Answer:
The coordinates of point C are (-8,5).
Step-by-step explanation:
It is given that A, B and C collinear and B is between A and C.
The ratio of AB to BC is 1:2. It means Point divided the line segments AC in 1:2.
Section formula:
The given points are A(7,-1) and B(2,1).
Let the coordinates of C are (a,b).
Using section formula the coordinates of B are
We know that point B(2,1).
On comparing both sides we get
The value of a is -8.
The value of b is 5.
Therefore, the coordinates of point C are (-8,5).
The coordinates of the pointC such that pointsA and B are (7, -1) and (2, 1) and the ratioAB to BC is 1 : 2 is (-8, 5).
According to the Euclidean geometry, a line is formed by two points on a plane and three points are collinear if all the three points go through a single line.
By definitions of vector and ratio we derive an expression to determine the coordinates of the point B:
If we know that A(x,y) = (7, -1) and B(x,y) = (2, 1), then the coordinates of point C is:
C(x, y) = 3 · (2, 1) - 2 · (7, -1)
C(x, y) = (6, 3) + (- 14, 2)
C(x,y) = (- 8, 5)
The coordinates of the pointC such that pointsA and B are (7, -1) and (2, 1) and the ratioAB to BC is 1 : 2 is (-8, 5).
The statement is poorly formatted and reports mistakes. Correct form is shown below:
A, B and C are collinear and B is between A and C. The ratio of AB to BC is 1 : 2. If A is A(x, y) = (7, -1) and B(x, y) = (2, 1), what are the coordinates of point C?
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Using the quadratic equation h = -16t² + 264 which represents the object's height after time, we find that it will take 4 seconds for the object to reach 8 feet above the valley floor.
In this case, you're asked to find out how much time it takes for an object dropped from an observation deck to drop to a point 8 feet above the valley floor. The height h, in feet, after time t, in seconds, is represented by the quadratic equation h = -16t² + 264. Set the equation equal to desired height, which is 8 feet in this case. So, you have -16t² + 264 = 8. Rearranging, you get -16t² = 8 - 264, or -16t² = -256. Divide by -16 yields, t² = 16. The principal square root of 16 is t = 4.
Therefore, it will take 4 seconds for the object to be 8 feet above the valley floor.
#SPJ3
Answer:
A
Step-by-step explanation:
I think it is I'm not sure but I hope it is
b. 100.
c. 10.
d. 1000.
Answer:
The answer is the option C
Step-by-step explanation:
we know that
The metric system is a system of measuring based on the meter, kilogram and second (MKS). Is based on the powers of the number
Answer:
=3^x +12x -4
Step-by-step explanation:
f(x)=3^x+10x
g(x)= 2x-4,
(f+g)(x) = 3^x+10x+ 2x-4,
Combine like terms
=3^x +12x -4
Answer:
Hence, it will take about 73 years for the population to triple.
Step-by-step explanation:
For this case we have an exponential function P(t) which represents the population at time 't' ; which is given as:
i.e. the equation is represented of the form:
Where,
A: initial amount ( Here we have A=430000)
b: growth rate (Here we have b=1.015)
t: time in years.
As the population has to triple over the time.
Hence, Substituting values we have:
⇒
Taking logarithmic function on both side we have:
( Since )
⇒
Hence, It will take for the population to triple about:
t = 73 years
Answer:
Step-by-step explanation:
y + 8 = 4(x - 1)
y + 8 = 4x - 4
y = 4x - 12