A CI is desired for the true average stray-load loss μ (watts) for a certain type of induction motor when the line current is held at 10 amps for a speed of 1500 rpm. Assume that stray-load loss is normally distributed with = 2.0. (Round your answers to two decimal places.) (a) Compute a 95% CI for when n = 25 and x = 59.2. watts (b) Compute a 95% CI for u when n = 100 and x = 59.2. 1.0 watts (c) Compute a 99% CI for μ when n = 100 and x = 59.2. 1.0 watts (d) Compute an 82% CI for μ when n = 100 and x = 59.2. watts (e) How large must n be if the width of the 99% interval for u is to be 1.0? (Round your answer up to the nearest whole number.)

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A CI is desired for the true average stray-load loss μ (watts) for a certain type of induction motor when the line current is held at 10 amps for a speed of 1500 rpm. Assume that stray-load loss is normally distributed with = 2.0. (Round your answers to two decimal
places.)
(a) Compute a 95% CI for μ when n = 25 and x = 59.2.
watts
(b) Compute a 95% CI for μ when n = 100 and x = 59.2.
watts
(c) Compute a 99% CI for μ when n = 100 and x = 59.2.
watts
(d) Compute an 82% CI for μ when n = 100 and x = 59.2.
watts
(e) How large must n be if the width of the 99% interval for u is to be 1.0? (Round your answer up to the nearest whole number.)
n =
Transcribed Image Text:A CI is desired for the true average stray-load loss μ (watts) for a certain type of induction motor when the line current is held at 10 amps for a speed of 1500 rpm. Assume that stray-load loss is normally distributed with = 2.0. (Round your answers to two decimal places.) (a) Compute a 95% CI for μ when n = 25 and x = 59.2. watts (b) Compute a 95% CI for μ when n = 100 and x = 59.2. watts (c) Compute a 99% CI for μ when n = 100 and x = 59.2. watts (d) Compute an 82% CI for μ when n = 100 and x = 59.2. watts (e) How large must n be if the width of the 99% interval for u is to be 1.0? (Round your answer up to the nearest whole number.) n =
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