Question

The drawing shows a human figure approximately in a sitting position. For the purposes of this...

The drawing shows a human figure approximately in a sitting position. For the purposes of this problem, there are three parts to the figure, and the center of mass of each one is shown in the drawing. These parts are: (1) the torso, neck, and head (total mass = 44.9 kg) with a center of mass located on the y axis at a point 0.432 m above the origin, (2) the upper legs (mass = 16.6 kg) with a center of mass located on the x axis at a point 0.164 m to the right of the origin, and (3) the lower legs and feet (total mass = 10.7 kg) with a center of mass located 0.487 to the right of and 0.263 m below the origin. Find the (a) x coordinate and (b) the y coordinate of the center of mass of the human figure. Note that the mass of the arms and hands (approximately 12% of the whole-body mass) has been ignored to simplify the drawing.

Homework Answers

Answer #1


m1 = 44.9 kg


( x1 , y1) = ( 0 , 0.432)


m2 = 16.6 kg


( x2 , y2) = ( 0.164 , 0 )

m3 = 10.7 kg

(x3 , y3) = ( 0.487 , -0.263)


(a )


X coordinate of center of mass


Xcm = ( (m1*x1) + (m2*x2) + (m3*x3) )/( m1 + m2 + m3)

Xcm = ( (44.9*0) + (16.6*0.164) + (10.7*0.487) )/( 44.9 + 16.6 + 10.7)


Xcm = 0.110 m


(b)


y coordinate of center of mass


Ycm = ( (m1*x1) + (m2*x2) + (m3*x3) )/( m1 + m2 + m3)

Ycm = ( (44.9*0.432) + (16.6*0) - (10.7*0.263) )/( 44.9 + 16.6 + 10.7)


Ycm = 0.230 m

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
The drawing shows a human figure approximately in a sitting position. For the purposes of this...
The drawing shows a human figure approximately in a sitting position. For the purposes of this problem, there are three parts to the figure, and the center of mass of each one is shown in the drawing. These parts are: (1) the torso, neck, and head (total mass = 43.4 kg) with a center of mass located on the y axis at a point 0.374 m above the origin, (2) the upper legs (mass = 16.3 kg) with a center...
The (Figure 1) shows two thin beams joined at right angles. The vertical beam is 13.0...
The (Figure 1) shows two thin beams joined at right angles. The vertical beam is 13.0 kg and 1.00 m long and the horizontal beam is 29.0 kg and 2.00 m long. Neglect the lateral dimensions of the beams. Find the center of gravity of the two joined beams. Express your answer in the form x,y, taking the origin at the corner where the beams join. Calculate the gravitational torque on the joined beams about an axis through the corner.
In the figure below a barbell spins around a pivot at its center at A. The...
In the figure below a barbell spins around a pivot at its center at A. The barbell consists of two small balls, each with mass 200 g (0.2 kg), at the ends of a very low mass rod of length d=60 cm (0.6 m; the radius of rotation is 0.3 m). The barbell spins clockwise with angular speed 82 rad/s. We can calculate the angular momentum and kinetic energy of this object in two different ways, by treating the object...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT