A smooth radius sheet metal elbow typically creates the least amount of resistance compared to sharp elbows or mitered elbows. This design allows for a more gradual change in direction of airflow, reducing turbulence and pressure drop.
The branch with the highest resistance will have the least amount of current flow in a parallel circuit. This is because current follows the path of least resistance, so more current will flow through branches with lower resistance.
In a parallel circuit, each branch has the same voltage but different current flows. The branch with the highest resistance will have the least amount of current flow, as current follows the path of least resistance.
A conductor has the least amount of resistance among the options provided. Conductors have low resistance due to their ability to easily conduct electricity through the movement of electrons. Conversely, insulators have high resistance, while semiconductors and resistors can have varying levels of resistance depending on their composition and structure.
No, current does not flow through a circuit by taking the path of least resistance. Instead, current flows through all available paths in a circuit, with the amount of current in each path determined by the resistance of that path.
A smooth, slippery surface like ice or Teflon typically has the least amount of friction. This is because these surfaces have very low coefficients of friction, allowing objects to slide easily with minimal resistance.
The branch with the highest resistance will have the least amount of current flow in a parallel circuit. This is because current follows the path of least resistance, so more current will flow through branches with lower resistance.
In a parallel circuit, each branch has the same voltage but different current flows. The branch with the highest resistance will have the least amount of current flow, as current follows the path of least resistance.
The higher the resistance, the less current will flow through it (while the supply voltage remains constant).
Yes, the resistance is directly proportional to length of wire and inversely proportional Area, hence when Length of wire increases the resistance also increases and when Area increases the resistance decreases. This means a thick wire has least amount of Electrical resistance.
Amount of resistance
The branch with the highest resistance in a parallel circuit will have the least current flow. Ohm's Law: Current = Voltage divided by Resistance
A conductor has the least amount of resistance among the options provided. Conductors have low resistance due to their ability to easily conduct electricity through the movement of electrons. Conversely, insulators have high resistance, while semiconductors and resistors can have varying levels of resistance depending on their composition and structure.
No, current does not flow through a circuit by taking the path of least resistance. Instead, current flows through all available paths in a circuit, with the amount of current in each path determined by the resistance of that path.
A smooth, slippery surface like ice or Teflon typically has the least amount of friction. This is because these surfaces have very low coefficients of friction, allowing objects to slide easily with minimal resistance.
Natural gas creates the least amount of air pollution when burned compared to other fossil fuels like coal and oil. It produces lower levels of greenhouse gases, sulfur dioxide, and nitrogen oxides, making it a cleaner alternative for energy production.
Electrons typically move from areas of higher voltage to areas of lower voltage, following the path of least resistance in a circuit. This movement creates an electric current.
Electricity always seeks the path of least resistance. It flows through conductive materials that offer lower resistance, allowing it to move more easily. If given the choice, electricity will always follow the path that offers the least amount of obstruction to its flow.