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The formula for converting radians per minute to radians per second is: rad/s = rad/min × 0.0166666666666667. To calculate the radians per minute value in radians per second first substitute the radians per minute value into the preceding formula, and then perform the calculation. If we wanted to calculate 1 radians per minute in radians per second we follow these steps:

In other words, 1 radians per minute is equal to 0.0166666666666667 radians per second.

## Example Conversion

Let's take a look at an example. The step-by-step process to convert 2 radians per minute to radians per second is:

2. Substitute the required value. In this case we substitute 2 for rad/min so the formula becomes: rad/s = 2 × 0.0166666666666667
3. Calculate the result using the provided values. In our example the result is: 2 × 0.0166666666666667 = 0.0333333333333334 rad/s

In summary, 2 radians per minute is equal to 0.0333333333333334 radians per second.

In order to convert the other way around i.e. radians per second to radians per minute, you would use the following formula: rad/min = rad/s × 60. To convert radians per second to radians per minute first substitute the radians per second value into the above formula, and then execute the calculation. If we wanted to calculate 1 radians per second in radians per minute we follow these steps:

Or in other words, 1 radians per second is equal to 60 radians per minute.

## Conversion Unit Definitions

### What is a Radians Per Minute?

Radians per minute (rad/min) is a unit of angular velocity measurement. It represents the rate at which an object rotates or undergoes angular displacement in radians per minute. Radians per minute is used to quantify the rotational speed of objects or systems over longer time intervals.
To provide a detailed example of radians per minute, let's consider a rotating object, such as a turbine blade. If the turbine blade completes an angular displacement of 2π radians in one minute, then its angular velocity would be 2π rad/min. This means that the turbine blade rotates around its axis at a rate of 2π radians per minute.
While radians per minute may not be as commonly used as radians per second (rad/s), it can still find applications in certain scenarios that involve slower rotational speeds or longer observation periods.
In some scientific experiments or observations, where angular displacement is tracked over extended periods, radians per minute may be relevant for monitoring and analyzing rotational dynamics. For instance, in astronomy, the motion of celestial objects or the rotation of a planet can be expressed in terms of radians per minute, providing a measure of their angular movement over a span of time.
In certain engineering applications, where the rotational speed of certain components or systems is relatively low, radians per minute can be used to describe their angular velocity. This could include slow-moving parts in large machinery or specialized devices that require precise control of angular displacement.
It's important to note that radians per minute can be converted to radians per second by dividing the value by 60. For example, 2π rad/min is equivalent to approximately 0.105 rad/s (2π/60).
In summary, radians per minute (rad/min) is a unit of angular velocity measurement, representing the rate at which an object rotates or undergoes angular displacement in radians per minute. While not as commonly used as radians per second, it can find applications in scenarios that involve slower rotational speeds or longer time intervals. Radians per minute provides a measure of angular movement over extended periods and is relevant in certain scientific, astronomical, and engineering contexts.

### What is a Radians Per Second?

Radians per second (rad/s) is a unit of angular velocity measurement. It represents the rate at which an object rotates or undergoes angular displacement in radians per unit of time. Radians per second is a fundamental unit used in physics and engineering to describe rotational motion.
To provide a detailed example of radians per second, let's consider a rotating object, such as a spinning wheel. If the wheel completes an angular displacement of 2π radians in one second, then its angular velocity would be 2π rad/s. This means that the wheel rotates around its axis at a rate of 2π radians per second.
The concept of radians per second finds wide application in various fields. In physics, it is used to describe the angular velocity of objects undergoing rotational motion, such as rotating gears, pendulums, or celestial bodies. Angular velocity is a fundamental parameter for understanding rotational dynamics and can be used to calculate other quantities such as rotational speed or linear velocity at different points on a rotating object.
In engineering, radians per second are crucial for analyzing the behavior of rotating machinery, such as turbines, motors, or flywheels. Angular velocity measurements are used to determine the speed, power output, and efficiency of these systems. By measuring the rate of change of angular displacement, engineers can assess the performance and stability of rotating components.
It's important to note that radians per second can be converted to other units of angular velocity, such as degrees per second or revolutions per minute, by using conversion factors based on the relationship between radians and other angular units.
In summary, radians per second (rad/s) is a unit of angular velocity measurement, representing the rate at which an object rotates or undergoes angular displacement in radians per unit of time. It is widely used in physics and engineering to describe rotational motion and is fundamental for analyzing the behavior and performance of rotating objects and systems.

Below is a lookup table showing common radians per minute to radians per second conversion values.