Introduce hydraulic loss into the Bernoulli
equation to account for the energy lost by the water flowing
through the small horizontal pipe. Derive the expression for the
hydraulic loss by considering two points at the inlet and outlet of
the small horizontal pipe.
Beginning with the basic balance equation, develop the open
system at steady state energy balance equation that is used for a
system with multiple inlet and outlet streams. Make sure to show
all steps and to define terms in words or by equations.
Answer the following questions related to the topic of fluids
and electrolytes:
1. What are fluids and electrolytes? What are its main
functions?
2. What are the laboratory tests that allow you to measure the
levels of electrolytes in the blood?
3. What are the normal values for sodium, potassium, calcium,
magnesium, phosphorus, and chlorine?
Make a mindmap that contain:
a- Relationship between Mechanical Energy Equation and internal
flow analysis.
b- Flow regimes - Search on the turbulent, laminar and
transitional flow regimes. Describes them and give example
when/where they occurs.
c- Region in pipe flow - Search on hydrodynamic entrance length,
boundary layer region/viscous flow region, hydrodynamically
developing region and hydrodynamically fully developed region.
Describes them and show how to calculate them.
Solve the given differential equation using an appropriate
substitution. The DE is a Bernoulli equation,
A. dy/dx = y(xy^6 - 1)
B. x dy/dx + y = 1/y^2
C. t^2 dy/dt + y^2 = ty