direction affects power by saying yo this is the right answer..
Yes! For sure!
stem direction does not affect note duration
Weather conditions such as wind speed and direction directly impact the amount of power that can be generated by wind turbines. Higher wind speeds result in more energy production, while low wind speeds may lead to a decrease in power output. Variation in wind direction can also affect the efficiency of wind turbines.
No, direction does not affect uniform motion. Uniform motion is characterized by constant speed and direction, so as long as the speed remains constant, changing direction will not impact the uniform motion.
it does not.
no
Acceleration is the rate at which velocity changes. If an object experiences acceleration in the same direction as its velocity, its speed will increase. If acceleration is in the opposite direction of velocity, the object will slow down. Changes in acceleration can also affect the direction of velocity, causing the object to change direction.
Yes they do. All winds, prevailing or not and whatever their direction, affect the weather. They are part of it.
The power plant produces power
It sowed the seeds for conflict. Each of the religions attempts to increase its power base and control the direction of politics to best support those people of its religious confession.
Strictly speaking, it's energy flow that has direction -the term 'power' merely describes the rate at which that energy is flowing. Having said that, however, the term 'power flow' is indeed used, but it must be understood that the term is really describing the 'rate at which energy is flowing'. There is no direct relationship between the direction of current and the direction of 'power'. For example, an alternating current is continually changing direction, while the resulting power flow acts continuously in the same direction. The reason for this is that current flow direction cannot be taken in isolation, as it must be considered together with the direction of the potential difference that is causing that current to flow. If we allocate positive and negative symbols to specify the direction of potential difference and current, where (for example) 'positive' defines a clockwise direction around the circuit, then the product of the two positive signs result in a positive direction for power flow direction. If we now reverse the direction of the potential difference and the current, their signs both become negative, and the product of two negatives is a positive -indicating that the power does not reverse direction, but continues in the same direction.
no