in order for a circuit to work the whole circuit has to be connected, just like the circulatory system. The heart pumps the blood around the body so that the oxygen in the blood can go around the body to the required organs or muscles. In a circuit the battery pumps the electrons around the circuit so that the bulb is able to work.
Consider two points (A and B) in an electric circuit. An open circuit between A and B means there is no electrical connection between A and B. A short circuit between A and B means there is an electrical connection between A and B.
both combinational and sequential circuits have two inputs and outputs..!
if an electric circuit has potential difference. Electricity will flow only if an electrical circuit is closed.
difference between p type and n type semiconducter materialAnswerInsulation is used to prevent a short current. To protect the circuit should a short-circuit fault occur is either a fuse or a circuit breaker.
Two or more electrical components connected together is called a circuit. Depending on how components are connected, it is either an open circuit, closed circuit, or a short circuit.
The range of amperage for the electrical circuit in question is between 15 to 20 amps.
The nervous system is similar to an electrical circuit in that it transmits electrical signals (nerve impulses) throughout the body to communicate and control various functions. Just like how an electrical circuit carries current to power a device, the nervous system carries impulses to coordinate body movements and regulate bodily processes.
What are the differences between electrical and magnetic circuit.
Consider two points (A and B) in an electric circuit. An open circuit between A and B means there is no electrical connection between A and B. A short circuit between A and B means there is an electrical connection between A and B.
Pronunciation. An electrical circuit is the exact same as the electric system.
Electrical circuits are grounded to the earth.
both combinational and sequential circuits have two inputs and outputs..!
The relationship between wire inductance and the efficiency of an electrical circuit is that higher wire inductance can lead to lower efficiency in the circuit. Inductance causes energy losses in the form of heat, which can reduce the overall efficiency of the circuit by wasting energy. Minimizing wire inductance can help improve the efficiency of the electrical circuit.
The voltage in an electrical circuit is determined by the difference in electric potential between two points in the circuit. It is measured in volts and is influenced by factors such as the power source, resistance in the circuit, and the components connected to it.
In an electrical circuit, the voltage is the force that pushes electric current through the circuit. The electrode is the conductor that allows the current to flow. The relationship between voltage and electrode is that the voltage creates a potential difference between the electrodes, which drives the flow of electrons through the circuit.
A series circuit is one in which the current must pass through all the electrical devices in the circuit in turn. A parallel circuit is one in which the current passes through each electrical device on the circuit following separate, independent path from all other devices on the circuit, one for each electrical device.
The relationship between capacitance and current in an electrical circuit is that capacitance affects the flow of current in the circuit. A higher capacitance means the circuit can store more charge, which can impact the current flowing through the circuit. The current in a circuit with capacitance can change over time as the capacitor charges and discharges.