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These factors result in women's waist–hip ratio (WHR) being lower than for males, although males tend to have a greater upper-body to waist–hip ratio (WHR) giving them a V shape look because of their greater muscle mass (e.g., they generally have much larger, more muscular and broader shoulders, pectoral muscles, teres major muscles and ...
Classifications of female body sizes are mainly based on the circumference of the bust–waist–hip , as in 90-60-90 (centimeters) or 36–24–36 (inches) respectively. In this case, the waist–hip ratio is 60/90 or 24/36 = 0.67. Many terms or classifications are used to describe body shape types:
The waist–hip ratio or waist-to-hip ratio (WHR) is the dimensionless ratio of the circumference of the waist to that of the hips. This is calculated as waist measurement divided by hip measurement (W ⁄ H). For example, a person with a 75 cm waist and 95 cm hips (or a 30-inch waist and 38-inch hips) has WHR of about 0.79.
Both men and women judge women with smaller waist-to-hip ratios more attractive. [254] Ethnic groups vary with regard to their ideal waist-to-hip ratio for women, [ 255 ] ranging from 0.6 in China, [ 256 ] to 0.8 or 0.9 in parts of South America and Africa, [ 257 ] [ 258 ] [ 259 ] and divergent preferences based on ethnicity, rather than ...
In human body measurement, these three sizes are the circumferences of the bust, waist and hips; usually rendered as xx–yy–zz in inches, or centimeters. The three sizes are used mostly in fashion, and almost exclusively in reference to women, [1] who, compared to men, are more likely to have a narrow waist relative to their hips.
The Best Swimsuits for Women with Wide Hips at a Glance ... two expert-recommended silhouettes for women with wide hips: a high-cut leg and a high-cut waist. The result is a cool ‘90s vibe that ...
Young women are subtly flaunting their abs and protruding hip bones on social media. ... encourage these body checks. But I think that with image-based apps, like video or photos, a lot of the ...
The degree of circularity of an ellipse is quantified by eccentricity, with values between 0 to 1, where 0 is a perfect circle (waist circumference same as height) and 1 is a vertical line. [1] To accommodate human shape data in a greater range, Thomas and colleagues mapped eccentricity in a range of 1 to 20 by using the equation: [ 1 ]