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Electricity, electromagnetism, electronics, and automation combined with a microcontroller.

Function

Intended for experimental study, physics laboratory work, and conducting physics experiments on: Physics. Electricity and electrodynamics. Series and parallel lamp connections. The function of a fuse, the Joule effect. Measuring the potential difference between two points in a DC circuit. Measuring the intensity of electric current in different sections of a DC circuit. Determining the electrical power of components in a mixed electrical circuit. Series and parallel connections of capacitors. Ohm's first law, the relationship linking the three main electrical quantities. Series connection of resistors, determining the equivalent resistor. Identifying a resistor that does not obey Ohm's law, a non-ohmic resistor. The electrical resistance offered by a diode and its polarization. Kirchhoff's loop law. Charging and discharging a capacitor, a series RC circuit. The color code in characterizing a resistor and its electrical resistance. Measuring the potential difference, electrical voltage, between different points in a DC circuit. Measuring the intensity of electric current in a series DC circuit. Measuring and calculating the equivalent resistance in a series resistor network. Measuring and calculating the equivalent resistance in a parallel resistor network. Measuring and calculating the equivalent resistance in a mixed resistor network. Ohm's law, ohmic resistor. Kirchhoff's loop law. Kirchhoff's node law. Series and parallel capacitor networks. The function of a diode in a circuit. Determining the charging and discharging of a capacitor in a circuit. The transistor operating as a switch in an RC circuit. The transistor operating as a time-delay switch. Amplifier circuit, electric current can circulate through the human body. The oscillator circuit and a practical application, a vehicle signaling flasher. The timer circuit, single-shot multivibrator, the timer timer. The memory circuit, double-plate switch circuit or flip-flop circuit. The AND logic gate, a circuit with two distinct interruption points. The OR logic gate, a circuit with two distinct interruption points. The NAND logic gate, a circuit with two distinct breakpoints. The NOR logic gate, a circuit with two distinct breakpoints. Electromagnetism. Oersted's experiment and electromagnetism. Magnetic balance and the force that drives it. The DC electric motor, an application of the laws of electromagnetism. Robotics. Electronics and programming. Lighting up sequences of colored LEDs with Arduino. Controlling colored LEDs with Arduino and buttons. Emergency light with Arduino and light sensor (LDR). Presence detector with Arduino and presence sensor (PIR). Parking sensor with Arduino, ultrasonic sensor and buzzer. Detecting presence with Arduino and infrared sensor, buzzer. Qualitative sound intensity indicator with sound sensor and Arduino. DC electric motors. Controlling a mini DC motor with a potentiometer. Newton's disc with a mini DC motor. Learning angles with a servomotor. Controlling two DC motors using an H-bridge, etc. Note: Batteries and electrical meters are not included.

Key Experiments

  • » Oersted's experiment and electromagnetism - 1082.127C
  • » Magnetic balance and the force that drives it. - 1082.138
  • » The direct current electric motor, an application of the laws of electromagnetism. - 1082.154
  • » Lighting up sequences of colored LEDs with Arduino - 1092.030
  • » Controlling colored LEDs with Arduino and buttons. - 1092.031
  • » Emergency light with Arduino and LDR light sensor. - 1092.032
  • » Presence detector with Arduino and PIR presence sensor. - 1092.033
  • » Parking sensor with Arduino, ultrasonic sensor and buzzer. - 1092.034
  • » Detecting presence with Arduino and infrared sensor, buzzer. - 1092.035
  • » Qualitative sound intensity indicator with sound sensor and Arduino. - 1092.036
  • » Basic concepts of electronics. - 2010.550
  • » Basic concepts of programming with Arduino. - 2010.551
  • » Installing the Arduino IDE on your computer. - 2010.552
  • » Controlling a mini DC motor with a potentiometer. - 1092.037
  • » Newton's disc with mini DC motor. - 1092.037A
  • » Learning angles with a servomotor. - 1092.038
  • » Controlling two DC motors using an H-bridge. - 1092.039
  • » Series and parallel lamp connections. - 1082.044C2
  • » The function of a fuse, the Joule effect. - 1082.044D2
  • » The measurement of the potential difference (voltage) between two points in a DC circuit. - 1082.044G2
  • » The measurement of electric current intensity in different sections of a DC circuit. - 1082.044H2
  • » Determining the electrical power of components in a mixed electrical circuit. - 1082.092A_7
  • » The association of capacitors in series and parallel. - 1082.044J2
  • » Ohm's first law, a relationship that links the three main electrical quantities. - 1082.044E2
  • » Series connection of resistors, determining the equivalent resistor. - 1082.044F2
  • » Identifying a resistor that does not obey Ohm's law, a non-ohmic resistor. - 1082.044I2
  • » The electrical resistance offered by a diode and its polarization. - 1082.044L2
  • » Kirchhoff's loop law. - 1082.044M2
  • » Charging and discharging a capacitor, series RC circuit. - 1082.067B
  • » The color code used to characterize a resistor and its electrical resistance. - 1082.048
  • » The measurement of the potential difference, or electrical voltage, between different points in a DC circuit. - 1082.053C
  • » Measuring the intensity of electric current in a DC series circuit. - 1082.054C
  • » Measuring and calculating the equivalent resistance in a series resistor network. - 1082.055_A
  • » Measuring and calculating the equivalent resistance in a parallel resistor network. - 1082.055_B
  • » Measuring and calculating the equivalent resistance in a mixed resistor network. - 1082.055_C
  • » Ohm's law, ohmic resistor. - 1082.055_D
  • » Kirchhoff's loop law. - 1082.055_E
  • » Kirchhoff's knot law. - 1082.055_F
  • » Series and parallel connections of capacitors. - 1082.055_G
  • » The function of a diode in a circuit. - 1082.055_H
  • » Observing the charging and discharging of a capacitor in a circuit. - 1082.055_J
  • » The transistor operating as a switch in an RC circuit. - 1082.055_K
  • » The transistor operating as a time-delay switch. - 1082.055_L
  • » Amplifier circuit, electric current can circulate through the human body. - 1082.055_M
  • » The oscillator circuit and a practical application: a vehicle signal flasher. - 1082.055_N
  • » The timer circuit, single-shot multivibrator, the timer. - 1082.055_O
  • » The memory circuit, double-plate switch circuit, or flip-flop circuit. - 1082.055_P
  • » The AND logic gate, a circuit with two distinct interrupt points. - 1082.055_Q
  • » The OR logic gate is a circuit with two distinct interruption points. - 1082.055_R
  • » The NAND logic gate is a circuit with two distinct interrupt points. - 1082.055_S
  • » The NOR logic gate, a circuit with two distinct interrupt points. - 1082.055_T
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