Using a system of pulleys, a circular object (diameter 4.74 cm)
is angularly accelerated (with a mass of 5 grams). Obtaining this,
the maximum acceleration within a group of random graphic shots of
different objects.
Calculate the experimental moment of inertia of it.
Do not include the units, and express it to 4
significant figures without rounding, and without scientific
notation, and use g=9.8 ms2
Usando un sistema de poleas, un objeto circular (de diametro 4.74cm), se acelera angularmente con una masa de 5 gramos). Obteniendo este, la maxima aceleracion dentro de un grupo de tomas graficas aleatorias de diferentes objetos. Calcule el momento de inercia experimental del mismo. No incluya las unidades, y expreselo a 4 cifras significativas sin redondear, y sin notacion cientifica, y utilize g=9.8 ms2 1.6 1.4 Linear Fit m ( Slope) b(Y Intercept) r Mean Squared Error Root MSE 1.2 3.86 +0.0066 -2.78 +0.0063 1.00 000 0.00225 1.0 0.8 Linear Fit m (Slope) b(Y Intercept) r Mean Squared Error Root MSE 0.188 + 4.5E-4 -0.170 + 9.2E-4 1.00 000 0.00159 Velocity, Ch1&2 Run #1 Velocity, Ch1&2 Run #2 Velocity, Ch1&2 Run #3 0 Velocity(m/s) 0.6 0.4 0.2 Linear Fit m (Slope) 0.0388 2.7E-4 b(Y Intercept) -0.0166 + 7.1 E-4 r 0.998 Mean Squared Error 1.11E-5 Root MSE 0.00334 0.0 0.0 0.5 1.0 1.5 3.0 3.5 4.0 4.5 2.0 2.5 Time(s)
Usando un sistema de poleas, un objeto circular (de diametro 4.74cm), se acelera angularmente con una masa de 5 gramos).
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Usando un sistema de poleas, un objeto circular (de diametro 4.74cm), se acelera angularmente con una masa de 5 gramos).
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