Answer:
(a,c) ∪ (f, g)
Step-by-step explanation:
The function is:
- concave down in the intervals: (a,c) and (f, g)
- concave up in the intervals: (c, f) and (h, g)
Draw the slope of the tangent lines of several points on the curve,
- if the slope increases, the segment is concave up
- if the slope decreases, the segment is concave down.
Answer:
v = 33.8 m/s
Step-by-step explanation:
Given that,
The initial velocity of the truck, u = 0
Acceleration of the truck, a = 3.6 m/s²
Time, t = 9.4 s
We need to find the car's final velocity. Let v is the final velocity.
Using equation of kinematics as follows :
v = u +at
Since, u = 0

Hence, the final velocity of the car is 33.8 m/s.
Answer:
x^2+6x+9
Step-by-step explanation:
expand the expression
2.00/6 = $0.33 rounded to the nearest penny, it actually is $0.333333333333 (infinite)
I hope this helped you out :)
Answer:
You will likely need to actually measure a few people for parts 1 and 2, but the statement in part 2 should be something like "The length of the forearm of one person will be very similar to the length of their foot" or "As the length of the forearm increases, the length of the foot will increase in similar amounts".
Since the equation in pt.3 is y = 0.860x + 3.302, if x=17, then 0.860(17) + 3.302=17.922
The next question is dependant on pt.1
The data from pt.1 should be somewhat similar to the data you collected, the values between them are different because of the allowed error margin between the two.
The data can be made into a function using the "line of best fit". The equation in part A represents a function because there are no two points where two y coordinates are on the exact same x coordinate.
Step-by-step explanation: