Can force be distributed?

Can force be distributed?

A distributed force is any force where the point of application of the force is an area or a volume. Distributed forces can be broken down into surface forces and body forces. Surface forces are distributed forces where the point of application is an area (a surface on the body).

What indicates the way a force is distributed over an area quizlet?

Only $2.99/month. pressure. the result of a force distributed over an area.

What is the No Child Left Behind Act quizlet?

No Child Left Behind Act (NCLB) is part of the Individuals with Disabilities Education Act, a re-authorization of the Elementary and Secondary Education Act (ESEA). NCLB sets high standards and accountability for student achievement to make sure that all children are caught up to 21st century learning.

Which of the following is measured in anthropometry quizlet?

Anthropometry is defined as the physical measurement of body size and composition. Examples of anthropometric measurements include height, weight, circumference measurements, elbow diameter, % body fat, and arm muscle area. Anthropometrics are most useful for: determining a chronic imbalance of Protein and Energy.

Why does raising the temperature of a gas increase its pressure when other factors are kept constant?

The pressure law states that for a constant volume of gas in a sealed container the temperature of the gas is directly proportional to its pressure. This means that they have more collisions with each other and the sides of the container and hence the pressure is increased.

What is a real-life example of Boyle’s Law?

You can observe a real-life application of Boyle’s Law when you fill your bike tires with air. When you pump air into a tire, the gas molecules inside the tire get compressed and packed closer together. This increases the pressure of the gas, and it starts to push against the walls of the tire.

How Boyle’s Law is important in our life?

Boyle’s law is important because it tells us about the behavior of gasses. It explains, with certainty, that the pressure and volume of gas are inversely proportional to one another. So, if you push on gas, its volume becomes smaller and the pressure becomes higher.

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