Mechanics of solids Concepts of stress, strain, and elasticity Beams, columns, plates, and shells The general theory of elasticity Stress concentrations and fracture Dislocations Viscoelasticity Computational mechanics Basic Principles Linear and angular momentum principles: stress and equations of motion Stress Equations of motion Geometry of deformation Small-strain tensor Finite deformation and strain tensors Stress-strain relations Thermal strains Thermodynamic considerations Finite elastic deformations Equations of motion of linear elastic bodies Static Equilibrium Force and Moment Internal Forces in Members of a Truss Structure Internal Forces and Moments in Beams Indeterminate Systems Material Properties and Failure Phenomena "Mechanics of solids", "Concepts of stress, strain, and elasticity", "Beams, columns, plates, and shells", "The general theory of elasticity", "Stress concentrations and fracture", "Dislocations", "Viscoelasticity", "Computational mechanics", "Basic Principles", "Linear and angular momentum principles: stress and equations of motion", "Stress", "Equations of motion", "Geometry of deformation", "Small-strain tensor", "Finite deformation and strain tensors", "Stress-strain relations", "Thermal strains", "Thermodynamic considerations", "Finite elastic deformations", "Equations of motion of linear elastic bodies", "Static Equilibrium Force and Moment", "Internal Forces in Members of a Truss Structure", "Internal Forces and Moments in Beams", "Indeterminate Systems", "Material Properties and Failure Phenomena" stringArrayList.add("Mechanics of solids"); stringArrayList.add("Concepts of stress, strain, and elasticity"); stringArrayList.add("Beams, columns, plates, and shells"); stringArrayList.add("The general theory of elasticity"); stringArrayList.add("Stress concentrations and fracture"); stringArrayList.add("Dislocations"); stringArrayList.add("Viscoelasticity"); stringArrayList.add("Computational mechanics"); stringArrayList.add("Basic Principles"); stringArrayList.add("Linear and angular momentum principles: stress and equations of motion"); stringArrayList.add("Stress"); stringArrayList.add("Equations of motion"); stringArrayList.add("Geometry of deformation"); stringArrayList.add("Small-strain tensor"); stringArrayList.add("Finite deformation and strain tensors"); stringArrayList.add("Stress-strain relations"); stringArrayList.add("Thermal strains"); stringArrayList.add("Thermodynamic considerations"); stringArrayList.add("Finite elastic deformations"); stringArrayList.add("Equations of motion of linear elastic bodies"); stringArrayList.add("Static Equilibrium Force and Moment"); stringArrayList.add("Internal Forces in Members of a Truss Structure"); stringArrayList.add("Internal Forces and Moments in Beams"); stringArrayList.add("Indeterminate Systems"); stringArrayList.add("Material Properties and Failure Phenomena"); if (selected.equals("Mechanics of solids")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/1.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Concepts of stress, strain, and elasticity")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/2.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Beams, columns, plates, and shells")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/3.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("The general theory of elasticity")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/4.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Stress concentrations and fracture")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/5.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Dislocations")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/6.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Viscoelasticity")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/7.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Computational mechanics")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/8.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Basic Principles")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/9.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Linear and angular momentum principles: stress and equations of motion")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/10.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Stress")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/11.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Equations of motion")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/12.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Geometry of deformation")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/13.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Small-strain tensor")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/14.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Finite deformation and strain tensors")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/15.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Stress-strain relations")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/16.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Thermal strains")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/17.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Thermodynamic considerations")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/18.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Finite elastic deformations")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/19.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Equations of motion of linear elastic bodies")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/20.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Static Equilibrium Force and Moment")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/21.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Internal Forces in Members of a Truss Structure")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/22.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Internal Forces and Moments in Beams")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/23.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Indeterminate Systems")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/24.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); } if (selected.equals("Material Properties and Failure Phenomena")) { Intent i = new Intent(MainActivity.this, DetailActivity.class); i.putExtra("id", position); i.putExtra("url" , "file:///android_asset/25.htm" ); i.putExtra( "value", adapter.getItem(position)); startActivity(i); }