IDNUM HDL_INC DIET 001 5.1 002 8.1 23 003 6.8 1 004 2.1 NH 2 005 -10.2 1 Descriptives HDL_INC 95% Confidence Interval for Mean N Mean Std Deviation Std Error Lower Bound Upper Bound 1.00 80 6.2861 5.3195 0.5947 6.2487 6.3235 2.00 82 5.9544 4.6266 0.5109 5.9223 5.9865 3.00 87 8.8062 7.9508 0.8524 8.7526 8.8598 Total 249 7.05738 6.2924 0.3988 6.9946 7.1202 ANOVA Sum of Squares df Mean Square F Sig Between Groups 413.43 2 206.72 5.41 0.0050 Within Groups 9,405.82 246 38.24 Total 9,819.25 248

MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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Researchers randomly assigned 322 moderately obese volunteers to one of three diets to study how the diets compare with respect to various outcomes such as weight loss, lipid profiles, blood pressure, and other indicators of health and metabolic function. The three diets included a low-carbohydrate diet, a low-fat diet, and a Mediterranean diet that consists of moderate fat and a high proportion of monounsaturated fats. All study participants worked at the same research center in Israel, where lunch (the main meal of the day in Israel) was served in a workplace cafeteria, such that at least during the lunch meal, participants were guided toward options that met their diet’s guidelines.
The researchers found various differences among the different groups, but no striking differences particularly with respect to weight loss. These results led the researchers to conclude that the Mediterranean diet and the low-carbohydrate diet are effective and safe alternatives to a low-fat diet. They suggested that selecting a diet from among these might best be accomplished by considering the individual’s lifestyle, preferences, and health needs. [Source: Shai, I., Schwarzfuchs, D., Henkin, Y., Shahar, D. R., Witkow, S., Greenberg, I., . . . Stampfer, M. J. (2008). Weight loss with a low-carbohydrate, Mediterranean, or low-fat diet. New England Journal of Medicine, 359, 229–241.]
One limitation cited by the authors of this study is that these researchers had an unusual opportunity to make sure each participant’s main meal matched their assigned diet’s guidelines. The results might be less applicable to the population of all moderately obese individuals, including those who are not served specially tailored meals in the workplace.
Suppose you are a bariatric researcher conducting a similar study among a random sample of moderately obese volunteers in the United States. You randomly assign your volunteers to one of the same three diets, and you provide your volunteers with nutritional counseling but no specially prepared meals. You are particularly interested in differences between the three diets with respect to the increase in high-density lipoprotein (HDL) cholesterol levels in the blood after 12 months.
You use a statistical computing package, such as SPSS®®, to conduct a single-factor, independent-measures ANOVA. The table that follows shows the data in stacked format from the first five study participants. The column labeled “HDL_INC” is each participant’s increase in HDL cholesterol in mg per deciliter. The column labeled “DIET” describes which diet each participant followed, where 1 = low carbohydrate, 2 = low fat, and 3 = Mediterranean.
 
When setting up your analysis, you place the variable    in the Factor box. You place the variable    in the Dependent List box.
 
The two prior tables consist of the output of the statistical computing package. Considering these results, fill in the blanks in the following statement that describes the results in APA format. Assume that your chosen significance level is α = .05. (Note: These results are hypothetical.)
The means and standard deviations are presented in Table 1. The analysis of variance indicates that there    significant differences among the three diets, F(    ,    ) =    , p =    , and η² =    .
TABLE 1
Weight loss after six months
 
Low-Carbohydrate Diet
Low-Fat Diet
Mediterranean Diet
M               
SD               
 
IDNUM HDL_INC DIET
001
5.1
002
8.1
23
003
6.8
1
004
2.1
NH
2
005
-10.2
1
Transcribed Image Text:IDNUM HDL_INC DIET 001 5.1 002 8.1 23 003 6.8 1 004 2.1 NH 2 005 -10.2 1
Descriptives
HDL_INC
95% Confidence Interval for Mean
N
Mean
Std Deviation
Std Error
Lower Bound
Upper Bound
1.00
80
6.2861
5.3195
0.5947
6.2487
6.3235
2.00 82
5.9544
4.6266
0.5109
5.9223
5.9865
3.00
87
8.8062
7.9508
0.8524
8.7526
8.8598
Total 249 7.05738
6.2924
0.3988
6.9946
7.1202
ANOVA
Sum of Squares
df
Mean Square
F
Sig
Between Groups
413.43
2
206.72
5.41 0.0050
Within Groups
9,405.82
246
38.24
Total
9,819.25
248
Transcribed Image Text:Descriptives HDL_INC 95% Confidence Interval for Mean N Mean Std Deviation Std Error Lower Bound Upper Bound 1.00 80 6.2861 5.3195 0.5947 6.2487 6.3235 2.00 82 5.9544 4.6266 0.5109 5.9223 5.9865 3.00 87 8.8062 7.9508 0.8524 8.7526 8.8598 Total 249 7.05738 6.2924 0.3988 6.9946 7.1202 ANOVA Sum of Squares df Mean Square F Sig Between Groups 413.43 2 206.72 5.41 0.0050 Within Groups 9,405.82 246 38.24 Total 9,819.25 248
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