Depends on what they are made of. Resistance to tension is a property possessed primarily by materials, although the shape of the materials can have a lesserinfluence on that property. For example a pillar of chalk will have very little ability to withstand tension when compared to the greater strength of a pillar of the same size and shape which is made out of steel.
The ability of a string to withstand tension force is called tensile strength. It refers to the maximum amount of tensile (pulling) force a material can withstand before breaking. Tensile strength is an important property in materials such as ropes, cables, and textiles.
tensile strength
Tension occurs at the top of the arch, in the upper portion of the arch's structure. This is where the arch experiences pulling forces as it resists the downward force exerted by the weight of the wall above it.
Spongy bone
Skin cells, specifically keratinocytes, are designed to withstand friction and tension. These cells are found in the outer layer of the skin and produce a tough protein called keratin, which provides strength and resilience to the skin.
Tensile strength measures how much pulling or tension a material can withstand before breaking or deforming. It is an important property to consider in applications where materials need to resist stretching or elongation.
Brick, stone, concrete, iron, wood, steel. Providing it will withstand the loads and forces!
Carrying a load in tension means the material or structure is being pulled or stretched. Tension is a force that stretches and elongates an object, like a rope being pulled tight. It is important to ensure that materials used to carry loads in tension have sufficient strength to withstand the pulling forces.
They are five pillars of Islam faith. They are not materialistic pillars as the building pillars. These pillars of Islam are referred to in question below.
Compact bone tissue is adapted to support weight and withstand tension stress due to its dense structure and arrangement of osteons. These osteons are aligned in the direction of stress to provide strength and stability to the bone. This compact arrangement makes it ideal for weight-bearing and resisting tension.
Tendons and ligaments are composed of collagen fibers, which provide strength and flexibility to withstand tension along their axis. The collagen fibers are arranged in a parallel fashion in tendons to provide tensile strength, while they are more wavy and crimped in ligaments to allow for some elasticity.
The organelle that helps external skin cells withstand friction and tension is called desmosomes. Desmosomes are specialized cell junctions that connect neighboring skin cells, providing strength and stability to the tissue. They help skin cells adhere to each other and resist mechanical stresses.