Answer:
1) m=2/9; y-intercept= 17/3
2) m=7 ; y-intercept= 22
3) m= -2/11 ; y-intercept= 100/11
4) m= 13/19 ; y-intercept= -53/13
Step by Step Explanation:
Use the slope formula to find the slope m.
Answer:
The required inequality that shows the maximum number of packages is
.
Step-by-step explanation:
Consider the provided information.
Each package weighs 3 pounds and Jacob weighs 99 pounds.
let <em>n</em> is the maximum number of package that Jacob can carry with himself in the elevator.
Thus, the total weight of Jacob while having <em>n</em> packages on the elevator is:

The elevator can carry a maximum of 300 pounds at a time, therefore.

Now, subtract 99 from both sides and divide the obtained inequality with 3.




Thus, the Jacob can carry maximum 67 packages.
Hence, the required inequality that shows the maximum number of packages is
.
Circumference + perimeter =38
x = circumference of circle
find r in terms of x
2

r=x
r=

Area=

r^2
so..
A=

(

)^2
=

(

)
=

(38-x) is perimeter
then

(

)^2

+ (

)^2
then you graph it and it equals
16.716 cm the circumference of the circle
Answer:
FH is the shortest side
Explanation:
In any triangle, the length of any side is proportional to the measure of its opposite interior angle.
This means that:
The shortest side is the side opposite to the smallest interior angle in the triangle
The longest side is the side opposite to the largest interior angle in the triangle
Now, in the given triangle we have:
measure angle F = 65°
measure angle G = 55°
measure angle H = 60°
We can note that angle G is the smallest angle.
Based on the above, the shortest side would be the one opposite to angle G which is side FH.
Hope this helps :)
Chairs are 2.50 and tables are 8 hope it helps