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Tension is a pulling force that stretches or elongates a material, while pressure is a pushing force that compresses or squeezes a material. Tension and pressure are related in that they both cause stress on materials, but in different ways. Tension tends to cause materials to elongate or deform, while pressure tends to cause materials to compress or buckle. Both tension and pressure can lead to structural failure if the material cannot withstand the forces applied.

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What are the effects of 9 atmospheres of pressure on deep-sea exploration equipment?

The effects of 9 atmospheres of pressure on deep-sea exploration equipment can include increased stress on the equipment, potential structural damage, and the need for specialized materials to withstand the pressure.


What is the relationship between helium pressure and its effects on gas-filled balloons?

The relationship between helium pressure and its effects on gas-filled balloons is that as the pressure of helium inside the balloon increases, the balloon expands and rises. This is because the higher pressure of helium pushes against the walls of the balloon, causing it to inflate and float.


How do pressure differences explain destructive effects of a tornadoes winds?

The low pressure inside a tornado pulls air inward. This air accelerates to great speeds as it enters the tornado, though due to the spin not much of the air actually reaches the center. Generally lower pressure means faster winds, and thus more potential for damage.


What are the effects of high temperature and pressure on the behavior of materials?

High temperature and pressure can alter the behavior of materials by causing changes in their physical and chemical properties. At high temperatures, materials may soften, melt, or even vaporize, while high pressure can compress materials, making them denser or causing them to undergo phase transitions. These conditions can also affect the strength, conductivity, and other characteristics of materials, leading to potential changes in their mechanical, electrical, or thermal properties.


What is thermal induction and please explain Seebeck and Peltier effect?

Thermal induction refers to the generation of electric currents through temperature differences in a material. The Seebeck effect involves the creation of a voltage between two different materials when there is a temperature difference between them, while the Peltier effect is the absorption or release of heat when an electric current flows through a junction between two different materials. These effects are the basis of thermoelectric energy conversion.

Related Questions

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How do pressure differences explain destructive effects of a tornadoes winds?

The low pressure inside a tornado pulls air inward. This air accelerates to great speeds as it enters the tornado, though due to the spin not much of the air actually reaches the center. Generally lower pressure means faster winds, and thus more potential for damage.


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Calculate the hydrostatic difference in blood pressure between the brain and the foot in a person of height 1.83mthe density of blood is 1.06103 kgm3?

We estimate the pressure difference (specifically due to hydrostatic effects) as follows:Δp = ρgΔh =(pgh1-pgh2)(1.06 × 103 kg/m3) (9.8m/s2) (1.83 m-0) =1.90 × 104 Pa .


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What is the difference of positive effects and benefits?

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