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SIMPLE ROBOT

SIMPLE ROBOT NOW I JUST TELL YOU HOW TO MAKE A SIMPLE ROBOT THE VIDEO BELOW SHOWS HOW TO MAKE A SIMPLE ROBOT THANK YOU FOR VISITING...... ANY QUERY CONTACT @ iamsumanjoseph@gmail.com

PIPE INSPECTION ROBOT

MECHANICAL ENGINEERING PROJECT........ PIPE INJECTION ROBOT.... THANK YOU FOR VISITING....... CONTACT ME @ iamsumanjoseph@gmail.com

KINEMATIC PROJECT 1

HERE I JUST POST A KINEMATIC PROJECT.... TRANSFERRING ROBOT THANK YOU FOR VISITING................. ANY QUERY    CONTACT  ME @    iamsumanjoseph@gmail.com

PROJECTS

HI GUYS, I THINK ALL OF YOU SEARCHING FOR YOUR MINI PROJECT.AM I CORRECT? ANYWAY NOW YOU ARE HERE.DON'T WORRY ABOUT ANYTHING YOU DO. I JUST WANT TO SHARE SOME PROJECT RELATED TO YOU. IF YOU NEED ANY PROJECT IDEAS, LOW PRICE PROJECTS,SCHOOL PROJECTS CALL ME @ 9677600690 .  OR MAIL ME  @  iamsumanjoseph@gmail.com .

APPLIED HYDRAULICS AND PNEUMATICS

ME55-APPLIED HYDRAULICS AND PNEUMATIC S UNIT I FLUID POWER SYSTEMS AND FUNDAMENTALS UNIT II HYDRAULIC SYSTEM & COMPONENTS UNIT III DESIGN OF HYDRAULIC CIRCUITS UNIT IV PNEUMATIC SYSTEMS AND COMPONENTS UNIT V DESIGN OF PNEUMATIC CIRCUITS What is fluid power? Fluid power is energy transmitted and controlled by means of a pressurized fluid, either liquid or gas. The term fluid power applies to both hydraulics and pneumatics. Hydraulics uses pressurized liquid, for example, oil or water; pneumatics uses compressed air or other neutral gases. Fluid power can be effectively combined with other technologies through the use of sensors, transducers and microprocessors. How fluid power works Pascal's Law expresses the central concept of fluid power: "Pressure exerted by a confined fluid acts undiminished equally in all directions."  An input force of 10 pounds (44.8 N) on a 1-square-inch (6.45 cm2) piston develops a pressure of 10 pounds per square inch (ps...

THERMAL ENGINEERING QUESTION

Thermal Engineering Question Bank Sub. Code/Name: THERMODYNAMIC CYCLES Part-A (2 Marks) 1. What is a thermodynamic cycle? 2. What is meant by air standard cycle? 3.. Name the various “gas power cycles". 4. What are the assumptions made for air standard cycle analysis 5. Mention the various processes of the Otto cycle. . 6. Mention the various processes of diesel cycle. 7. Mention the various processes of dual cycle. 9. Define air standard cycle efficiency. 10. Define mean effective pressure as applied to gas power cycles. How it is related to indicate power of an I.C engine? 11. Define the following terms. (i) Compression ratio (ii) Cut off ratio , (iii) .Expansion ratio Part-B (16Marks) 1. Drive and expression for the air standard efficiency of Otto cycle in terms of volume ratio. (16) 2. Drive an expression for the air standard efficiency of Diesel cycle. . (16) 3. Drive an expression for the air standard efficiency of Dual cycle. . (16) 4. Explain the work...