always current flow from the opposite direction of electron
Maybe... Electricity flows from a high potential to a low potential. Depending on where you have your high and low points it could look like its going clockwise but it really is only going from a high potential to a lower potential (normally ground)
The direction of current due to flow of electrons is opposite to the direction of conventional current. This is because electrons have a negative charge, so when they flow in a wire, they are actually moving in the opposite direction to the current flow defined by convention.
Potassium ions flow out of the neuron during the repolarization phase of the action potential, moving down their concentration gradient. This helps to restore the neuron's resting membrane potential.
You can determine the direction in which a comet is moving by observing its motion against the background stars over a period of time. If the comet appears to be moving eastward against the stars, it is moving in a westerly direction in relation to the Earth. If it appears to be moving westward, it is moving in an easterly direction from Earth's perspective.
to actually get the electrons moving there needs to be an electric potential better known as voltage. the voltage allows the electrons to be attracted towards, repelled from in one direction across cables
the electrons flow from the region of low potential to region of high potential. the electric current also flow in this direction but for convention we took it as the flow of positive charge from region of low to high region potential.
always current flow from the opposite direction of electron
It is energy of moving electrons
the molecules are moving faster and the electrons are moving to higher levels
The kinetic energy of moving electrons comes from the electromagnetic force exerted on the electrons as they interact with other charged particles in the material they are moving through. This force accelerates the electrons, giving them kinetic energy.
Electrons naturally tend to flow from a point that has a more negative potential, to one that is more positive. Inside the battery, of course, it is the other way round; they flow from positive to negative - the battery provides the required energy. In this case, the battery can be considered an electron pump.
Maybe... Electricity flows from a high potential to a low potential. Depending on where you have your high and low points it could look like its going clockwise but it really is only going from a high potential to a lower potential (normally ground)
Conventional current is the effective direction of positive charge. When in a metal the negative charged electrons are moving in one direction, the conventional positive current is in the other direction.
When an electric field is applied to moving electrons in space, the field exerts a force on the electrons due to their charge. This force causes the electrons to deviate from their original path and change direction. The amount of deflection depends on the strength of the electric field and the velocity of the electrons.
In a conducting material, the moving charges that make up an electric current are electrons. In an electrolyte solution, the moving charges can be ions, both positively and negatively charged, depending on the direction of the current flow.
The direction of current due to flow of electrons is opposite to the direction of conventional current. This is because electrons have a negative charge, so when they flow in a wire, they are actually moving in the opposite direction to the current flow defined by convention.