Tension implies that it would be pulled. House columns are subject to compression.
Straws are typically stronger under tension, which means they are better at withstanding a pulling force rather than a pushing force. This is because the material of the straw is more likely to deform or buckle under compression rather than stretch or break under tension.
Glass is stronger under compression than under tension. When subjected to compressive forces, the atoms in glass are pushed together, making it more resistant to breaking. In contrast, tension forces can cause glass to deform and eventually break due to the atoms being pulled apart.
Leaving the spring of the hardness tester under tension for extended periods can lead to deformation or permanent set, affecting its accuracy and reliability. Releasing the tension when not in use helps maintain the spring's elasticity and ensures consistent hardness test results.
Bone is typically weaker under tension forces compared to compression forces. This means that bone is more likely to break or fracture when subjected to stretching or pulling forces rather than pushing or compressive forces.
Bone is strong under tension due to its composition of collagen fibers, which provide flexibility and resistance to stretching, and mineralized bone matrix, mainly made of calcium and phosphorus, which give it hardness and strength. This combination allows bone to withstand tension without breaking easily.
ionic columns
There are six columns in FRONT of the white house.
the columns/pillars at the white house represent strength and eternity
tension; under a tensile stress ========================
You cannot have a table without columns. Columns are what make up the structure of a table. It would be like a house without walls.
Yes, you can look in google images and see ionic columns.
From what I know they are Ionic because or the scrolls at the top and in pictures of the white house you can see that clearly. :]
the White House
What tension bolt? There are many bolts under tension.
normal
Straws are typically stronger under tension, which means they are better at withstanding a pulling force rather than a pushing force. This is because the material of the straw is more likely to deform or buckle under compression rather than stretch or break under tension.
flexible