Question
What is Bernoulli's theory for horizontal tube?

Answer

SELF

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

In the given progressive wave $​​​​\text{y}=5\sin(100\pi\text{t+0.4x})$ where y and x are in m, t is in s. What is the:
Particle velocity amplitude.
A quarterback, standing on his opponents 35-yard line, throws a football directly down field, releasing the ball at a height of 2.00 m above the ground with an initial velocity of $20.0 m / s$, directed $30.0^{\circ}$ above the horizontal.
i. How long does it take for the ball to cross the goal line, 32.0 m from the point of release?
ii. The ball is thrown too hard and so passes over the head of the intended receiver at the goal line. What is the ball's height above the ground as it crosses the goal line?
Assume that the thermal conductivity of copper is four times that of brass. Two rods of copper and brass of the same length, and cross-section are joined end to end. The free end of the copper rod is kept at 0°C and the free end of the brass rod at 100°C. Calculate the temperature at the junction of the two rods at equilibrium. (Ignore radiation losses.)
A particle of mass $1kg$ moving with a velocity $\text{V}_1=(3\hat{\text{i}}-2\hat{\text{J})}\text{m/ s}$ experience a perfectly inelastic collision with another particle of mass 2kg having velocity $\text{v}_2=4\hat{\text{j}}-6\hat{\text{k}}\text{m/ s}$. Find the velocity and speed of the particle formed.
Explain fluid pressure.
State Bernoulli's theorem. Using it how can you explain the functioning of a venturimeter to find velocity of flow of liquid through a tube?
A satellite orbits the earth at a height of 400 km above the surface. How much energy must be expended to rocket the satellite out of the earth's gravitational influence? Mass of the satellite $=200 \mathrm{~kg}$; mass of the earth $=6.0 \times$ $10^{24} \mathrm{~kg}$; radius of the earth $=6.4 \times 10^6 \mathrm{~m} ; \mathrm{G}=6.67 \times 10^{-11} \mathrm{~N} \mathrm{~m}^2 \mathrm{~kg}^{-2}$.
A nucleus is at rest in the laboratory frame of reference. Show that if it disintegrates into two smaller nuclei the products must move in opposite directions.
What is the ideal gas equation? Derive the equation of state for an ideal gas from the molecular kinetic theory of gases.
Two sitar strings A and B playing the note ‘Ga’ are slightly out of tune and produce beats of frequency $6Hz$. The tension in the string A is slightly reduced and the beat frequency is found to reduce to $3Hz$. If the original frequency of A is $324Hz$, what is the frequency of B?