tornadeos, severe car crashes, hurricans
The three different places on a bridge that would experience different forces are the supports (where vertical forces are highest), the center span (where compression and tension forces are highest), and the connections between bridge sections (where shear forces are highest).
To activate the bridge you must first kill Varoon and then destroy the three bridge panels. That will activate the bridge.
The forces that acts on the bridge is the way the bridge is built or the mass that is put on the bridge. Some are different it only depends on how the bridge is built.
The Tower Bridge of London is primarily subjected to three main forces: compression, tension, and shear. Compression forces act downwards on the bridge, pushing the structure together. Tension forces act upwards, pulling the structure apart. Shear forces act parallel to the surface, causing different parts of the bridge to slide past each other. These forces must be carefully considered in the design and maintenance of the bridge to ensure its structural integrity.
The Millenium Bridge.
The main forces that affect bridges are gravitational forces (weight of the bridge and loads on it), tension forces (pulling forces on the bridge elements), compression forces (pushing forces on the bridge elements), and lateral forces (such as wind or earthquakes). These forces can cause stress, deflection, or deformation in the bridge structure, potentially leading to structural failure if not properly managed.
The Mothman did not destroy any bridge. There were reports of sightings of the Mothman near the Silver Bridge in Point Pleasant, West Virginia, prior to its collapse in 1967, but there is no evidence to suggest that the Mothman caused the bridge to fall.
True.
external forces and internal forces
A cantilever bridge primarily experiences three types of forces: tension, compression, and bending. The cantilever arms, which extend horizontally from a central support, are in tension on the upper side and in compression on the lower side when a load is applied. The bridge's weight and loads create bending moments that generate these forces, necessitating a careful design to ensure stability and safety. Additionally, shear forces act vertically at the supports, affecting the overall structural integrity.
A Southern citizen who had tried to destroy a bridge.
Tension and Compression