Gen Combo Ll Basic Biomechanics; Connect Ac; Maxtraq Software Ac
Gen Combo Ll Basic Biomechanics; Connect Ac; Maxtraq Software Ac
8th Edition
ISBN: 9781264013876
Author: Hall
Publisher: McGraw-Hill Education
bartleby

Concept explainers

bartleby

Videos

Textbook Question
Book Icon
Chapter 14, Problem 1AP

The radius of gyration of the thigh with respect to the transverse axis at the hip is 54% of the segment length. The mass of the thigh is 10.5% of total body mass, and the length of the thigh is 23.2% of total body height. What is the moment of inertia of the thigh with respect to the hip for males of the following body masses and heights?

  MASS (kg) HEIGHT (m)
A 60 1.6
B 60 1.8
C 70 1.6
D 70 1.8

(Answers: A = 0.25 kg m2; B = 0.32 kg m2; C = 0.30 kg m2; D = 0.37 kg m2)

Expert Solution & Answer
Check Mark
Summary Introduction

To determine: The moment of inertia of the thigh with respect to the hip for males A, B, C, and D.

Answer to Problem 1AP

The moment of inertia of the thigh with respect to the hip for males A, B, C, and D are 0.25kgm2, 0.32kgm2, 0.30kgm2, and 0.37kgm2.

Explanation of Solution

Calculation:

Expression for the moment of inertia is,

I=mk2 (1)

Here, I is moment of inertia of the thigh, m is mass of the thigh, and k is radius of gyration.

The radius gyration is certain percentage of length of the thigh and length of the thigh is certain percentage of total body height.

The moment of inertia of male A:

Rewrite equation (1).

I=mk2

Substitute (10.5%×60kg) for m and (54%×23.2%×1.6m) for k to find I.

I=(10.5%×60kg)(54%×23.2%×1.6m)2=0.253kgm20.25kgm2

Thus, the moment of inertia of male A is 0.25kgm2.

The moment of inertia of male B:

Rewrite equation (1).

I=mk2

Substitute (10.5%×60kg) for m and (54%×23.2%×1.8m) for k to find I.

I=(10.5%×60kg)(54%×23.2%×1.8m)2=0.3204kgm20.32kgm2

Thus, the moment of inertia of male B is 0.32kgm2.

The moment of inertia of male C:

Rewrite equation (1).

I=mk2

Substitute (10.5%×70kg) for m and (54%×23.2%×1.6m) for k to find I.

I=(10.5%×70kg)(54%×23.2%×1.6m)2=0.295kgm20.30kgm2

Thus, the moment of inertia of male C is 0.30kgm2.

The moment of inertia of male D:

Rewrite equation (1).

I=mk2

Substitute (10.5%×70kg) for m and (54%×23.2%×1.8m) for k to find I.

I=(10.5%×70kg)(54%×23.2%×1.8m)2=0.374kgm20.37kgm2

Thus, the moment of inertia of male B is 0.37kgm2.

Conclusion

Therefore, the moment of inertia of the thigh with respect to the hip for males A, B, C, and D are 0.25kgm2, 0.32kgm2, 0.30kgm2, and 0.37kgm2.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Determine the angle of the shoulder if the torso angle is 88\deg and the upper-arm angle is -125\deg. This answer is this 33\deg BUT how do you calculate this to get that answer??
Describe the movement in the sagittal plane for knee and hip in relation to the jump task in the plot.
The data was collected at 100 frames/second. Calculate the velocity and acceleration for each of the joints for the X(horizontal)coordinate. Also, graph the displacement of all three joints (ankle, knee and hip) for the Y (vertical) coordinate
Knowledge Booster
Background pattern image
Bioengineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, bioengineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Lifetime Physical Fitness & Wellness
Health & Nutrition
ISBN:9781337677509
Author:HOEGER
Publisher:Cengage
Text book image
Body Structures & Functions Updated
Biology
ISBN:9780357191606
Author:Scott
Publisher:Cengage
Text book image
Body Structures & Functions
Biology
ISBN:9781285695495
Author:Scott
Publisher:Cengage
Text book image
Basic Clinical Laboratory Techniques 6E
Biology
ISBN:9781133893943
Author:ESTRIDGE
Publisher:Cengage
GCSE PE - ANTAGONISTIC MUSCLE ACTION - Anatomy and Physiology (Skeletal and Muscular System - 1.5); Author: igpe_complete;https://www.youtube.com/watch?v=6hm_9jQRoO4;License: Standard Youtube License