Answer:
Step-by-step explanation:
You solve a question like this by finding the slope and intercept of the desired line and putting those values into the answer form.
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The relationship between slopes of perpendicular lines is that one is the negative reciprocal of the other.
The slope-intercept form of the equation for a line is ...
y = mx + b . . . . . . where m is the slope and b is the y-intercept
The given line is in "slope-intercept form," so you can identify the slope as 4 and the y-intercept as 6. (For this question, the y-intercept of the given line is irrelevant.)
Using the relationship between slopes of perpendicular lines, you now know the slope of the line you want is m = -1/(slope of given line) = -1/4. This is the coefficient of x in the slope-intercept form, so fills the blanks on the left.
To make the line go through the point (1, 1), you need to choose a y-intercept that makes (x, y) = (1, 1) a solution to the equation. For a y-intercept of "b", that means ...
y = -1/4x + b
1 = -1/4·1 + b . . . . . . . . fill in the values of x and y at the given point
1 + 1/4 = b = 5/4 . . . . . add 1/4 to both sides of the equation
Now you know the equation you want is ...
PLEASE HELP ME ASAPPPP
Answer:
23
Step-by-step explanation:
Answer:
23
Step-by-step explanation:
N = number of nickels
D = number of dimes
N + D is the total number of coins which we are told is 23
The number in the green box is 23.
x _____ minutes in an hour
x _____ hours in a day
x _____ days in a year
x __________ miles per second (speed of light) =
______________ miles in one light-year.
independent, then what is the probability a patient needs a filling given that he/she needs a cleaning?
A. 0.83
B. Additional information is required to determine the probability.
C.0.39
D. 0.89
E. 0.44
Reason:
The events "needs a cleaning" and "needs a filling" are independent. Therefore, we can immediately conclude that the prior condition "needs a cleaning" does not affect "needs a filling". That's why we go for the answer of 0.44 which is stated in the instructions.
In terms of symbols:
The knowledge about event C happening does not change the value of P(F). Now if events F and C were dependent somehow, then P(F given C) would be different from P(F).
true or false