There can be no conversion. A kilogram is a measure of mass. A metre is a measure of distance. The two measure different things and, according to basic principles of dimensional analysis, conversion from one to the other is not valid.
To find the acceleration, we can use Newton's second law: F = ma, where F is the force applied (28 N), m is the mass (4.04 kg), and a is the acceleration. Rearranging the formula to solve for acceleration gives a = F/m = 28 N / 4.04 kg ≈ 6.93 m/s^2. Therefore, the resulting acceleration is approximately 6.93 m/s^2.
1 percent of (28 kilograms) = 280 grams
The momentum of a particle is given by the formula p = mv, where p is the momentum, m is the mass, and v is the velocity. Substituting the values, we get momentum = 28 kg * 7.8 m/s = 218.4 kg m/s.
To convert megapascals (MPa) to kilograms-force meters (kg-m), you can use the formula: 1 MPa = 10197.1621 kg-m. So, you would multiply the megapascal value by 10197.1621 to get the equivalent value in kg-m.
P (momentum) = M * V 703 * 20.1 = 14130.3 kg m/s
To find the acceleration, we can use Newton's second law: F = ma, where F is the force applied (28 N), m is the mass (4.04 kg), and a is the acceleration. Rearranging the formula to solve for acceleration gives a = F/m = 28 N / 4.04 kg ≈ 6.93 m/s^2. Therefore, the resulting acceleration is approximately 6.93 m/s^2.
28 lbs converted to kg is 28 lbs* 1 kg 2.2046 lbs = 12.70058636 kg
1 percent of (28 kilograms) = 280 grams
28 kg = 61.7294 lb28 kg = 61.7294 lb28 kg = 61.7294 lb28 kg = 61.7294 lb28 kg = 61.7294 lb28 kg = 61.7294 lb
The density of water at 28 degrees Celsius is approximately 997.77 kg/m^3.
Yes engine oil has density but the temperature varies. For 0 degrees Celsius it is 899.0 kg/m^3. For 20 degrees it is 888.1 kg/m^3. For 40 degrees it is 876.0 kg/m^3. For 60 degrees it is 863.9 kg/m^3. For 80 degrees it is 852.0 kg/m^3. For 100 degrees it is 840.0 kg/m^3. For 120 degrees it is 828.9 kg/m^3. For 140 degrees it is 816.8 kg/m^3. For 150 degrees it is 810.3 kg/m^3.
The momentum of a particle is given by the formula p = mv, where p is the momentum, m is the mass, and v is the velocity. Substituting the values, we get momentum = 28 kg * 7.8 m/s = 218.4 kg m/s.
8mm dia : 0.395 kg/m 10mm dia : 0.617 kg/m 12mm dia : 0.888 kg/m 16mm dia : 1.579 kg/m 20mm dia : 2.467 kg/m 25mm dia : 3.855 kg/m These are standard unit weights based on the density of steel @ 7850 kg/m3
To convert cubic meters (m³) of M sand to kilograms (kg), you need to know the density of M sand, which typically ranges from 1,400 to 1,600 kg/m³. Assuming an average density of 1,500 kg/m³, 2.83 m³ of M sand would weigh approximately 4,245 kg (2.83 m³ × 1,500 kg/m³). Adjust the density used for more precise calculations based on specific sand characteristics.
16 kg
60 kg-m/s Just took the test
To convert 1 cubic meter (m³) of iron to kilograms (kg), you need to know the density of iron, which is approximately 7,870 kg/m³. Multiply the volume (1 m³) by the density: 1 m³ × 7,870 kg/m³ = 7,870 kg. Therefore, 1 m³ of iron is equivalent to approximately 7,870 kilograms.