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nignag [31]
3 years ago
7

Find the distance between -3 and 6 on a number line

Mathematics
1 answer:
docker41 [41]3 years ago
3 0
-3, -2, -1, 0, 1, 2, 3, 4, 5, 6

The distance would be 9.


I apologize if I’m wrong, I’m not great at math :v
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How do you find f(2x) when you know f(x) = x^3?
babymother [125]
To find the answer, you just plug 2x in place of x (even though 2x already has an x). It would look something like this: f(2x)= (2x)^3 = 2x*2x*2x= 8x^3
6 0
3 years ago
Which angles are obtuse angles in the figure shown
earnstyle [38]

The answer is D. ∠FVI and ∠GVE. An obtuse angle must be wider than 90° (like the corners of a square or rectangle) and less than 180° (literally a straight line).

5 0
3 years ago
In △ABC, m∠ABC=40°, BL (L∈AC ) is the angle bisector of ∠
ira [324]

check the picture below.


M is perpendicular to AB and ∈ AB, and stemming from point L.


N is perpendicular to BC and ∈ BC, and stemming from point L as well.


BL is the bisector, that means the angle at verte B, gets cut into two equal halves.


now, we know what ∠CLN =3∠ALM, namely that ∠CLN is 3 times greater than ∠ALM.


so, once the bisector kicks in, you get two angles of 20° each, the angles at M are 90° each and the angles at N are 90° each as well, that pretty much narrows down what the missing angle is in triangles MBL and NBL, so is 70°.


now, the little sliver angles at CLN and ALM are on a 3:1 ratio, so, the flat-line of AC affords us 180°, subtract the 140°, so CLN and ALM will have to share only the remaining 40°, and they have to do so on a 3:1 ratio, that leaves us with, notice the blue angles.


now, from the triangles ALM and CLN, you can pretty much tell what the missing angle is, and those are the values for angles A and C.


Read more on Brainly.com - brainly.com/question/6781441#readmore

8 0
3 years ago
Pls help me ASAP!!! Tickets for a concert cost $7.50 for students and $15 for adults. 150 ticket are sold, and $1612.50 is colle
mariarad [96]
Answer: 85 student tickets, 65 adult tickets.
Let's say the # of students is x and the # of adults is y. The two equations we get are 7.50x + 15y = 1612.50 and x + y = 150
x = 150 - y
7.5(150-y) + 15y = 1612.5
1125-7.5y+15y=1612.5
7.5y=487.5
y=65

x=150-65
x=85

Hope this helps!
8 0
3 years ago
An oil exploration company currently has two active projects, one in Asia and the other in Europe. Let A be the event that the A
Virty [35]

Answer:

a)

0.5

option A

b)

0.6

c)

0.1

Step-by-step explanation:

The event A and B are independent so

P(A∩B)=P(A)*P(B)

P(A∩B)=P(0.2)*P(0.5)=0.10

a)

We have to find P(B'|A')

P(B'|A')=P(B'∩A')/P(A')

P(A)=0.2

P(A')=Asian project is not successful=1-P(A)=1-0.2=0.8

P(B)=0.5

P(B')=Europe project is not successful=1-P(B)=1-0.5=0.5

P(B'∩A')=Europe and Asia both project are not successful=P(A')*P(B')=0.8*0.5=0.4

P(B'|A')=P(B'∩A')/P(A')=0.4/0.8=0.5

This can be done by another independence property for conditional probability

P(B|A)=P(B)

P(B'|A')=P(B')

P(B'|A')=0.5

b)

Probability of at least one of two  projects will be successful means that the probability of success of Asia project or probability of success of Europe project  or probability of success of Europe and Asian project which is P(AUB).

P(AUB)=P(A)+P(B)-P(A∩B)

P(AUB)=0.2+0.5-0.1

P(AUB)=0.6

c)

Probability of only Asian project is successful given that at least one of the two projects is successful means that probability of success of project Asia while the project Europe is not successful denoted as P((A∩B')/(A∪B))=?

P((A∩B')/(A∪B))=P((A∩B')∩(A∪B))/P(A∪B)

P((A∩B')∩(A∪B))=P(A∩B')*P(A∪B)

P(A∩B')=P(A)*P(B')=0.2*0.5=0.10

P((A∩B')∩(A∪B))=0.1*0.6=0.06

P((A∩B')/(A∪B))=0.06/0.6=0.1

4 0
3 years ago
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