The distance between the two points is 1.4.
Option D is the correct answer.
The distance between two points of a line is given as:
Distance = √(c - a)² + (d - b)²
We have,
To find the distance between the two points (3, 5) and (4, 6)
We can use the distance formula:
d = √((x₂ - x₁)² + (y₂ - y₁)²)
where (x₁, y₁) and (x₂, y₂) are the coordinates of the two points.
Substituting the given values, we get:
d = √((4 - 3)² + (6 - 5)²)
d = √(1² + 1²)
d = √2
To the nearest tenth, the distance is approximately 1.4.
Therefore,
The distance between the two points is 1.4.
Learn more about the distance of a line here:
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The formula of a distance between two points:
We have the points (3, 5) and (4, 6). Substitute:
Answer:
146.6 grams
Step-by-step explanation:
We have been given an element with Mass 630 grams decays by 18.8% per minute.
We will use exponential decay function to solve our given problem.
, where,
y = Final amount,
a = Initial amount,
r = Rate of decay in decimal form,
x = Time.
Substitute the given values:
Therefore, 146.6 grams of the element is remaining after 7 minutes.
Answer:
The intercepts are -5 and 2
Step-by-step explanation:
Using the zero product property
f(x)=(x+5)(x-2)
0 =(x+5)(x-2)
0 = (x+5) 0=(x-2)
x = -5 x = 2
The intercepts are -5 and 2
Answer:
The following numbers go into 24 and 2,500:
2, 4
A.
(0, 0)
B.
(1, 1)
C.
(1, –5)
D.
(6, –8)
Answer: Option 'A' is correct.
Step-by-step explanation:
Since we have given that
Coordinates of B = (4,-3)
Coordinates of C = (-4,3)
We need to find the collinear point with B and C.
There is one method to find the collinear point i.e. Slope method.
Slope of BX = Slope of CX =
Let Coordinates of X = (0,0)
So, Slope of BX is given by
Slope of CX is given by
So, Slope of BX = Slope of CX =
And we can see from the graph (0,0) is the collinear point with B and C too.
Hence, Option 'A' is correct.