Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane Formula

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Distance from XX to Outermost Fiber is defined as the distance in between the Neutral Axis and Outermost Fiber. Check FAQs
cy=(σtotal-(PAcs)-(exPcxIy))IxPey
cy - Distance from XX to Outermost Fiber?σtotal - Total Stress?P - Axial Load?Acs - Cross-Sectional Area?ex - Eccentricity with respect to Principal Axis YY?cx - Distance from YY to Outermost Fiber?Iy - Moment of Inertia about Y-Axis?Ix - Moment of Inertia about X-Axis?ey - Eccentricity with respect to Principal Axis XX?

Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane Example

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Here is how the Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane equation looks like with Values.

Here is how the Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane equation looks like with Units.

Here is how the Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane equation looks like.

13.91Edit=(14.8Edit-(9.99Edit13Edit)-(4Edit9.99Edit15Edit50Edit))51Edit9.99Edit0.75Edit
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Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane Solution

Follow our step by step solution on how to calculate Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane?

FIRST Step Consider the formula
cy=(σtotal-(PAcs)-(exPcxIy))IxPey
Next Step Substitute values of Variables
cy=(14.8Pa-(9.99kN13)-(49.99kN15mm50kg·m²))51kg·m²9.99kN0.75
Next Step Prepare to Evaluate
cy=(14.8-(9.9913)-(49.991550))519.990.75
Next Step Evaluate
cy=0.0139099715099715m
Next Step Convert to Output's Unit
cy=13.9099715099715mm
LAST Step Rounding Answer
cy=13.91mm

Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane Formula Elements

Variables
Distance from XX to Outermost Fiber
Distance from XX to Outermost Fiber is defined as the distance in between the Neutral Axis and Outermost Fiber.
Symbol: cy
Measurement: LengthUnit: mm
Note: Value can be positive or negative.
Total Stress
Total Stress is defined as the force acting on the unit area of a material. The effect of stress on a body is named strain.
Symbol: σtotal
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.
Axial Load
Axial Load is defined as applying a force on a structure directly along an axis of the structure.
Symbol: P
Measurement: ForceUnit: kN
Note: Value should be greater than 0.
Cross-Sectional Area
Cross-Sectional Area is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point.
Symbol: Acs
Measurement: AreaUnit:
Note: Value should be greater than 0.
Eccentricity with respect to Principal Axis YY
Eccentricity with respect to Principal Axis YY can be defined as the locus of points whose distances to a point (the focus) and a line (the directrix) are in a constant ratio.
Symbol: ex
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Distance from YY to Outermost Fiber
Distance from YY to Outermost Fiber is defined as the distance in between the Neutral Axis and Outermost Fiber.
Symbol: cx
Measurement: LengthUnit: mm
Note: Value can be positive or negative.
Moment of Inertia about Y-Axis
Moment of Inertia about Y-Axis is defined as the moment of inertia of cross-section about YY.
Symbol: Iy
Measurement: Moment of InertiaUnit: kg·m²
Note: Value should be greater than 0.
Moment of Inertia about X-Axis
Moment of Inertia about X-Axis is defined as the moment of inertia of cross-section about XX.
Symbol: Ix
Measurement: Moment of InertiaUnit: kg·m²
Note: Value should be greater than 0.
Eccentricity with respect to Principal Axis XX
Eccentricity with respect to Principal Axis XX can be defined as the locus of points whose distances to a point (the focus) and a line (the directrix) are in a constant ratio.
Symbol: ey
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Eccentric Loading category

​Go Total Unit Stress in Eccentric Loading
f=(PAcs)+(PceIneutral)
​Go Cross-Sectional Area given Total Unit Stress in Eccentric Loading
Acs=Pf-((PceIneutral))

How to Evaluate Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane?

Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane evaluator uses Distance from XX to Outermost Fiber = ((Total Stress-(Axial Load/Cross-Sectional Area)-((Eccentricity with respect to Principal Axis YY*Axial Load*Distance from YY to Outermost Fiber)/(Moment of Inertia about Y-Axis)))*Moment of Inertia about X-Axis)/(Axial Load*Eccentricity with respect to Principal Axis XX) to evaluate the Distance from XX to Outermost Fiber, The Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane formula is defined as the distance between the x-axis and the outermost fiber. Distance from XX to Outermost Fiber is denoted by cy symbol.

How to evaluate Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane using this online evaluator? To use this online evaluator for Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane, enter Total Stress total), Axial Load (P), Cross-Sectional Area (Acs), Eccentricity with respect to Principal Axis YY (ex), Distance from YY to Outermost Fiber (cx), Moment of Inertia about Y-Axis (Iy), Moment of Inertia about X-Axis (Ix) & Eccentricity with respect to Principal Axis XX (ey) and hit the calculate button.

FAQs on Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane

What is the formula to find Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane?
The formula of Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane is expressed as Distance from XX to Outermost Fiber = ((Total Stress-(Axial Load/Cross-Sectional Area)-((Eccentricity with respect to Principal Axis YY*Axial Load*Distance from YY to Outermost Fiber)/(Moment of Inertia about Y-Axis)))*Moment of Inertia about X-Axis)/(Axial Load*Eccentricity with respect to Principal Axis XX). Here is an example- 294350.4 = ((14.8-(9990/13)-((4*9990*0.015)/(50)))*51)/(9990*0.75).
How to calculate Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane?
With Total Stress total), Axial Load (P), Cross-Sectional Area (Acs), Eccentricity with respect to Principal Axis YY (ex), Distance from YY to Outermost Fiber (cx), Moment of Inertia about Y-Axis (Iy), Moment of Inertia about X-Axis (Ix) & Eccentricity with respect to Principal Axis XX (ey) we can find Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane using the formula - Distance from XX to Outermost Fiber = ((Total Stress-(Axial Load/Cross-Sectional Area)-((Eccentricity with respect to Principal Axis YY*Axial Load*Distance from YY to Outermost Fiber)/(Moment of Inertia about Y-Axis)))*Moment of Inertia about X-Axis)/(Axial Load*Eccentricity with respect to Principal Axis XX).
Can the Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane be negative?
Yes, the Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane, measured in Length can be negative.
Which unit is used to measure Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane?
Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Distance from XX to outermost fiber given Total Stress where Load doesn't lie on Plane can be measured.
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