The following values of saturation drain current ( ID, sat ) were collected from several test wafers with a sample size of n = 5. Calculate the centerlines and control limits.
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The following values of saturation drain current ( ID, sat ) were collected from several test wafers with a
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- A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the time read exactly 3:40 p.m. At this time, he started pumping gas into the tank. At exactly 3:44, the tank was full and he noticed that he had pumped 10.7 gallons. What is the average rate of flow of the gasoline into the gas tank?1. t=1.00000 2. t=0.50000 3. t=0.25000 4. t=0.10000 5. t=0.01000A tank is discharging water through an orifice at a depth x (m) below the surface of water whose area A (m²). The following are the values of the (corresponding values of (A) w.r.t (x 1.5 1.8 1.95 2.10 2.25 2.4 2.55 2.7 2.85 x (m) 1.65 A (m) 1.25 1.39 1.52 1.65 1.81 1.96 2.12 2.65 2.83 2.29 2.46 :Using the following formula 3.0 A dx T = 1.5 Calculate (T) for the level of water to drop from 1.5 m to 3 m by .Simpson's 1/3 rule 3.
- Please help me with Exercice 3.12The values for P(A₁B) and P(A₂B) were found to be 0.20 and 0.02, respectively. Use these values to calculate P(A₁ | B) to four decimal places. P(A₁ | B) = P(A, B) P(A₁B) + P(A₂ MB) 0.20 0.20+ 0.02 = 0.22 XA tank is discharging water through an orifice at a depth x (m) below the surface of water whose area A (m2). The following are the values of the (corresponding values of (A) w.r.t (x x (m) 1.5 1.65 1.8 1.95 2.10 2.25 2.4 2.55 2.7 2.85 3 A (m) 1.25 1.39 1.52 1.65 1.81 1.96 2.12 2.29 2.46 2.65 2.83 :Using the following formula 3.0 T = L. A dx 1.5 Calculate (T) for the level of water to drop from 1.5 m to 3 m by .Simpson's 1/3 rule