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  1. 4 dni temu · Archimedes’ principle is very useful for calculating the volume of an object that does not have a regular shape. The oddly shaped object can be submerged, and the volume of the fluid displaced is equal to the volume of the object.

  2. 3 dni temu · The formula for calculating the density of an object using water displacement is given by: \ [ D = \frac {m} {FW - IW} \] where: \ (D\) is the density in grams per cubic centimeter (g/cm³), \ (m\) is the mass of the object in grams, \ (FW\) is the final water level in milliliters (mL), \ (IW\) is the initial water level in milliliters (mL).

  3. www.omnicalculator.com › physics › specific-gravitySpecific Gravity Calculator

    5 dni temu · To calculate the specific gravity of a substance, follow these easy steps: Isolate a known volume of the substance: V. Use a scale to measure the mass of that volume: m. Calculate the density of the substance with the ratio: ρ = m/V. Choose your reference substance and calculate its density: ρ₀ = m₀/V₀.

  4. 2 dni temu · Calculation Formula. Depending on what variable is unknown, one of the following SUVAT equations is used: \ ( s = ut + \frac {1} {2}at^2 \) \ ( u = \frac {s - \frac {1} {2}at^2} {t} \) \ ( v = u + at \) \ ( a = \frac {v^2 - u^2} {2s} \) \ ( t = \frac {v - u} {a} \) Example Calculation.

  5. 2 dni temu · T # Calculate slopes for x, y and z-axes for xyz in range (3): slopes [xyz], intercepts [xyz] = np. linalg. lstsq (x_edited, y [xyz], rcond =-1)[0] return slopes, intercepts def get_diffusion_coefficients (self): """ Returns diffusion coefficients for atoms (in alphabetical order) along with standard deviation.

  6. 1 dzień temu · Calculation Formula. The overburden pressure (\(P_o\)) is calculated using the formula: \[ P_o = 0.052 \times pb \times D \] where: \(P_o\) is the overburden pressure in psi, \(pb\) is the formation bulk density in ppg, \(D\) is the true vertical depth in feet. Example Calculation

  7. 3 dni temu · Simplified Formula. Fluid Pressure - P. (PSI) = Force (Pounds) / Area ( Sq. In.) P = F / A. Fluid Flow Rate - Q. GPM= Flow (Gallons) / Unit Time (Minutes) Q = V / T. Fluid Power in Horsepower - HP. Horsepower = Pressure (PSIG) × Flow (GPM)/ 1714.