The electronic components industry is known for its strict quality standards and microchips are no exception. In BCD Corp., two tests were performed for microchips. The first test is a temperature test. It determines out of 100 (100 being the best) how well the components withstood and the microchip functioned after being put under high temperatures. The second test, durability, determines how sturdy the components of the microchip were and how well it functioned after being subject to rough handling (i.e., random shaking, bouncing movements). From these, the microchips were either accepted, rejected, or put on hold. Using the correct statistical procedure, determine whether the (mean/median) temperature and durability of microchips differ across QC decisions at 10% level of significance. Perform relevant assumption testing as necessary. Compile all results from Minitab and interpret the results.  Data may be accessed here: https://tinyurl.ph/kpfyv what testing in minitab should be used?

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The electronic components industry is known for its strict quality standards and microchips are no exception. In BCD Corp., two tests were performed for microchips. The first test is a temperature test. It determines out of 100 (100 being the best) how well the components withstood and the microchip functioned after being put under high temperatures. The second test, durability, determines how sturdy the components of the microchip were and how well it functioned after being subject to rough handling (i.e., random shaking, bouncing movements). From these, the microchips were either accepted, rejected, or put on hold. Using the correct statistical procedure, determine whether the (mean/median) temperature and durability of microchips differ across QC decisions at 10% level of significance. Perform relevant assumption testing as necessary. Compile all results from Minitab and interpret the results.  Data may be accessed here: https://tinyurl.ph/kpfyv

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