haha u suck at life (:
it is actually caused by tension not "haha you suck at life."
In a reverse fault the maximum principal stress is horizontal, compression causes reverse (thrust) faults.
The Sierra Nevada mountain range in the United States is an example of a fault-block mountain. This range was formed by the tectonic forces that caused the hanging wall to rise and the footwall to drop along a normal fault. The distinctive block-like shape of the Sierra Nevada is a result of this movement.
Rift block mountain and rift block valley are landforms that are created by the movement of tectonic plates. Rift block mountains are formed when blocks of the Earth's crust are uplifted along fault lines, creating mountain ranges. Rift block valleys are formed when blocks of the Earth's crust are dropped down between two parallel faults, creating low-lying valleys. These landforms are commonly found in rift zones, where tectonic plates are moving away from each other.
A rift valley mountain range is formed when tension causes large blocks of crust to drop down. This type of mountain range typically has steep fault scarps along the edges of the blocks that have dropped down. An example of this type of mountain range is the East African Rift.
Fault block mountain can be high.
Stone slabs are stronger under compression than tension. This is because most stone materials are able to withstand higher forces when being compressed rather than being pulled apart. Stress is distributed more evenly and effectively in compression, making stone slabs less likely to fail compared to tension.
The type of mountain that forms when forces pull from opposite directions is the fault-block mountain.
A Reverse fault is happens when tectonic forces cause compression that PUSHES rocks together. Normal fault happens when tectonic forces cause tension that PULLS rocks apart.Normal fault is when the hanging block moves down relative to foot block wall where as the reverse fault is formed when the hanging block wall moves up relative to the foot block walls a result of tension and compression force respectively
It's a fault-block mountains :)
It's a fault-block mountains :)
The tension in the rope is equal to the weight of the hanging block when the block is stationary and not accelerating.
Rebar is used to strengthen and support concrete structures. Concrete on its own is very strong when it comes to handling compression, but it can crack or fail when stretched or bent. That’s where rebar comes in. Rebar, or reinforcing steel bars, helps concrete handle tension and bending forces. By adding rebar to concrete, engineers make sure that buildings, bridges, foundations, and other structures stay safe and hold up well under various loads and stresses. The placement and detailing of rebar are just as important as the concrete itself. Rebar must be arranged in a way that it can resist the forces the structure will face over time. This is why detailed drawings and planning are essential. Silicon Engineering Consultants provides professional rebar detailing services that help ensure rebar is placed correctly according to design and safety standards. These services help builders avoid mistakes during construction and improve the long-term durability of the structure. In short, rebar is used to make concrete structures stronger, safer, and more reliable, and proper rebar detailing plays a key role in that process.
In a reverse fault the maximum principal stress is horizontal, compression causes reverse (thrust) faults.
The Sierra Nevada mountain range in the United States is an example of a fault-block mountain. This range was formed by the tectonic forces that caused the hanging wall to rise and the footwall to drop along a normal fault. The distinctive block-like shape of the Sierra Nevada is a result of this movement.
The tension in the string as the block falls is the force exerted by the string to support the weight of the block and keep it from accelerating too quickly.
Rift block mountain and rift block valley are landforms that are created by the movement of tectonic plates. Rift block mountains are formed when blocks of the Earth's crust are uplifted along fault lines, creating mountain ranges. Rift block valleys are formed when blocks of the Earth's crust are dropped down between two parallel faults, creating low-lying valleys. These landforms are commonly found in rift zones, where tectonic plates are moving away from each other.
No it is relict mountain