describes the pattern? O A. Exponential (y = a · b*) OB. Linear (y = mx + b) O C. C - bx 1 + ae O D. Quadratic (y = ax² + 5 960 hxX+C) 7 1110 2) Using your calculator and the best of the four methods above, find a model, H(t), that estimates the height of the projectile t seconds after it is launched. ROUND TO TWO DECIMAL PLACES. H(t) = 3) Use your rounded answer from part 2 to complete the following. What is the approximate maximum height that the projectile achieves? ROUND TO THE NEAREST FOOT. The maximum height is about feet. 11 1040 What is the approximate velocity of the projectile exactly 4 seconds after it is shot? ROUND TO ONE DECIMAL PLACE. The velocity is about feet per second. 13 810
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 3 steps with 2 images

Blurred answer
Similar questions
Recommended textbooks for you
Advanced Engineering Mathematics
Advanced Engineering Mathematics
Advanced Math
ISBN:
9780470458365
Author:
Erwin Kreyszig
Publisher:
Wiley, John & Sons, Incorporated
Numerical Methods for Engineers
Numerical Methods for Engineers
Advanced Math
ISBN:
9780073397924
Author:
Steven C. Chapra Dr., Raymond P. Canale
Publisher:
McGraw-Hill Education
Introductory Mathematics for Engineering Applicat…
Introductory Mathematics for Engineering Applicat…
Advanced Math
ISBN:
9781118141809
Author:
Nathan Klingbeil
Publisher:
WILEY
Mathematics For Machine Technology
Mathematics For Machine Technology
Advanced Math
ISBN:
9781337798310
Author:
Peterson, John.
Publisher:
Cengage Learning,
Basic Technical Mathematics
Basic Technical Mathematics
Advanced Math
ISBN:
9780134437705
Author:
Washington
Publisher:
PEARSON
Topology
Topology
Advanced Math
ISBN:
9780134689517
Author:
Munkres, James R.
Publisher:
Pearson,