The force exerted on a surface is calculated by multiplying the pressure by the area of the surface. If the pressure is 99500 Pa and the area of surface M square is known, you can calculate the force by multiplying the pressure by the area.
The force exerted on a 2.5m² square when the pressure is 99500 Pa can be calculated using the formula: Force = Pressure × Area. Substituting the values, we get: Force = 99500 Pa × 2.5 m² = 248750 N. So, the force exerted on the square would be 248750 Newtons.
The force exerted on an object can be calculated using the formula Force = Pressure x Area. Given a pressure of 99500 Pa and an area of 2.5 m², the force exerted on the object would be 99500 Pa x 2.5 m² = 248750 Newtons.
The force exerted on an object can be calculated using the formula: Force = Pressure x Area. If the pressure is 99500 pascals and the area of the object M squared is given, you can multiply the pressure by the area to find the force.
The basic S>I> units for Pascals, is kg m s^-2 / m^2 . That is Force divided by Area. Hence Pressure(Pa) = force/ area. Algebraically rearraning Force = Pascals X Area. Hence Force = 99500 X 2.5 = 248750 kg m s^-2 ( Newtons).
The force exerted on the surface can be calculated using the formula: Force = Pressure x Area. Substituting the values given: Force = 99500 Pa x 2.5 m^2 = 248,750 N. Therefore, a force of 248,750 Newtons is exerted on the 2.5 m^2 surface.
The force exerted on a 2.5m² square when the pressure is 99500 Pa can be calculated using the formula: Force = Pressure × Area. Substituting the values, we get: Force = 99500 Pa × 2.5 m² = 248750 N. So, the force exerted on the square would be 248750 Newtons.
The force exerted on an object can be calculated using the formula Force = Pressure x Area. Given a pressure of 99500 Pa and an area of 2.5 m², the force exerted on the object would be 99500 Pa x 2.5 m² = 248750 Newtons.
The force exerted on an object can be calculated using the formula: Force = Pressure x Area. If the pressure is 99500 pascals and the area of the object M squared is given, you can multiply the pressure by the area to find the force.
The basic S>I> units for Pascals, is kg m s^-2 / m^2 . That is Force divided by Area. Hence Pressure(Pa) = force/ area. Algebraically rearraning Force = Pascals X Area. Hence Force = 99500 X 2.5 = 248750 kg m s^-2 ( Newtons).
The force exerted on the surface can be calculated using the formula: Force = Pressure x Area. Substituting the values given: Force = 99500 Pa x 2.5 m^2 = 248,750 N. Therefore, a force of 248,750 Newtons is exerted on the 2.5 m^2 surface.
The force exerted on a surface divided by the area over which the force is exerted gives the pressure acting on that surface. Pressure is defined as force per unit area and is measured in units like Pascals or pounds per square inch (PSI).
The force exerted on a surface divided by the area over which the force is exerted is called pressure. Mathematically, pressure is defined as force divided by area (P = F/A), measured in units such as Pascals (Pa) or pounds per square inch (psi).
That is called pressure. For example, the SI unit for pressure is the Pascal, which is equal to newtons / square meters.
The force exerted on a surface divided by the total area over which the force is exerted is the pressure. Pressure = Force / Area Pascals = Newtons/ square meters Pa = N/m^2 or psi = lb/in^2 (pounds per square inch)
This is the definition of pressure. Pressure is measured in units of force per unit area, such as pounds per square inch (psi) or pascals (Pa). It quantifies how force is distributed over a given area.
The pressure exerted by the book on the table can be calculated using the formula: pressure = force/area. In this case, force = 9 Newtons and area = 0.3 square meters. Therefore, the pressure exerted by the book on the table is 30 Pascals (Pa).
The force exerted by the atmosphere is called atmospheric pressure. At sea level, atmospheric pressure is about 14.7 pounds per square inch (psi) or 101.3 kilopascals (kPa). Atmospheric pressure decreases with increasing altitude.