For the same reason it's not measured in buckets of rotten fish: because those would not be the correct units.
Angular momentum is the cross product of the linear momentum and the position vector relative to the center of rotation. If you do a dimensional analysis, you'll see that the proper units are joule-seconds.
The dimension of angular momentum is kg m^2/s.
Angular momentum is calculated as the product of a rotating object's moment of inertia (I) and its angular velocity (ω). The units of angular momentum are kg m^2/s, which is the same as the units for moment of inertia multiplied by angular velocity (kg m^2 * 1/s). This relationship is based on the principles of rotational motion and conservation of angular momentum.
Angular momentum is a vector quantity and therefore has dimensions of mass multiplied by length squared divided by time. In SI units, the dimension of angular momentum is kg * m^2/s.
the angular momentum is given by:.L = mass (m) * velocity (v) * radius (r)you have the mass and radius, so to calculate the velocity:.circumference = 2 * pi * r = 2 * 3.1416 * 0.95 = 5.969 metres14.7 rad / sec = 2.3396 rev / secso velocity = circumference * rev / sec = 2.3396 * 5.969 = 13.965 metres / sec.so:.L = m * v * r = 0.73 * 13.965 * 0.95 = 9.685 n-m-s
Momentum is a measure of an object's motion and is calculated as the product of an object's mass and its velocity. In CGS units, momentum is measured in g cm/s, while in MKS units, momentum is measured in kg m/s.
The dimension of angular momentum is kg m^2/s.
Angular momentum is calculated as the product of a rotating object's moment of inertia (I) and its angular velocity (ω). The units of angular momentum are kg m^2/s, which is the same as the units for moment of inertia multiplied by angular velocity (kg m^2 * 1/s). This relationship is based on the principles of rotational motion and conservation of angular momentum.
joule seconds or newton meter seconds depending on what system you use
Angular momentum is a vector quantity and therefore has dimensions of mass multiplied by length squared divided by time. In SI units, the dimension of angular momentum is kg * m^2/s.
the angular momentum is given by:.L = mass (m) * velocity (v) * radius (r)you have the mass and radius, so to calculate the velocity:.circumference = 2 * pi * r = 2 * 3.1416 * 0.95 = 5.969 metres14.7 rad / sec = 2.3396 rev / secso velocity = circumference * rev / sec = 2.3396 * 5.969 = 13.965 metres / sec.so:.L = m * v * r = 0.73 * 13.965 * 0.95 = 9.685 n-m-s
Momentum is a measure of an object's motion and is calculated as the product of an object's mass and its velocity. In CGS units, momentum is measured in g cm/s, while in MKS units, momentum is measured in kg m/s.
The dimensions of angular momentum are usually represented as mass multiplied by velocity multiplied by distance, which is equivalent to kilogram meters squared per second (kg m^2/s). It is a measure of the rotational motion of an object.
Momentum is mass times velocity (MxV).Mass is in kg and velocity is in m/s.This means that the answer should read kg x m/s.This is not equivalent to newtons which is kg x m/s^2.
The unit of momentum is kilogram meters per second (kg m/s).
7 radians per second IS the angular speed in this case. You don't need to calculate anything else.
To calculate her angular momentum, you would need to know her moment of inertia (which depends on both her mass and how this mass is distributed relative to the axis of rotation), her velocity (speed at which she travels in a circular path), and the radius of the circle she is skating. You would use the formula for angular momentum, which is given by the equation: L = I * ω, where L is angular momentum, I is moment of inertia, and ω is angular velocity.
The angular speed of the merry-go-round can be calculated using the conservation of angular momentum. By incorporating the initial linear momentum of the person into angular momentum, you can determine the final angular speed of the merry-go-round when the person jumps on it. Given the person's mass, velocity, and the merry-go-round's mass and radius, you can solve for the angular speed of the system.