Determine density and latent heat properties of vapor at pot and top, calculate flowrates and divide by column cross sectional area (minus area taken by packing).
Mass and velocity determine momentum, because mass multiplied by velocity equals momentum. in which there r few different cases like i. whether the atom is getting effected by surrondings . ii. or its not getting effected by its. surrondings (ideal case) and accordingly momentum values (momentum in case(i.) will be less comparitive case(ii.) :)
velocity and mass
The velocity of sound in galvanized steel is around 5180-5700 meters per second. This value can vary depending on the composition and structure of the galvanized steel material.
Mass and velocity. Look at the expression KE = 1/2 m v^2
The P-wave velocity for peridotite typically falls within the range of 7 to 8 km/s. However, this velocity can vary depending on factors such as temperature, pressure, and mineral composition of the peridotite.
A device used to measure the flow of liquids in pipelines and convert the results into proportional electric signals that can be transmitted to distant receivers or controllers. a velocity over a known surface area is measured and then it can be converted to volumetric flowrate or mass flowrate if the density of the fluid is known.
You need to have displacement and time for you to determine the velocity.
the two factors that determine an object's velocity is SPEED and DIRECTION.By: Arjane Lee Lagasca
To determine velocity using momentum, you can use the formula: momentum mass x velocity. Rearrange the formula to solve for velocity: velocity momentum / mass. By dividing the momentum by the mass of the object, you can calculate its velocity.
To determine the relative velocity between two objects, you can subtract the velocity of one object from the velocity of the other object. This will give you the relative velocity between the two objects.
To determine velocity from momentum, you can use the formula: momentum mass x velocity. By rearranging the formula, you can solve for velocity by dividing momentum by mass. This will give you the velocity of an object based on its momentum and mass.
To determine velocity using acceleration and time, you can use the formula: velocity initial velocity (acceleration x time). This formula takes into account the initial velocity, acceleration, and time to calculate the final velocity.
To determine the angular velocity from linear velocity, you can use the formula: Angular velocity Linear velocity / Radius. This formula relates the speed of an object moving in a circular path (linear velocity) to how quickly it is rotating around the center of the circle (angular velocity).
To determine velocity from an acceleration-time graph, you can find the area under the curve of the graph. This area represents the change in velocity over time. By calculating this area, you can determine the velocity at any given point on the graph.
To determine velocity from angular velocity, you can use the formula v r, where v is the linear velocity, is the angular velocity, and r is the radius of the rotating object. This formula relates the rotational speed of an object (angular velocity) to its linear speed (velocity) at a given distance from the center of rotation.
The equation used to determine the velocity of a wave is: velocity = frequency x wavelength. This equation shows that the velocity of a wave is dependent on the frequency of the wave and its wavelength.
To determine the direction of acceleration in a given scenario, you can look at the change in velocity of an object over time. If the velocity is increasing, the acceleration is in the same direction as the velocity. If the velocity is decreasing, the acceleration is in the opposite direction of the velocity.