# Structural Engineering Calc.

> 90 Calculators and Converters related to Structural and Civil Engineering.

Canonical page: [https://chrome-stats.com/d/com.sis.StructuralEngineeringCalculator](https://chrome-stats.com/d/com.sis.StructuralEngineeringCalculator)

## Overview

- **ID:** `com.sis.StructuralEngineeringCalculator`
- **Platform:** Android
- **Type:** Android app
- **Status:** Available
- **Publisher:** Sparkle Solutions
- **Category:** BOOKS\_AND\_REFERENCE
- **Downloads:** 1,002
- **Version:** 5.1
- **Last updated:** 2022-12-09
- **First published:** 2012-07-31
- **Publisher country:** IN
- **Data as of:** 2026-09-14
- **Store listing:** [Google Play Store](https://play.google.com/store/apps/details?id=com.sis.StructuralEngineeringCalculator)
- **Website:** [http://www.sparklesolutions.net](http://www.sparklesolutions.net/)
- **Privacy policy:** [http://sparklesolutions.net/android/sec\_privacy\_policy.html](http://sparklesolutions.net/android/sec_privacy_policy.html)

## Description

Structural Engineering Calculator contains 90 calculators and converters, that can quickly and easily calculate and convert different Structural and Civil Engineering parameters. Automatic &amp; accurate calculations and conversions with every unit and value changes.<br><br>* Available in Metric and Imperial Units *<br><br>* Available in English, Français, Español, Italiano, Deutsch, Português &amp; Nederlands *<br><br>Structural Engineering Calculator contains following 58 Calculators:<br>•  Shear Capacity of Flexural Members <br>•  Critical Ratio <br>•  Effective Length Factor <br>•  Slenderness Ratio <br>•  Allowable Compressive Stress of Building Columns (Slenderness Ratio &lt; Critical Ratio) <br>•  Allowable Compressive Stress of Building Columns (Slenderness Ratio &gt; Critical Ratio) <br>•  Safety Factor<br><br>•  Maximum Load - Axially Loaded Members <br>•  Allowable Bending Stress (Compact Members) <br>•  Allowable Bending Stress (Noncompact Members) <br>•  Moment Gradient Factor <br>•  Allowable Stress - Compression Flange <br>•  Plastic Moment<br><br>•  Maximum Unbraced Length for Plastic Design (I-shaped Beams) <br>•  Maximum Unbraced Length for Plastic Design (Solid Rectangular Bars and Symmetrical Box Beams) <br>•  Laterally Unbraced Length - Full Plastic Bending Capacity (I Shapes and Channels) <br>•  Laterally Unbraced Length - Full Plastic Bending Capacity (Solid Rectangular Bars and Box Beams) <br>•  Laterally Unbraced Length - Full Plastic Bending Capacity (Solid Rectangular Bars bent about major axis)<br><br>•  Limiting Buckling Moment <br>•  Nominal Moment (Compact Beams) <br>•  Critical Elastic Moment - Compact Beams <br>•  Critical Elastic Moment - Solid Rectangular Bars and Symmetrical Box<br><br>•  Allowable Shear Stress <br>•  Allowable Shear Stress with Tension Field Action<br><br>•  Area required by the Bearing Plate (Plate Covering the Full Area of Concrete Support) <br>•  Area required by the Bearing Plate (Plate Covering less than the Full Area of Concrete Support) <br>•  Minimum Plate Thickness <br>•  Area required for a Base Plate under a Column supported by a Concrete <br>•  Plate Length <br>•  Thickness of Plate (Cantilever Bending) <br>•  Flange Thickness (H-shaped Column) <br>•  Web Thickness (H-shaped Column)<br><br>•  Actual Bearing Pressure under the Plate <br>•  Allowable Bearing Stress (Rollers/Rockers) <br>•  Web Depth/Thickness Ratio (Unstiffened Web) <br>•  Web Depth/Thickness Ratio (Transverse Stiffeners)<br><br>•  Deflection at the Top (Wall with Solid Rectangular Cross Section) <br>•  Deflection at the Top (Shear Wall with a Concentrated Load at the top) <br>•  Deflection at the Top (Fixed Wall against rotation at the top)<br><br>•  Combined Axial Compression (Ratio of Computed Axial Stress to Allowable Axial Stress &gt; 0.15) <br>•  Combined Axial Compression (Ratio of Computed Axial Stress to Allowable Axial Stress &lt;= 0.15) <br>•  Axial Stress for a Concentrated Load (Applied at a distance larger than depth of the beam from the end of the beam) <br>•  Axial Stress for a Concentrated Load (Applied close to the beam end)<br><br>•  Concentrated Load of Reaction (Applied at a distance from the beam end of atleast half the depth of beam) <br>•  Concentrated Load of Reaction (Applied closer than half the depth of beam) <br>•  Relative Slenderness of Web and Flange <br>•  Total Column Load (Relative Slenderness of Web and Flange &lt; 2.3) <br>•  Total Column Load (Relative Slenderness of Web and Flange &lt; 1.7) <br>•  Combined Cross-sectional Area of a pair of Column-Web Stiffeners <br>•  Column-Web Depth clear of Fillets <br>•  Thickness of Column Flange <br>•  Allowable Bearing Stress on Projected Area of Fasteners <br>•  Maximum Unit Stress in Steel <br>•  Maximum Stress in the Bottom Flange <br>•  Number of Shear Connectors<br><br>•  Total Horizontal Shear (Based on Area of Concrete Flange) <br>•  Total Horizontal Shear (Based on Area of Steel Beam) <br>•  Total Horizontal Shear (Based on Area of Longitudinal Reinforcement)<br><br><br>Structural Engineering Calculator also contains 32 Unit Converters related to Structural and Civil Engineering.<br><br>Most Comprehensive Structural Engineering Calculator

## Rankings

- #1,156,560 — Overall

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Source: [Chrome-Stats](https://chrome-stats.com/d/com.sis.StructuralEngineeringCalculator)
