The transition between laminar
and turbulent flow occurs not
at a specific value of the
Reynolds number but in a
range usually beginning
between 1,000 to 2,000 and
extending upward to between
3,000 and 5,000.
Suppose a projectile is fired from a gun, we know that "g" remains constant and as we use horizontal component of velocity in range sov0 also remains constant. Only sin2θ responsible for change in range. The range will be maximum if sin2θ has its maximum value that is 1.for maximum range:sin2θ = 12θ = sin-1 (1)θ = 90/2θ = 45 (degree)therefor if projectile is projected with the angle of 45(degree) its range will be maximum.
In the English language, it is four.
To determine the Percent value, you must have two variables: True value, the Recorded or Measured value, and it is represented by the following equation:(Recorded/Measured value - True value) / True value *100%e.g (20.000 - 21.571) / 21.751*100% = -7.223%
The number of light bulbs that burn out in the next week in a room with 16 bulbs is a discrete variable. This is because the number of bulbs that can burn out is countable and can only take on non-negative integer values, such as 0, 1, 2, up to a maximum of 16. Continuous variables, on the other hand, can take on any value within a given range and are not countable.
"Absolute value" means how far a number is from zero.* In the case of real numbers, just remove the minus sign if there is one. The absolute value of 5 is 5; the absolute value of -5 is also 5. * In the case of complex numbers, the Pythagorean theorem is used.
Turbulent flow occurs above a certain Reynold's number; laminar flow occurs below a certain Reynold's number. The exact value of the Reynold's number required for flow to become turbulent varies, depending on the specific situation.
The maximum lift coefficient of a NACA-4412 airfoil is typically around 1.4 to 1.5 in ideal conditions. This value can vary depending on factors such as angle of attack, Reynolds number, and airfoil surface condition.
Reynolds number is a dimensionless value that helps predict flow patterns in fluid dynamics. It quantifies the relationship between inertial forces and viscous forces in a fluid, allowing engineers and scientists to determine whether flow is laminar or turbulent. This is crucial in various applications, such as designing pipelines, predicting weather patterns, and understanding biological processes. By understanding the flow regime, appropriate models and strategies can be implemented for efficient fluid management.
The friction factor in a pipe depends on the flow regime (laminar or turbulent) and the roughness of the pipe wall. It is typically quantified using dimensionless numbers like Reynolds number and relative roughness. In general, it represents the resistance to flow and is important for calculating pressure drop in pipe systems.
It is the number expressed as a percentage of the maximum.
It usually is, as in maximum speed or maximum occupancy. But it can be a noun, meaning a maximum value or number, as in math or astronomy (the solar maximum).
it is the greatest #(or number)in the set of data
255
4294967295
The maximum value of a binary number with 4 bits is represented by the binary sequence 1111. In decimal, this equates to ( 2^3 + 2^2 + 2^1 + 2^0 ), which equals 15. Thus, the maximum value of a 4-bit binary number is 15.
very funny... there is no maximum number! every time you can do "plus 1"... infinity is a correct answer.
What is maximum value