First of all we need the line equation so let's find it first :
y = mx + b
y = 2x + b
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The line passes through point ( 8 , 3 ) which means if put 8 instead of x the y must equals to 3 :
2(8) + b = 3
16 + b = 3
b = 3 - 16
b = - 13
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Now we have the equation of the line :
y=2x-13
To find the y-intercept we just need to out 0(zero)instead of x; Let's do it :
y = 2(0) - 13
y = 0 - 13
y = - 13
Thus the y-intercept=-13
Answer:
the y intercept is -13
Step-by-step explanation:
a. 1/u-3, u=3
b. u+2/u-6, u=2, u=6
c. 1/2u+12, u=-6
d. u+2/u-6, u=6
A.x < 3
B.x > –3
C.x < –3
D.x > 3
Answer:
21x- 21
Step-by-step explanation:
7 × (x × 3 - 3)
7 × (3x - 3)
21x - 21
I'm not sure if the answer is correct
Answer: that the solution is true
Step-by-step explanation: if you get something like 10=10 it’s true but if you get like 4= 7 it’s false
The greatest possible value of x is the largest value that satisfies all of these inequalities. The largest value of x that satisfies all three inequalities is 6.4 .
In an obtuse triangle, the longest side is opposite the obtuse angle. To determine the greatest possible value of x, we need to consider the triangle inequality theorem, which states that the sum of the lengths of any two sides of a triangle must be greater than the length of the third side.
In this case, the longest side measures 20 cm, and the two shorter sides are x cm and 3x cm. So, we have the following inequalities:
x + 3x > 20 (sum of the two shorter sides must be greater than the longest side)
20 + x > 3x (sum of the longest side and the shorter side must be greater than the other shorter side)
20 + 3x > x (sum of the longest side and the other shorter side must be greater than the remaining shorter side)
Let's solve these inequalities:
4x > 20
x > 5
20 + x > 3x
20 > 2x
10 > x
20 + 3x > x
20 > -2x
-10 < x
So, the greatest possible value of x is the largest value that satisfies all of these inequalities. The largest value of x that satisfies all three inequalities is 6.4 (rounded to the nearest tenth). Therefore, the greatest possible value of x is 6.4 cm.
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Answer:
7.1
Step-by-step explanation:
because pythagorean theorem
c² > a² + b²
20² > x² + 3x²
400 > 4x²
÷4 ÷4
100 > x²
10 > x 400 > 4(7.1)²
400 > 4(50.41)
400 > 201.64
f(x), because an increasing quadratic function will eventually exceed an increasing exponential function
g(x), because an increasing exponential function will eventually exceed an increasing quadratic function
f(x), because an increasing exponential function will always exceeds an increasing quadratic function until their graphs intersect
g(x), because an increasing quadratic function will always exceeds an increasing exponential function until their graphs intersect
Answer:
Step-by-step explanation:
Given that g(x) has ordered pairs as (0,1) (1,2), (3,8) (5,32) and (6,64)
Hence this is exponential as
g(x) contains points as (0,1) (1,2) (3,10), (5,26) and (6,37)
This seems to be quadratic
g(x) and f(x) start same but g(x) increases initially faster and then decreases
Hence correct option is
g(x), because an increasing exponential function will eventually exceed an increasing quadratic function