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  1. 3 dni temu · According to the unit load method, which is also known as virtual work method, the deflection of a joint of truss is given by the formula: δ Ε = (ΣNnL)/AE. The member forces should be calculated two times.

  2. 27 cze 2024 · The basic formula to calculate displacement is a reworking of the velocity formula: d = vt. Where d is displacement, v is average velocity, and t is the time period, or the time it took to get from point A to B. If the object has constant velocity, solving for displacement is straightforward.

  3. 5 dni temu · Calculation Formula. The displacement of a submarine can be approximated using a simplified formula: \ [ \text {Displacement (tons)} = 0.1 \times \text {Length (m)} \times \text {Beam (m)} \times \text {Draft (m)} \] This formula provides a rough estimate and is based on the submarine's dimensions.

  4. en.wikipedia.org › wiki › Hooke's_lawHooke's law - Wikipedia

    4 dni temu · Let x be the amount by which the free end of the spring was displaced from its "relaxed" position (when it is not being stretched). Hooke's law states that F s = k x {\displaystyle F_{s}=kx} or, equivalently, x = F s k {\displaystyle x={\frac {F_{s}}{k}}} where k is a positive real number, characteristic of the spring.

  5. 22 cze 2024 · According to the authors in [], when calculating the tornadic velocity time-history at a targeted position on the tornado passage, T and R formulated in and should be adjusted to consider the net effect of the no-zero translating of the tornado with velocity V T (see Figure 2 for the required adjustments).With reference to Reference [], the F3 grade tornado with V max = 74.1m/s and r max = 50m ...

  6. 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).

  7. 6 dni temu · Calculation Formula. The displacement (\(d\)) of an object can be calculated when the average velocity (\(v\)) and the time (\(t\)) of motion are known: \[ d = v \times t \] For uniformly accelerated motion, the formula expands to: \[ d = v_i \times t + \frac{1}{2} a \times t^2 \] where: \(d\) is the displacement, \(v_i\) is the initial velocity,