
I am Shubham, an inventor turned tutor. I have 9+ yrs of experience in teaching robotics, mechanical & electronics to college students as well as science, social studies & maths to 6-12 students. I have completed my masters in Mechatronics [Gold Medalist (CGPA=9.39)] from VIT, Vellore and my bachelors in Mechanical Engineering (CGPA=8.5). Also, I have qualified GATE exam in mechanical engineering. I have an issued Patent in an AI-based System [in 202041003260]. Another one in the mechanical field [in 201941030274] is published. I am also a recipient of Dr. J Kamdar Award.
Experienced in teaching GCSE, IB, Edexcel, BTEC, GRE, SAT, MCAT, AP, CBSE, ICSE, A-Level, O-Level, ACT, ATAR, UK Curriculum, USA Curriculum, AUSTRALIAN Curriculum, SINGAPORE Curriculum, Olympiad and College Level.
Other than this I have been a consistent part of various 3-days (21 hr) extensive paid workshops at prestigious institutions like VIT and few other eminent colleges in South India.
Explore the fundamentals of fluids, how fluids differ from solids, and the key fluid properties that build a foundation for future fluid mechanics applications.
A fluid flows or deforms under any shear force, no matter how small; fluids include liquids, gases, and plasmas.
Explore continuous deformation in a fluid with no slip, where a shear force moves particles along the force, unlike a rubber block below its elastic limit that returns when removed.
Classify mechanics into engineering mechanics, solid mechanics, and fluid mechanics, and define fluid mechanics as the study of forces on fluids at rest or in motion.
Clarify the two similar sounding words kinetics and kinematics, noting that kinetics include force and its effects while kinematics excludes force, guiding analysis of forces on bodies.
Compare solids and fluids under applied force, noting solids show constant deformation due to internal resistance, while fluids exhibit deformation rate increasing with time and negligible recovery.
Define fluid properties and why they matter in fluid mechanics. Compare fluids using density, as in oil and water, to predict which will float above the other.
Density equals mass per unit volume and reflects the number of molecules in a given volume; more molecules raise density, like a denser forest with more trees.
Explore how density varies with pressure and temperature, noting that gases rise with pressure and fall with temperature, while liquids and solids stay incompressible and temperature is the dominant factor.
Explore specific weight, defined as weight per unit volume and denoted by W, equal to ρ g and dependent on density, pressure, and temperature.
Learn why density is called absolute density when discussing specific weight, and how gravity and location make specific weight vary across Earth, Moon, and Jupiter.
Explore how relative density is a ratio of two fluids, not limited to standard fluids, and see that all specific gravities are relative densities, but not vice versa.
Learn how compressibility distinguishes incompressible liquids from compressible gases, and derive that density changes with pressure through the bulk modulus and volumetric strain. Constant density under pressure marks incompressibility.
Compare the bulk modulus of liquids and gases, noting water is far less compressible than air as density rises and isothermal compression becomes harder.
explore fundamental fluid concepts, including absolute density, specific gravity, and fluid compatibility, and preview upcoming properties like surface tension and vapor pressure to deepen your understanding of fluids.
In short "Furnace baked concepts wrapped up with cheesy examples, loaded with facts marinated in fun and served with hot fluids." :-)
We have keenly curated this course in a way that the development of understanding about the subject happens as easy as a pie. It is a very flexible course put together for both ultra-quick learning as well as detailed learning. It is being constructed in such a fashion that it helps out students short on time or just before the night of an exam to cover up the topics swiftly. At the same time, it includes bonus sections for all those curious creatures out there always trying to join threads and connections to their understanding of the world. We are already getting some positive feedback on the course really tickling some funny bones and is definitely not like the conventional courses one comes across.
Objectives:
· To present the basic principles and equations of fluid mechanics.
· To develop an intuitive understanding of fluid mechanics by emphasizing on physics and reinforcing that understanding through engaging graphics and animations.
· To Help you in preparation for entrance exams (like GATE, GRE, IES etc.) as well as college exams.
We have tried to use all sorts of teaching techniques like virtual whiteboards, animations, graphs, etc. to be able to bring out the best content for our students.