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Short.
Diffusion is more efficient over short distances because particles have less space to travel through, leading to faster mixing and dispersion. Over long distances, diffusion becomes less efficient as particles must travel further, encountering more obstacles and taking more time to reach their destination.
Traveling by plane is often fastest, most efficient, and easiest over long distances.
Traveling by plane is often fastest, most efficient, and easiest over long distances.
The Welsh Cob is known for its ability to sustain a trot for long distances due to its natural stamina and agility. This gait is energy-efficient and comfortable for both the horse and rider, making it ideal for covering long distances.
The v-formation is more efficient for birds who are flying long distances.
The most energy-efficient way to send signals across interstellar distances is through the use of lasers. Laser beams can carry information in the form of light pulses, which can travel long distances through space with minimal energy loss. This method is more efficient than traditional radio waves, as lasers can be focused into a narrow beam, reducing the amount of energy needed to transmit signals over vast distances.
They aren't. Bikes are more suitable for long distances.
Running long distances is more mental than physical. If all you think about when you run is how much pain you are in, you are more likely to stop, so to keep running, place goals to run to, and when you are close to that place, move it furter up. There really is no special technique to running long distances. You just have to know how far you can push your body.
Optical fibers can carry light long distances because of total internal reflection, which ensures that light stays within the fiber by continuously reflecting off the inner walls. This allows for minimal loss of signal strength over long distances, making optical fibers an efficient method for transmitting light.
When electricity is transported long distances via large overhead transmission lines, the voltage can be transformed up to 500,000 volts (B). This high voltage reduces energy loss during transmission, allowing for efficient delivery of electricity over long distances.
Either is correct.