The formula for Ideal Mechanical Advantage (IMA) is given by the ratio of the distance over which the effort force is applied to the distance over which the load is moved. Mathematically, it can be expressed as:
[ \text{IMA} = \frac{\text{Distance moved by effort}}{\text{Distance moved by load}} ]
In the case of simple machines like levers, pulleys, and inclined planes, the IMA helps to determine how much the machine amplifies the input force.
Efficiency can be calculated using the formula: Efficiency (%) = (Actual Mechanical Advantage / Ideal Mechanical Advantage) × 100. In this case, the efficiency would be (3 / 4) × 100 = 75%. Therefore, the device has an efficiency of 75%.
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Efficiency can be calculated using the formula: Efficiency (%) = (Actual Mechanical Advantage / Ideal Mechanical Advantage) × 100. In this case, the efficiency would be (3 / 4) × 100 = 75%. Therefore, the device has an efficiency of 75%.
The ideal MA is 47.
Based on the Robinson formula (1983), your ideal weight is 138.0 lbsBased on the Miller formula (1983), your ideal weight is 141.1 lbsBased on the Devine formula (1974), your ideal weight is 140.9 lbsBased on the Hamwi formula (1964), your ideal weight is 139.1 lbsBased on the healthy BMI recommendation, your recommended weight is 121.7 lbs - 164.4 lbs
ma/cax100
the formula for determing ideal mechanical advantage is effort divided by resistance
5 feet = 100 lbsEvery inch after 5 feet is 5 lbs5ft 5" = 125 lbsAnswer:Different authorities have different "ideal" weights. Based on the Robinson formula (1983), your ideal weight is 111.8 lbsBased on the Miller formula (1983), your ideal weight is 120.1 lbsBased on the Devine formula (1974), your ideal weight is 105.4 lbsBased on the Hamwi formula (1964), your ideal weight is 105.2 lbs
To convert milliamperes (mA) to watts (W), you need to know the voltage (V) in volts that the current is operating at. The formula is: Watts (W) = Volts (V) × Amperes (A). Since 1 mA is equal to 0.001 A, you can convert mA to A and then use the formula: W = V × (mA/1000).
MA= resistance force / effort force = Fr/Fe
Based on the Robinson formula (1983), your ideal weight is 144.0 lbsBased on the Miller formula (1983), your ideal weight is 145.7 lbsBased on the Devine formula (1974), your ideal weight is 145.7 lbsBased on the Hamwi formula (1964), your ideal weight is 147.5 lbsBased on the healthy BMI recommendation, your recommended weight is 118.1 lbs - 159.6 lbs
F=ma is the formula that describes Newton's second law.
convert temperature to milliampers
Any chemical element; it is an error.