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- ᴀ ᴘᴜᴍᴘ ᴡɪᴛʜ ᴀ 400 ᴍᴍ ᴅɪᴀᴍᴇᴛᴇʀ ꜱᴜᴄᴛɪᴏɴ ᴘɪᴘᴇ ᴀɴᴅ ᴀ 350 ᴍᴍ ᴅɪᴀᴍᴇᴛᴇʀ ɪꜱ ᴛᴏ ᴅᴇʟɪᴠᴇʀ 20,000 ʟ/ᴍɪɴ ᴏꜰ 15.6ᴅᴇɢ ᴄ ᴡᴀᴛᴇʀ. ᴄᴀʟᴄᴜʟᴀᴛᴇ ᴛʜᴇ ᴘᴜᴍᴘ ʜᴇᴀᴅ ɪɴ ᴍᴇᴛᴇʀꜱ ɪꜰ ꜱᴜᴄᴛɪᴏɴ ɢᴀɢᴇ ɪꜱ 7.5 ᴄᴍ ʙᴇʟᴏᴡ ᴘᴜᴍᴘ ᴄᴇɴᴛᴇʀʟɪɴᴇ ᴀɴᴅ ʀᴇᴀᴅꜱ 127 ᴍᴍʜɢ ᴠᴀᴄᴜᴜᴍ ᴀɴᴅ ᴅɪꜱᴄʜᴀʀɢᴇ ɢᴀɢᴇ ɪꜱ 45 ᴄᴍ ᴀʙᴏᴠᴇ ᴛʜᴇ ᴘᴜᴍᴘ ᴄᴇɴᴛᴇʀʟɪɴᴇ ᴀɴᴅ ʀᴇᴀᴅꜱ 75 ᴋᴘᴀ ɴᴏᴛᴇ, ᴢ ɪꜱ ᴀʟꜱᴏ ᴛʜᴇ ᴅɪꜱᴛᴀɴᴄᴇ ᴏꜰ ᴘʀᴇꜱꜱᴜʀᴇ ɢᴀɢᴇ ᴛᴏ ᴛʜᴇ ᴘᴜᴍᴘ. ᴍɪɴᴅ ᴛʜᴇ ᴜɴɪᴛꜱ.GIVE ME THE COMPLETE SOLUTION FOR THISTHIS IS THE ANSWER ACC TO THE ANSWER KEY I JUST NEED HELP FOR THE SOLUTION Theta3/T = ((5*s^2 + 9*s + 9))/(15*s^5 + 47*s^4 + 117*s^3 + 161*s^2 + 81*s)Find the local maximum and minimum values and saddle point(s) of the function. You are encouraged to use a calculator or computer to graph the function with a domain and viewpoint that reveals all the important aspects of the function. (Enter your answers as comma-separated lists. If an answer does not exist, enter DNE.) f(x, y) = 9 sin(x) sin(y), −? < x < ?, −? < y < ? local maximum value(s) local minimum value(s) saddle point(s) (x, y) =
- As the potential across the resistor increased, the current through the resistor increased. If the change in current is proportional to the voltage, the data should be in a straight line and it should go through zero. In these two examples how close is the y-intercept to zero? Is there a proportional relationship between voltage and current? If so, write the equation for each run in the form potential = constant x current. (Use a numerical value for the constant.)1. Circle weather the following statements are true or false. If the statement is true justify your reasoning if the statement is false correct the statement to make it true or justify why it is false a. Impulse is the integral of a force vs distance graph b. In two dimensions analyzing linear and angular momentum provides up to three scalar equations. c. Linear acceleration and angular acceleration both have units of ft/s^2 or m/s^2 d. When absolute motion or a rigid body it is important to find a function that relates linear and angular position then integrate to find velocity e. Instantaneous centers can only be determined for velocity and only for a snapshot in timeThe horizontal force due to water acting on the bolt (Fh): Fh=ρ×A1×V1×V1--V2 Fh=1000×π4×0.0752×1.254×1.254+11.286( Fh)=69.472 This is the only part I did not understand how to get. Can you please explain more? I arrived with this equation, -P1A1 - P2A2 (cancelled since atmos. Pres.) +Fh = rho A1v1 (v2-v1) Why did P1A1 disappear in your solution? How did you come up with (v1 - - v2) ? What is the control volume? Why did you not do a summation of forces is equal to change in momentum but instead go immediately to getting the horizontal force acting on the bolt?
- Search and define the following:(write each required formula - define its variables) 1. Impulse and Momentum2. Work Energy Principle3. Law of conservation of momentumA vertical chemical reactor undergone a maintenance in which its internals were subjected inspection from bottom to top before catalyst loading. A site engineer (63.00 kg) was tasked to do the inspection and he stopped from time to time at each portion to inspect. A safety officer monitored the engineer’s position while watching from the top and reported his position (Refer to the photo attached. CORRECTION for data table at t=70.00 min, position=725.0 cm): Solve for: (a) Power he exerted at t = 50.00 min (b) Power he exerted at t = 65.00 min (c) Total Work he exerted throughout the inspection (d) Average Power throughout the inspectionFor the section shown below, composed of a semicircle together with a ¼ circle, we are asked to determine the polar moment of inertia about O in cm^4. Tip: use the geometric property tables of the sections to solve the problem. Source: Porto (2014, p. 51). PORTO, M. A. Exercises for vector mechanics. Sao Paulo: University of Sao Paulo, 2014. 4 question options: a) The moment of inertia is 8654.21 cm^4. B) The moment of inertia is 3926.99 cm^4. c) The moment of inertia is 10865.98 cm^4. d) The moment of inertia is 7853.98 cm^4. e) The moment of inertia is 11708.97 cm^4.
- Hi please help with this question thank you I just can't seem to work it out even with the given formulas. Thanks! also, I have tried these but they seem to be incorrect, or maybe parts of the calculation may be incorrect since when I submit these all together and I can't really work out where I am going wrong: sigma 1 = 73.31 MPa theta 1 = 56.87 degrees sigma 2 = 18.68 MPa theta 2 = 146.875 degrees Tmax in plane = 27.315 MPa theta s = 101.87 degreesSome US census population data is given in the following table. Year yeatr 1980 1990 2000 population(y) 227 249 281 Here population is given in millions. 1. Fit a second degree polynomial passing through these points. 2. Use it to predict population in year 2010 and 2020. Note: Develop the linear system of equations from the above theory and solve the system by LU Decomposition Method. (linear algebra)I am using eq 3.117 in Shigley's 10ed: m*x-double dot+b*x-dot+k*x=(1/2)C_x*(e_c)^2 Since x-double dot=X-dot=0, equations becomes: k*x=(1/2)C_x*(e_c)^2 then plug in eq 3.110, C_x=(n*E_0*w)/d Then solve for x. Does this look correct?