Nine diodes were sampled to measure the manufactured diode's forward voltage as shown in the table below. Use these data to calculate three interval types (shown below. For all computations, assume an...


Nine diodes were sampled to measure the manufactured diode's forward voltage as shown<br>in the table below. Use these data to calculate three interval types (shown below. For all<br>computations, assume an approximately normal distribution. The mean sample and<br>standard deviation for the given data are x =0.7 V and s=0.1 V.<br>Forward Voltage Drop of a Diode (V)<br>0.7489<br>0.8035<br>0.7727<br>0.6697<br>0.7294<br>0.7489<br>0.6213<br>0.7888<br>0.5853<br>0.5931<br>0.6213<br>1. Find a 99% confidence interval on the mean forward voltage drop.<br>2. Compute a 99% prediction interval on a measured forward voltage of a<br>diode after manufacturing.<br>3. Find the 99% tolerance limits that will contain 95% of the diodes manufactured.<br>

Extracted text: Nine diodes were sampled to measure the manufactured diode's forward voltage as shown in the table below. Use these data to calculate three interval types (shown below. For all computations, assume an approximately normal distribution. The mean sample and standard deviation for the given data are x =0.7 V and s=0.1 V. Forward Voltage Drop of a Diode (V) 0.7489 0.8035 0.7727 0.6697 0.7294 0.7489 0.6213 0.7888 0.5853 0.5931 0.6213 1. Find a 99% confidence interval on the mean forward voltage drop. 2. Compute a 99% prediction interval on a measured forward voltage of a diode after manufacturing. 3. Find the 99% tolerance limits that will contain 95% of the diodes manufactured.

Jun 06, 2022
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