Instantaneous velocity represents the velocity at a particular point.
The instantaneous velocity at t = 3 is 7.7 ft/s
The table is given as:
![\left[\begin{array}{cccccccc}t&0&1&2&3&4&5&6\\s&0&4.9&10.7&23.2&50.4&109.4&237.8\end{array}\right]](https://tex.z-dn.net/?f=%5Cleft%5B%5Cbegin%7Barray%7D%7Bcccccccc%7Dt%260%261%262%263%264%265%266%5C%5Cs%260%264.9%2610.7%2623.2%2650.4%26109.4%26237.8%5Cend%7Barray%7D%5Cright%5D)
To calculate the instantaneous velocity at 
We get the distance at 
At
, the distance (s) is:

So, the instantaneous velocity (v) is:

This gives

Divide 23.2 by 3

Hence, the instantaneous velocity at t = 3 is 7.7 ft/s
See attachment for the required graph
Read more about instantaneous velocity at:
brainly.com/question/13190516
He bagged 2 bags in one minute
Answer:
(fоgоh)(x)=2x³+1
Step-by-step explanation:
Function composition is an operation where two functions, say f(x) and g(x), a new function h(x)=(fоg)(x)=f(g(x)) is generated. In this operation, the function g is applied to the result of the function f. Hence, function f:X→Y and g:Y→Z are joined to form a new function h:X→Z
Given 


(fоgоh)(x)=
=
=
=2x³+1
Answer:
x=150
Step-by-step explanation:
Since f is flat, that means that the total degrees will equal 180°.
Therefore, because of the 60° and (x-30)° angles being supplementary angles,
will equal 180.

<span>The three equations can be written as 1) y = 2x - 5 ; 2) y = 2x - 3 and ;3) y = 2x + 5. Now, the slope can be found by slop intercept form of linear equation i.e. y = mx+b where m is the slope. From the above equations, we can see that all the the three have the same slope i.e. m = 2.</span>