well from my experience "if understand the question correctly" take the number of gears on the back derailleur and multiply that number with how many gears are on the front derailleur
When describing the velocity of an object, you must specify the speed (magnitude of velocity) and the direction in which the object is moving. Velocity is a vector quantity, meaning it has both magnitude and direction.
The velocity of the car in this case is changing (to specify velocity, you indicate a speed and a direction), therefore the car is accelerating.The velocity of the car in this case is changing (to specify velocity, you indicate a speed and a direction), therefore the car is accelerating.The velocity of the car in this case is changing (to specify velocity, you indicate a speed and a direction), therefore the car is accelerating.The velocity of the car in this case is changing (to specify velocity, you indicate a speed and a direction), therefore the car is accelerating.
When describing the velocity of an object, you must specify both the speed (magnitude of the velocity) and the direction in which the object is moving.
The speed and the direction.
Velocity is a vector quantity that includes both speed and direction. To convert speed to velocity, you need to include the direction in which the object is moving. So, the equation for converting speed to velocity is velocity = speed * direction, where direction is a unit vector indicating the object's direction of motion.
610 mph in the NorthWest direction. Both speed and direction are required to specify the velocity.
The speed of an object in a particular direction is known as its velocity. Velocity is a vector quantity that includes both speed (magnitude) and direction. It is important to specify both the speed and the direction to fully describe the motion of an object.
The bike's average speed during that time was 51/3 kilometers per hour.There's no way to determine its velocity, because the question doesn't giveany information about the bike's direction ... a necessary part of velocity.
You have a velocity when both a speed and a direction is specified. This kind of magnitude is known as a "vector" - that is, when it is relevant to state a direction, as well as a magnitude, we speak about "vectors".
The units are the same (metres per second) except that the velocity also has the direction of motion associated with it.
'Speed' . If you also specify the direction in which it moves by that distance, then you have 'velocity'.
Velocity is a vector; to specify velocity, you indicate a speed (a magnitude), and a direction. If two objects move in different directions, their velocities will be different, even if their speeds are the same.Velocity is a vector; to specify velocity, you indicate a speed (a magnitude), and a direction. If two objects move in different directions, their velocities will be different, even if their speeds are the same.Velocity is a vector; to specify velocity, you indicate a speed (a magnitude), and a direction. If two objects move in different directions, their velocities will be different, even if their speeds are the same.Velocity is a vector; to specify velocity, you indicate a speed (a magnitude), and a direction. If two objects move in different directions, their velocities will be different, even if their speeds are the same.