QUESTION IMAGE
Question
put the steps of operation for a dc battery in the correct order.
prompts
1 step 1
2 step 2
3 step 3
4 step 4
5 step 5
6 step 6
answers
select match
current flows from commutator segment to one of the armature
winding
current flows from positive terminal to positive brush
as the armature rotates, the commutator rotates with it
current flows through the armature winding in one direction and then
back
magnets north pole attracts the armatures south pole while the south
pole attracts the armatures north pole
current flows from brush to a commutator segment
Step1: current flows from positive terminal to positive brush
This is the starting point as the power source (battery) initiates the current flow.
Step2: current flows from brush to a commutator segment
The brush - commutator interface is part of the path for current transfer in a DC machine.
Step3: current flows from commutator segment to one of the armature winding
The commutator distributes the current to the armature windings.
Step4: current flows through the armature winding in one direction and then back
The current flow in the armature winding is essential for creating a magnetic field.
Step5: magnets north pole attracts the armature's south pole while the south pole attracts the armature's north pole
This magnetic interaction causes the armature to rotate.
Step6: as the armature rotates, the commutator rotates with it
The rotation of the commutator is necessary for the continuous operation of the DC machine.
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- current flows from positive terminal to positive brush
- current flows from brush to a commutator segment
- current flows from commutator segment to one of the armature winding
- current flows through the armature winding in one direction and then back
- magnets north pole attracts the armature's south pole while the south pole attracts the armature's north pole
- as the armature rotates, the commutator rotates with it