An arm's length is a distance approximately equal to the length of a human arm, sometimes used figuratively.
Yesh
25 inches.
The answer depends on what you are actually asking. If you mean 54 ft x the length of 10 legs + the length of 20 arms, then you can express it as "54 ft x (the length of 10 legs + the length of 20 arms)". If you know the actual length of each leg & each arm, then you could add the lengths of each leg & the lengths of each arm & and you could maken an expression such as: "54 ft x (TL leg ft + TL arm ft) If you know the average leg length & average arm length, then you could maken an expression such as: "54 ft x (10 x aver leg len + 20 x aver arm len) Lastly, if you know such lengths, you could multiple 54 x TL length of the appendage to arrive at total square feet number.
Not if you are a normal human being. The distance from the fingertips of your outstretched arm to somewhere on the opposite collarbone is likely to be nearer a metre.
An arm's length is a distance approximately equal to the length of a human arm, sometimes used figuratively.
Divide the length of the force arm by the length of the resistance arm.
Generally, the best stick length is for the shaft to be the length of your arm; however, just a standard stick length seems to work best for most people. If you cut it to your arm length, it makes it easier to maneuver. But, a really good lacrosse player can maneuver the stick regardless.
The length of one arm is about 40% of your height
To find the mechanical advantage (MA) of a lever, you can calculate it by dividing the length of the effort arm by the length of the load arm. The formula is MA = Le / Ll, where Le is the length of the effort arm and Ll is the length of the load arm.
there is a correlation in the ratio between the arm length and the leg length. the ratio is 1.556 inches.
Mechanical advantage= effort arm length/ load arm length For Example Effort arm=120 cm Load arm length= 40 cm MA-120/40 = 3
The average length of a woman's arm is approximately 32 inches.
The ratio of the human thumb to the length of the arm is usually 1 to 15. The thumb's length can fit into the size of the arm an approximately 15 times or more.
The mechanical advantage of a lever is calculated by dividing the length of the lever arm on the effort side by the length of the lever arm on the resistance side. The formula for mechanical advantage is MA = Length of effort arm / Length of resistance arm. It represents the factor by which a lever multiplies the force applied to it.
No.
Typically foreclosures are not considered to be "Arm's Length" as one of the parties is acting under duress.