Essay type: | Quantitative research papers |
Categories: | Healthcare Diet Nutrition |
Pages: | 3 |
Wordcount: | 729 words |
Physical activity is any bodily movement in the production by muscles resulting in energy spending .in the current world, the modernity of our life has resulted. The research in the studies concerning the physical activity of the body demonstrates a great solution to very poor physical conditions. The arithmetical calculation of the body's physical metabolic energy in the daily body movement.
Calculation of physical activity index
For each daily energy by the individual woman, average daily energy is achieved by multiplication of frequency of the activity performance by the duration average of engaging activity by the cost energy (kilocalories against kilogram weight of a body per hour) in the activity (Oomen et al., 2019). The physical index has calculated the summation of daily energy in all activity expenditures. The women respondent classification follows; 3.0 kcal/kg/day or more equal to physical activity; 1.5-2.9 kcal/kg/day = moderately active; less than 1.5 kcal per day being equated to inactive and dull.
Calculate Mavis’s and Monique’s BMIs and PAI.
BMI=kg/m2
Mavis
Weight =150lb, height = 5’3’’
1 lb. = 0.45359237kg
Mavis’ weight in kg = m(lb)×0.45359237150 lb×0.45359237 =68.0388555 kg1 ft = 12 inches
1inch = 2.54 cm
Mavis’ height in cm = (hft×12) +(hinch× 2.54) (5×12 )=(60+3)×2.54)=160.02 cm Conversion of centimeters into meters
100cm = 1 m
Mavis’ height in m=hcm100= 160.2⁄100 =1.602mMavis’ BMI = kgm2 =68.0388555 kg1.6022 = 68.0388555 kg2.566404 =26.6kgm2 BMI classification; 26.6kgm2 overweight
Monique
Weight =130lb, height = 5’7’’
1 lb = 0.45359237kg
Monique’s weight in kg = m(lb)×0.45359237
=130 lb×0.45359237 = 58.9670081 kg1 ft = 12 inches
1inch = 2.54 cm
Mavis’ height in cm = (h(ft) ×12)+(hinch×2.54) =5×12 +(60+7 )×2.54 =170.18 cm Conversion of centimeters into meters
100cm = 1 m
Mavis’ height in m =h(cm)100= 170.18cm100=1.7018 mMonique’s BMI =kgm2=58.9670081 1.70182 = 58.96700812.89612324 =20.4 kgm2BMI classification = 20.4 kgm2 normal weight
Estimate Mavis’s and Monique’s RMRs using the formulas in Table 4-4. Note that to use these formulas, convert weight to kg and height to cm.
Mavis’ RMR = WHO: (14.7 × 68.03) + 496 = 1496 kcal/dayHarris-Benedict: 447 + (9.25 X 68.03) + (3.10 X 170.18) – (4.33 X 30) =1442.44 kcal/day
Owens Formula: 795 + (7.18 X 68.03) = 1283.46 kcal/day
Mifflin et al: (9.99 X 68.03) + (6.25 X 160.02) – 4.92 X 30 – 161 = 1371.14 kcal/day
Monique’s RMR= WHO: (14.7 × 58.97) + 496 = 1362 kcal/dayHarris-Benedict: 447 + (9.25 X 58.97) + (3.10 X 170.18) – (4.33 X 30) = 1390 kcal/day
Owens Formula: 795 + (7.18 X 58.97) = 1218 kcal/day
Mifflin et al: (9.99 X 58.97) + (6.25 X 170.18) – 4.92 X 30 – 161 = 1344 kcal/day
What was the highest estimate of? The lowest?
Highest RMR= Mavis 1496 kcal/day Monique (WHO formula) Monique 1390 kcal/day (Harris-Benedict Formula)
Lowest RMR= Mavis 1283 kcal/day Monique 1218 kcal/day Both were Owens Formula
The Deducted Conclusion from The Calculation
Several factors are affecting the formation, and the determination takes the factor in women's gender—the physical activity in society. The following are the factors that affect the PAI. The recreational physical and sports in society (Amador et al., 2018). The duties in the home working and the family care with the maintenance of the home duties. The physical activities in the commute and the physical activity in the daily work of the society. It gives the varying in the s=women and needs to be health-wise and the general public health.
Conclusion
The study allows the clear certification of a stipulation in the activity practice of frequent and normal physical activity in the women population. There are several factors in the acknowledgments to affect the association between women and the activity of the physical index (Hinckson et al., 2017). The need for the case study represents the necessary information for health management. An incentive to public health sensitization and certainty in approach. The elaboration and edutainment of leisure areas of the program of change behaviors encourage the adoption of a healthier lifestyle prompt to activeness, contributing to increasing the population's physical level.
References
Amador, J. D., Espejel Cabrera, J., Cervantes, J., Jalili, L. D., & Ruiz Castilla, J. S. (2018). undefined. Communications in Computer and Information Science, 309-319. https://doi.org/10.1007/978-3-030-00353-1_28
Hinckson, E., Cerin, E., Mavoa, S., Smith, M., Badland, H., Stewart, T., Duncan, S., & Schofield, G. (2017). Associations of the perceived and objective neighborhood environment with physical activity and sedentary time in New Zealand adolescents. International Journal of Behavioral Nutrition and Physical Activity, 14(1). https://doi.org/10.1186/s12966-017-0597-5
Oomen, J., Arts, D., Sperling, M., & Vos, S. (2019). undefined. Technology in Society, 56, 1-7. https://doi.org/10.1016/j.techsoc.2018.09.001
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