Title: Pomacea canaliculata Meat as Natural Protein Diet for Broiler Chicken Research questions: Generally, this study aims to determine if P. canaliculata meat can be used as natural protein diet for broiler chicken. Specifically, seek to answer the following questions: 1. What are the weight of chicken after 45 days of feeding? 2. Is there a significant difference in the weight of chicken feed with commercial pellets and different amount of P. canaliculata meat? Collected data on the weight of chicken after 45 days of feeding based on body weight ratio with 9 chicken per treatment: Commercial pellets - 1.00, 0.99, 1.06, 1.67, 0.99, 1.04, 1.50, 1.23, and 1.59 in kgs; 5% body weight of P. canaliculata meat-1.69, 1.97, 2.00, 2.02, 1.96, 2.04, 1.78, 1.84, and 1.94 in kgs; and 10% of body weight P. canaliculata meat-2.69, 2.97, 3.00, 2.82, 2.96, 2.74, 2.78, 2.84, and 2.94 in kgs (Meet assumptions for parametric statistics). Figure 2. Scientific study with 3 groups compared. Table 5.3. Kruskal Wallis Table 5.4. One-way ANOVA Test Statistics Weight Weight Sum of Mean F Sig. Chi-Square Squares Square df Between Groups 12.057 6.028 171.619 Asymp. Sig. Within Groups .843 035 a. Kruskal Wallis Test Total 12.900 b. Grouping Variable: Treatment Weight Table 5.5. Post hoc analysis using Duncan test (DMRT) Treatment N Subset for alpha=0.05 1 2 3 Commercial pellets 1.2300 5% body weight 1.9156 10% body weight 2.8600 Sig 1.000 1.000 1.000 Means for groups in homogeneous subsets are displayed. a. Uses Harmonic Mean Sample Size = 9.000. 23.150 2 .000 df 2 24 26 .000

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Title: Pomacea canaliculata Meat as Natural Protein Diet for Broiler Chicken
Research questions:
Generally, this study aims to determine if P. canaliculata meat can be used as natural protein
diet for broiler chicken.
Specifically, seek to answer the following questions:
1. What are the weight of chicken after 45 days of feeding?
2. Is there a significant difference in the weight of chicken feed with commercial pellets and different
amount of P. canaliculata meat?
Collected data on the weight of chicken after 45 days of feeding based on body weight ratio
with 9 chicken per treatment: Commercial pellets - 1.00, 0.99, 1.06, 1.67, 0.99, 1.04, 1.50, 1.23,
and 1.59 in kgs; 5% body weight of P. canaliculata meat-1.69, 1.97, 2.00, 2.02, 1.96, 2.04, 1.78,
1.84, and 1.94 in kgs; and 10% of body weight P. canaliculata meat-2.69, 2.97, 3.00, 2.82, 2.96,
2.74, 2.78, 2.84, and 2.94 in kgs (Meet assumptions for parametric statistics).
Figure 2. Scientific study with 3 groups compared.
Table 5.3. Kruskal Wallis
Table 5.4. One-way ANOVA
Test Statistics
Weight
Weight
Sum of
Mean
F
Sig.
Chi-Square
Squares
Square
df
Between Groups
12.057
171.619
Asymp. Sig.
Within Groups
.843
a. Kruskal Wallis Test
Total
12.900
b. Grouping Variable:
Treatment
Weight
Table 5.5. Post hoc analysis using Duncan test (DMRT)
Treatment
N
Subset for alpha=0.05
2
3
Commercial pellets
1.2300
5% body weight
1.9156
10% body weight
2.8600
Sig.
1.000
1.000
1.000
Means for groups in homogeneous subsets are displayed.
a. Uses Harmonic Mean Sample Size = 9.000.
23.150
2
.000
df
2
24
26
6.028
.035
.000
Transcribed Image Text:Title: Pomacea canaliculata Meat as Natural Protein Diet for Broiler Chicken Research questions: Generally, this study aims to determine if P. canaliculata meat can be used as natural protein diet for broiler chicken. Specifically, seek to answer the following questions: 1. What are the weight of chicken after 45 days of feeding? 2. Is there a significant difference in the weight of chicken feed with commercial pellets and different amount of P. canaliculata meat? Collected data on the weight of chicken after 45 days of feeding based on body weight ratio with 9 chicken per treatment: Commercial pellets - 1.00, 0.99, 1.06, 1.67, 0.99, 1.04, 1.50, 1.23, and 1.59 in kgs; 5% body weight of P. canaliculata meat-1.69, 1.97, 2.00, 2.02, 1.96, 2.04, 1.78, 1.84, and 1.94 in kgs; and 10% of body weight P. canaliculata meat-2.69, 2.97, 3.00, 2.82, 2.96, 2.74, 2.78, 2.84, and 2.94 in kgs (Meet assumptions for parametric statistics). Figure 2. Scientific study with 3 groups compared. Table 5.3. Kruskal Wallis Table 5.4. One-way ANOVA Test Statistics Weight Weight Sum of Mean F Sig. Chi-Square Squares Square df Between Groups 12.057 171.619 Asymp. Sig. Within Groups .843 a. Kruskal Wallis Test Total 12.900 b. Grouping Variable: Treatment Weight Table 5.5. Post hoc analysis using Duncan test (DMRT) Treatment N Subset for alpha=0.05 2 3 Commercial pellets 1.2300 5% body weight 1.9156 10% body weight 2.8600 Sig. 1.000 1.000 1.000 Means for groups in homogeneous subsets are displayed. a. Uses Harmonic Mean Sample Size = 9.000. 23.150 2 .000 df 2 24 26 6.028 .035 .000
Guide Questions:
1. What is the decision (reject or accept the null hypothesis)?
Transcribed Image Text:Guide Questions: 1. What is the decision (reject or accept the null hypothesis)?
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