Answer:
3, and -7
Step-by-step explanation:
First factor the trinomial
y=x2−4x−21
.
Find 2 numbers knowing sum (-4) and product (c = - 21). They are the numbers in the factor pair (3, -7).
y = (x + 3)(x - 7)
Solving the 2 binomials, we get:
x = -3 and x = 7
We want to solve the given quadratic inequality.
The correct option is the second one, counting from the top.
So we need to solve:
x^2 - 4x - 21 ≤ 0
Because we have the graph, we can avoid all the algebra.
Notice that the equation must be equal to or smaller than zero, then we just need to find the values of x such that the graph intersects the x-axis or is below it.
By looking at the given graph, we can see that the given range goes from -3 to 7
Then the solution is:
-3 ≤ x ≤ 7
This would be represented with a number line going from -8 to 8, two closed circles (because we use the symbols ≤ ≥) at negative 3 and 7, and the region between the circles is shaded.
The correct option is the second one.
If you want to learn more, you can read:
Explanation
The idea is to replace h(x) with 3. Then we isolate x. Follow PEMDAS in reverse to get x by itself.
Here are the steps:
h(x) = -5x+3
3 = -5x+3
-5x+3 = 3
-5x = 3-3
-5x = 0
x = 0/(-5)
x = 0
As a check,
h(x) = -5x+3
h(0) = -5*0 + 3
h(0) = 0 + 3
h(0) = 3
Therefore, the input x = 0 in the domain leads to the output h(x) = 3 in the range. We have confirmed the answer x = 0
Another way to confirm the answer is to use a graphing tool like GeoGebra or Desmos.
Answer:
23.7m
Step-by-step explanation:
Given parameters:
Time taken = 2.2s
Acceleration due to gravity = 10m/s
Unknown:
Depth of the well = ?
Solution:
To solve this problem, we simply apply one of the motion equations;
S = ut + gt²
where S = depth of the well
u = initial velocity
t = time taken
g = acceleration due to gravity
Input the parameters and solve for S;
Note initial velocity = 0;
S = x 9.8 x 2.2²
S = 23.7m
Answer:
Now we can calculate the p value with this probability:
Since the p value is a very low value and using any significance level 5% or 10% we have enough evidence to reject the null hypothesis and we can conclude that the true proportion of customer complaints using the old dough is less than the proportion of customer complaints using the new dough.
Step-by-step explanation:
Information provided
represent the complaints with the old dough
represent the complaints with the new dough
sample 1 selected
sample 2 selected
represent the proportion of complaints with the old dough
represent the proportion of complaints with the new dough
represent the pooled estimate of p
z would represent the statistic
represent the value
Hypothesis to test
We want to verify if the proportion of customer complaints using the old dough is less than the proportion of customer complaints using the new dough, the system of hypothesis would be:
Null hypothesis:
Alternative hypothesis:
The statitsic is given by:
(1)
Where
Replacing the info provided we got:
Now we can calculate the p value with this probability:
Since the p value is a very low value and using any significance level 5% or 10% we have enough evidence to reject the null hypothesis and we can conclude that the true proportion of customer complaints using the old dough is less than the proportion of customer complaints using the new dough.
a.$642.23
c.$648.62
b.$645.65
d.$649.13
Answer:
The answer is A: $642.23
Step-by-step explanation:
I just took the test lol
b. How many canse will Lydia and Adam use total?
(a). 9 layers
(b). 285
In the question,
The Square Pyramid is needed to be made from the cans.
The base of the pyramid has = 81 cans
So,
Side of the Square = s
So,
Therefore, the number of cans on one side of the square base = 9 cans
So,
The number of cans will be reducing by 1 in each layer upto the point we are left with only 1 can in the top.
So,
1st layer = 9 cans
2nd layer = 8 cans
3rd layer = 7 cans
4th layer = 6 cans
5th layer = 5 cans
6th layer = 4 cans
7th layer = 3 cans
8th layer = 2 cans
9th layer = 1 can
Number of layers are = 9
(b).
Total number of cans used by Lydia and Adam will be,
Sum of number of cans in all the layers.
Therefore, the number of cans = 285