Design and draw the digital circuit diagram for operating a simple shop door. Co

Design and draw the digital circuit diagram for operating a simple shop door. Consider the requirement for there to be an output to the solenoid controlling the valve that will open the shop door when the shopkeeper has closed a switch to open the shop and a customer approaches the door and is detected by a sensor which then gives a high signal. There is another safety switch for the shopkeeper which if pressed closes the door, regardless of the previous conditions.

I need helping making a 3d design for a part on SolidWorks. I need to design a n

I need helping making a 3d design for a part on SolidWorks. I need to design a nose cone for a rocket that will be 3D printed later. I have all the dimensions and equations to the nose cone. when you are done with the design please send me the file.

I need helping making a 3d design for a part on SolidWorks. I need to design a n

I need helping making a 3d design for a part on SolidWorks. I need to design a nose cone for a rocket that will be 3D printed later. I have all the dimensions and equations to the nose cone. when you are done with the design please send me the file.

I need help finishing up my lab report. I will provide Lab Manual,data sheet, gr

I need help finishing up my lab report. I will provide Lab Manual,data sheet, grading rubric.
These files have all the instructions needed.
Some Additional Information:
– For each geometry, the experimental procedure was performed twice for different heating powers: once with 12 W (for all velocities) and once with 14 W (for all velocities). This means that for Experiment 4 you have 4 data sets: 2 data sets associated with each geometry.
– The velocities of the fan were set at: 15% , 30%, 60%, and 75%. Velocities are mentioned in data set sheets.
– You now need to calculate the theoretical values and make the plots that are asked in the lab manual (remember to include title, axis labels, and legend).
– For the calculations of Nu:
You have to find the correct empirical correlations when dealing with flow over a flat plate and flow over a cylinder as presented in your Heat Transfer Textbook (Chapter 7) for determining the Nusselt number and hence the theoretical h value. Then you are asked to compare the calculated h value using the appropriate correlation to the h value obtained in the lab (experimentally). The correct Nu correlation depends on the nature of the fluid flow, geometry, and fluid thermodynamic properties.
Use the grading rubric as a guide.

1)Calculate the Otto cycle efficiency of an engine with a maximum combustion tem

1)Calculate the Otto cycle efficiency of an engine with a maximum combustion temperature of
1400ºC, a peak temperature after compression of 325ºC, an exhaust gas temperature of 450ºC,
when operated with an underhood temperature of 70ºC.Then, estimate the actual efficiency of
the engine.
2) What is the auto-ignition temperature of gasoline? Would a brand-new engine that is
overheating be more likely to detonate or experience pre-ignition in light of this autoignition
temperature? Why?
3) Why do you need high volatility fuel in the winter season?
4) What is a typical 10% vapor/liquid ratio temperature for gasoline?
5)In a four stroke engine, what is the ratio of cam to crank shaft revolutions? What are some benefits of a hemispherical head shape?
6) At what rpm is a four stroke, three cylinder motorcycle engine running if any given spark plug is
firing every 10 milliseconds?

Based on your major, this assignment will focus on the design/development of an

Based on your major, this assignment will focus on the design/development of an outline, strategy plan, implementation plan or organization/policy that will address 3 of the topics addressed in this course.
Sources including peer reviewed scholarly journals, trade journals, and popular magazines (New Yorker, The Economist, Harvard Business review, etc.) should inform this paper. The paper should be 5-7 pages in length, with a minimum of 5 current sources.