# Timber Engineering Calculator

> 87 Calculators and Converters related to Timber and Civil Engineering.

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

## Overview

- **ID:** `com.sis.TimberEngineeringCalculator`
- **Platform:** Android
- **Type:** Android app
- **Status:** Available
- **Publisher:** Sparkle Solutions
- **Category:** PRODUCTIVITY
- **Downloads:** 270
- **Version:** 5.2
- **Last updated:** 2022-12-09
- **First published:** 2012-09-13
- **Publisher country:** IN
- **Data as of:** 2026-09-13
- **Store listing:** [Google Play Store](https://play.google.com/store/apps/details?id=com.sis.TimberEngineeringCalculator)
- **Website:** [http://www.sparklesolutions.net](http://www.sparklesolutions.net/)
- **Privacy policy:** [http://sparklesolutions.net/android/tim\_privacy\_policy.html](http://sparklesolutions.net/android/tim_privacy_policy.html)

## Description

Timber Engineering Calculator contains 87 calculators and converters, that can quickly and easily calculate and convert different timber 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>Timber Engineering Calculator contains following 55 Calculators:<br><br>•  Area of Section (Rectangular and Square Beam) <br>•  Moment of Inertia (Rectangular and Square Beam) <br>•  Distance from Axis to Extremities of Section (Rectangular and Square Beam) <br>•  Radius of Gyration (Rectangular and Square Beam) <br>•  Section Modulus (Rectangular and Square Beam)<br><br>•  Maximum Fiber Stress (Rectangular Timber Beam) <br>•  Maximum Fiber Stress using Section Modulus (Rectangular Timber Beam) <br>•  Horizontal Shearing Stress (Rectangular Timber Beam) <br>•  Horizontal Shearing Stress (Rectangular Timber Beam with a notch in the lower face at the end) <br>•  Modified Total End Shear (Concentrated Loads) <br>•  Modified Total End Shear (Uniform Loading)<br><br>•  Allowable Unit Stress on Timber Columns (Single Piece of Lumber/Group of Pieces glued together) <br>•  Allowable Unit Stress on Timber Columns (Square/Rectangular Cross Section) <br>•  Allowable Unit Stress on Timber Columns (Circular Cross Section) <br>•  Allowable Unit Compressive Stress (Load is at an angle to the grain) <br>•  Allowable Stress - Rectangular Section (National Design Specification) <br>•  Allowable Compressive Stress inclined to grain (Hankinson&#39;s Equation)<br><br>•  Extreme-Fiber Bending - Adjusted Design Value <br>•  Tension - Adjusted Design Value <br>•  Shear - Adjusted Design Value <br>•  Compression perpendicular to the grain - Adjusted Design Value <br>•  Compression parallel to the grain - Adjusted Design Value <br>•  End grain in bearing parallel to the grain - Adjusted Design Value <br>•  Modulus of Elasticity - Adjusted Design Value<br><br>•  Size Factor <br>•  Volume Factor (Southern Pine) <br>•  Volume Factor (Other Species) <br>•  Radial Stress induced by a Bending Moment <br>•  Curvature Factor <br>•  Bearing Area Factor <br>•  Slenderness Ratio for Beams<br><br>•  Allowable Withdrawal Load (Nails and Spikes penetration) <br>•  Total Allowable Lateral Load - Group I, II, III, IV Wood (Nails and Spikes penetration) <br>•  Allowable Withdrawal Load (Threaded portion of a Wood Screw penetration) <br>•  Total Allowable Lateral Load - Group I, II, III, IV Wood (Wood Screws penetration)<br><br>•  Bolts - Adjusted Design Value for Lateral Loading <br>•  Split-Ring and Shear-Plate Connectors - Adjusted Value for Loading Parallel to Grain <br>•  Split-Ring and Shear-Plate Connectors - Nominal Value for Loading Normal to Grain <br>•  Nails and Spikes - Adjusted Design Value for Withdrawal <br>•  Nails and Spikes - Adjusted Design Value for Lateral Loading <br>•  Wood Screws - Adjusted Design Value for Withdrawal <br>•  Wood Screws - Adjusted Design Value for Lateral Loading <br>•  Lag Screws - Adjusted Design Value for Withdrawal <br>•  Lag Screws - Adjusted Design Value for Lateral Loading <br>•  Metal Plate Connectors - Adjusted Design Value for Lateral Loading <br>•  Drift Bolts and Drift Pins - Adjusted Design Value for Withdrawal <br>•  Drift Bolts and Drift Pins - Adjusted Design Value for Lateral Loading <br>•  Spike Grids - Adjusted Design Value for Lateral Loading <br>•  Stress and Deflection Factor (Ponding)<br><br><br>Timber Engineering Calculator contains following 32 Converters:<br><br>• Acceleration <br>• Angle <br>• Area <br>• Density <br>• Energy/Work <br>• Flow Rate (Mass) <br>• Flow Rate (Volume) <br>• Fluid <br>• Force <br>• Frequency <br>• Hardness <br>• Length <br>• Mass <br>• Metric Weight <br>• Metrology <br>• Moment of Force <br>• Moment of Inertia <br>• Prefixes <br>• Pressure <br>• Radiation <br>• Specific Heat Capacity <br>• Specific Volume <br>• Temperature <br>• Thermal Conductivity <br>• Thermal Expansion <br>• Time <br>• Torque <br>• Velocity <br>• Viscosity (Dynamic) <br>• Viscosity (Oil &amp; Water) <br>• Viscosity (Kinematic) <br>• Volume<br><br>Most Comprehensive Timber Engineering Calculator

## Rankings

- #1,600,188 — Overall

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