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## y coordinate of focus of Parabola with its vertex opening vertically Solution

STEP 0: Pre-Calculation Summary
Formula Used
y_coordinate_of_focus_of_parabola = (Y coordinate of vertex of Parabola)+ (1/4*Focal distance of Parabola)
Yfocus_Parabola = (Yvertex_Parabola)+ (1/4*Dfocal_Parabola)
This formula uses 2 Variables
Variables Used
Y coordinate of vertex of Parabola - Y coordinate of vertex of Parabola is a point corresponding to vertex of Parabola and Y-axis. (Measured in Hundred)
Focal distance of Parabola - Focal distance of Parabola is the distance from vertex of parabola to the focus. (Measured in Meter)
STEP 1: Convert Input(s) to Base Unit
Y coordinate of vertex of Parabola: 3 Hundred --> 3 Hundred No Conversion Required
Focal distance of Parabola: 5 Meter --> 5 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Yfocus_Parabola = (Yvertex_Parabola)+ (1/4*Dfocal_Parabola) --> (3)+ (1/4*5)
Evaluating ... ...
Yfocus_Parabola = 4.25
STEP 3: Convert Result to Output's Unit
4.25 Hundred --> No Conversion Required
4.25 Hundred <-- Y coordinate of focus of Parabola
(Calculation completed in 00.016 seconds)

## < 10+ Coordinates of Parabola Calculators

x coordinate of focus of Parabola with its vertex opening horizontally
x_coordinate_of_focus_of_parabola = X coordinate of vertex of Parabola+ (1/4*Focal distance of Parabola) Go
x coordinate of point of tangency of Parabola
x_coordinate_1 = (Focal distance of Parabola/Slope of Line^2) Go
x coordinate of focus of Parabola with its vertex at opening vertically
x_coordinate_of_focus_of_parabola = X coordinate of vertex of Parabola Go
y coordinate of extremities of latusractum of Parabola opening to right
y_coordinate_1 = (2*Focal distance of Parabola) Go
y coordinate of extremities of latusractum of Parabola opening downwards
y_coordinate_1 = -(Focal distance of Parabola) Go
x coordinate of extremities of latusractum of Parabola opening to left
x_coordinate_1 = -(Focal distance of Parabola) Go
x coordinate of extremities of latusractum of Parabola opening downwards
x_coordinate_1 = 2*Focal distance of Parabola Go
x coordinate of extremities of latusractum of Parabola opening upwards
x_coordinate_1 = 2*Focal distance of Parabola Go
x coordinate of extremities of latusractum of Parabola opening to right
x_coordinate_1 = Focal distance of Parabola Go
y coordinate of extremities of latusractum of Parabola opening upwards
y_coordinate_1 = Focal distance of Parabola Go

### y coordinate of focus of Parabola with its vertex opening vertically Formula

y_coordinate_of_focus_of_parabola = (Y coordinate of vertex of Parabola)+ (1/4*Focal distance of Parabola)
Yfocus_Parabola = (Yvertex_Parabola)+ (1/4*Dfocal_Parabola)

## How to calculate the y coordinate of focus of parabola with its vertex at ( h, k)?

A parabola is the set of points in a plane that are the same distance from a given point and a given line in that plane. The given point is called the focus, and the line is called the directrix.

## How to Calculate y coordinate of focus of Parabola with its vertex opening vertically?

y coordinate of focus of Parabola with its vertex opening vertically calculator uses y_coordinate_of_focus_of_parabola = (Y coordinate of vertex of Parabola)+ (1/4*Focal distance of Parabola) to calculate the Y coordinate of focus of Parabola, y coordinate of focus of Parabola with its vertex opening vertically is defined as a point or number present on y axis of parabola. Y coordinate of focus of Parabola and is denoted by Yfocus_Parabola symbol.

How to calculate y coordinate of focus of Parabola with its vertex opening vertically using this online calculator? To use this online calculator for y coordinate of focus of Parabola with its vertex opening vertically, enter Y coordinate of vertex of Parabola (Yvertex_Parabola) & Focal distance of Parabola (Dfocal_Parabola) and hit the calculate button. Here is how the y coordinate of focus of Parabola with its vertex opening vertically calculation can be explained with given input values -> 4.25 = (3)+ (1/4*5).

### FAQ

What is y coordinate of focus of Parabola with its vertex opening vertically?
y coordinate of focus of Parabola with its vertex opening vertically is defined as a point or number present on y axis of parabola and is represented as Yfocus_Parabola = (Yvertex_Parabola)+ (1/4*Dfocal_Parabola) or y_coordinate_of_focus_of_parabola = (Y coordinate of vertex of Parabola)+ (1/4*Focal distance of Parabola). Y coordinate of vertex of Parabola is a point corresponding to vertex of Parabola and Y-axis & Focal distance of Parabola is the distance from vertex of parabola to the focus.
How to calculate y coordinate of focus of Parabola with its vertex opening vertically?
y coordinate of focus of Parabola with its vertex opening vertically is defined as a point or number present on y axis of parabola is calculated using y_coordinate_of_focus_of_parabola = (Y coordinate of vertex of Parabola)+ (1/4*Focal distance of Parabola). To calculate y coordinate of focus of Parabola with its vertex opening vertically, you need Y coordinate of vertex of Parabola (Yvertex_Parabola) & Focal distance of Parabola (Dfocal_Parabola). With our tool, you need to enter the respective value for Y coordinate of vertex of Parabola & Focal distance of Parabola and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Y coordinate of focus of Parabola?
In this formula, Y coordinate of focus of Parabola uses Y coordinate of vertex of Parabola & Focal distance of Parabola. We can use 10 other way(s) to calculate the same, which is/are as follows -
• x_coordinate_1 = 2*Focal distance of Parabola
• x_coordinate_1 = 2*Focal distance of Parabola
• x_coordinate_1 = Focal distance of Parabola
• x_coordinate_1 = -(Focal distance of Parabola)
• x_coordinate_of_focus_of_parabola = X coordinate of vertex of Parabola+ (1/4*Focal distance of Parabola)
• x_coordinate_of_focus_of_parabola = X coordinate of vertex of Parabola
• x_coordinate_1 = (Focal distance of Parabola/Slope of Line^2)
• y_coordinate_1 = -(Focal distance of Parabola)
• y_coordinate_1 = Focal distance of Parabola
• y_coordinate_1 = (2*Focal distance of Parabola)
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