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I have liked your methodology of this topic.Thanks alot sir for your simplicity of the lesson
@@mrnjobvu8861 Anytime Sir
Please Sample size problem 3,why did we equate the formula to 5.98 and not the 5.22.🤔🤔
Because, I used a Plus(+) between the point estimate (x bar) and the margin of error, not a minus (-). If it were minus, I would have equated it to the 5.22.
Please can you use the other margin of error I mean the negative side to find the zigma over the root n?
Yes please. But you have to be very careful.
Please can I know the formula
Is there a formula for find the confidence interval
There are. And for the condition this video is about, the formula is at the 1:53 minute of the video
Sample size example 1, with the final answer do you run it by one or you run it with whole decimal? 😂 Like 31.2 then you run it to 32
Sorry, we don’t your question clear. Kindly come clear.
You always have to run your answer up to get a whole number.. that is why he got 32
I have liked your methodology of this topic.Thanks alot sir for your simplicity of the lesson
@@mrnjobvu8861 Anytime Sir
Please Sample size problem 3,why did we equate the formula to 5.98 and not the 5.22.🤔🤔
Because, I used a Plus(+) between the point estimate (x bar) and the margin of error, not a minus (-).
If it were minus, I would have equated it to the 5.22.
Please can you use the other margin of error I mean the negative side to find the zigma over the root n?
Yes please. But you have to be very careful.
Please can I know the formula
Is there a formula for find the confidence interval
There are. And for the condition this video is about, the formula is at the 1:53 minute of the video
Sample size example 1, with the final answer do you run it by one or you run it with whole decimal? 😂 Like 31.2 then you run it to 32
Sorry, we don’t your question clear. Kindly come clear.
You always have to run your answer up to get a whole number.. that is why he got 32