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Slab Force at maximum positive moments. Check FAQs
Pon slab=NΦSultimate-P3
Pon slab - Slab Force?N - No of Connector in Bridge?Φ - Reduction Factor?Sultimate - Ultimate Shear Connector Stress?P3 - Force in Slab at Negative Moment Point?

Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges Example

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Here is how the Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges equation looks like with Values.

Here is how the Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges equation looks like with Units.

Here is how the Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges equation looks like.

245Edit=15Edit0.85Edit20Edit-10Edit
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Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges Solution

Follow our step by step solution on how to calculate Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges?

FIRST Step Consider the formula
Pon slab=NΦSultimate-P3
Next Step Substitute values of Variables
Pon slab=150.8520kN-10kN
Next Step Convert Units
Pon slab=150.8520000N-10000N
Next Step Prepare to Evaluate
Pon slab=150.8520000-10000
Next Step Evaluate
Pon slab=245000N
LAST Step Convert to Output's Unit
Pon slab=245kN

Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges Formula Elements

Variables
Slab Force
Slab Force at maximum positive moments.
Symbol: Pon slab
Measurement: ForceUnit: kN
Note: Value can be positive or negative.
No of Connector in Bridge
No of Connector in Bridge is total number of joints.
Symbol: N
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Reduction Factor
Reduction Factor is constant term used as factor for load calculation.
Symbol: Φ
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Ultimate Shear Connector Stress
Ultimate Shear Connector Stress is the maximum strength in shear.
Symbol: Sultimate
Measurement: ForceUnit: kN
Note: Value can be positive or negative.
Force in Slab at Negative Moment Point
Force in Slab at negative moment point is the force where maximum negative occurs.
Symbol: P3
Measurement: ForceUnit: kN
Note: Value can be positive or negative.

Other Formulas to find Slab Force

​Go Force in Slab given Number of Connectors in Bridges
Pon slab=NΦSultimate
​Go Force in Slab given Total Area of Steel Section
Pon slab=Astfy
​Go Force in Slab given Effective Concrete Area
Pon slab=0.85Aconcretefc
​Go Force in Slab at Maximum Negative Moments given Reinforcing Steel Yield Strength
Pon slab=Astfy

Other formulas in Number of Connectors in Bridges category

​Go Number of Connectors in Bridges
N=Pon slabΦSultimate
​Go Reduction Factor given Number of Connectors in Bridges
Φ=Pon slabNSultimate
​Go Ultimate Shear Connector Strength given Number of Connectors in Bridges
Sultimate=Pon slabNΦ
​Go Total Area of Steel Section given Force in Slab
Ast=Pon slabfy

How to Evaluate Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges?

Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges evaluator uses Slab Force = No of Connector in Bridge*Reduction Factor*Ultimate Shear Connector Stress-Force in Slab at Negative Moment Point to evaluate the Slab Force, The Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges formula is defined as force acting at particular point. Slab Force is denoted by Pon slab symbol.

How to evaluate Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges using this online evaluator? To use this online evaluator for Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges, enter No of Connector in Bridge (N), Reduction Factor (Φ), Ultimate Shear Connector Stress (Sultimate) & Force in Slab at Negative Moment Point (P3) and hit the calculate button.

FAQs on Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges

What is the formula to find Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges?
The formula of Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges is expressed as Slab Force = No of Connector in Bridge*Reduction Factor*Ultimate Shear Connector Stress-Force in Slab at Negative Moment Point. Here is an example- 0.245 = 15*0.85*20000-10000.
How to calculate Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges?
With No of Connector in Bridge (N), Reduction Factor (Φ), Ultimate Shear Connector Stress (Sultimate) & Force in Slab at Negative Moment Point (P3) we can find Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges using the formula - Slab Force = No of Connector in Bridge*Reduction Factor*Ultimate Shear Connector Stress-Force in Slab at Negative Moment Point.
What are the other ways to Calculate Slab Force?
Here are the different ways to Calculate Slab Force-
  • Slab Force=No of Connector in Bridge*Reduction Factor*Ultimate Shear Connector StressOpenImg
  • Slab Force=Area of Steel Reinforcement*Yield Strength of SteelOpenImg
  • Slab Force=0.85*Effective Concrete Area*28 Day Compressive Strength of ConcreteOpenImg
Can the Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges be negative?
Yes, the Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges, measured in Force can be negative.
Which unit is used to measure Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges?
Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges is usually measured using the Kilonewton[kN] for Force. Newton[kN], Exanewton[kN], Meganewton[kN] are the few other units in which Force in Slab at Maximum Positive Moments given Minimum Number of Connectors for Bridges can be measured.
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