Determine the range of mass m for 2 which the system is in equilibrium. The coefficient of static friction between the block and the incline is u = 0.18. S Neglect friction associated with the pulley. Answers: (i Determine the range of mass m2 for which the system is in equilibrium. The coefficient of static friction between the block and the incline is μs = 0.18. Neglect friction associated with the pulley. m1 H₂- 19 m2 Answers: (i !m₁) sm₂si 0.156 m₁)
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- At the beginning of each week, a machine is in one of four conditions: 1 = excellent; 2 = good; 3 = average; 4 = bad. The weekly revenue earned by a machine in state 1, 2, 3, or 4 is 100, 90, 50, or 10, respectively. After observing the condition of the machine at the beginning of the week, the company has the option, for a cost of 200, of instantaneously replacing the machine with an excellent machine. The quality of the machine deteriorates over time, as shown in the file P10 41.xlsx. Four maintenance policies are under consideration: Policy 1: Never replace a machine. Policy 2: Immediately replace a bad machine. Policy 3: Immediately replace a bad or average machine. Policy 4: Immediately replace a bad, average, or good machine. Simulate each of these policies for 50 weeks (using at least 250 iterations each) to determine the policy that maximizes expected weekly profit. Assume that the machine at the beginning of week 1 is excellent.T = -25°C A 0.5 m × 1 m double paned window is made of two silica glass panes 1 cm thick, with air in between. Under steady conditions, linear (constant gradient) Outdoors temperature profiles are found in both silica panes, as well as the air. If the room (and the inner surface of h=18Wm²K the inner glass pane) is at a temperature of 25°C, while outdoors it is -25°C with a convection coefficient of 18 W m² K-1, what is the rate of heat loss through the window? What is the rate of heat loss if the room temperature is decreased to 20°C? Finally, what is the rate of heat loss for a room temperature of 25°C, but with one of the panes (and the air) removed? 1 cm 1 cm Room Temperature, 25° C or 20º C 0.5 mm Air, k=0.024 W m¹ K¹ Silica glass, k = 0.90 W m³ KFind the discharge coefficient, threshold heat flux, combustion efficiency and emissivity factor for both propane and butane separetly. The pipe which would contain thesge gases is 30 inches in diameter and has an operating pressure of 1000psig.
- typingdo fastThe following data was recorded while observing the increase in the number of butterflies in two different ponds, Pond A and Pond B. Number of Butterflies Present Over 5 Years Year Pond A Pond B 0 50 65 85 1 2 3 4 5 100 O 110 121 133 146 161 110 143 186 What is the rate of growth, r, for each pond and which pond has the fastest average rate of growth over the five years? TA = 1.1, TB = 1.3, mg = 3.72 butterflies/yr TA=0.9, TB=0.8, mg = 3.72 butterflies/yr TA=0.9, TB=0.8, mg=27.2 butterflies/yr TA = 1.1, TB = 1.3, mg=27.2 butterflies/yr
- Question 2: Consider again that the company making tires for bikes is concerned about the exact width of its cyclocross tires. The company has a lower specification limit of 22.8 mm and an upper specification limit of 23.2 mm. The standard deviation is 0.15 mm and the mean is 23 mm. What is the probability that a tire will either be too wide or too narrow?To measure the temperature of a ceramic oven at the college of Arts in PTUK a a thermocouple measurement device is used. The thermocouple has a seebeck coefficient of 60uV/C and has an output voltage of 60mV. When the reference point is 21-C the temperature of the measuring junction is Select one a. none b. 979 C c. 929C d.992C e.927 C.Your cafeteria is serving chicken noodle soup today, which it sources from adistributor and then warms up locally in the kitchen. The soup now sits in a large bowl anda server uses a large ladle to fill the soup into the smaller bowls handed out to the students.Consider the following variables:• Outside temperature.• Duration that the soup was heated before being put in the bowl.• Temperature of the soup in a student’s bowl.• Temperature level to which the soup is warmed up.• Insulation of the bowl used for storing the soup.• Duration that the soup bowl is open when the server inserts the ladle to serve a student.Which of these variables are (a) input variables, (b) output variables, and (c) environmentalvariables?
- Determine the hydraulic flux and the pressure head at the layer interface in a column consisting of a loamysand layer 35 cm thick overlying a sandyloam layer 30 cm thick. The saturated hydraulic conductivities of the loamysand and sandyloam layers are 3.87 cm h-1 and 7.59cm h-1, respectively. Water is ponded at the top of the column to a depth of 5 cm and allowed to drip from the bottom of the column. Use a diagram to represent the flow scenario i will 10ipvotes.Q7. A rigid vessel having a volume of 0.05 m³ initially contains carbon dioxide gas at temperature 25°C and pressure p. Ethylene gas is allowed to flow into the tank until a mixture consisting of 20% carbon dioxide and 80% ethylene (molar basis) exits within the tank at a temperature of 25°C and a pressure of 100 bar. Determine the pressure p, in bar, using Kay's rule together with the generalized compressibility chart. Answer: 46.6 barIn hydraulic fracture test, an induced fracture was created at 12.8 MPa. The fracture was reopened in three subsequent cycles. The reopening pressure at third cycle was found to be 6.4 MPa. If the tensile strength of rock is 6.3 MPa, and the pore water pressure is negligible. Determine the maximum and minimum principle stresses if the shut - in pressure was found to be 5.9 MPa