EQ100EJM
Main Experiments
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Range, uncertainty and velocity in a horizontal launch. — 1032.064_1A
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The range of a horizontal projectile launch from its launch velocity. — 1032.064_2A_4
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Determination of impact velocity from measurement of horizontal launch velocity. — 1032.068_2A_4
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Getting to know the fixed pulley, a simple machine. — 1032.026A_2
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Getting to know the mobile pulley, a simple machine. — 1032.027A_2
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The exponential hoist, a simple machine. — 1032.030A_2
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The parallel notebook, a simple machine. — 1032.031_2
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The characteristic curve of elongation of a coil spring and a rubber belt, elastic hysteresis — 1032.022A_2
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Hooke's law on a helical spring. — 1032.052A_2
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The association of coil springs in series. — 1032.053_2
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The association of coil springs in parallel. — 1032.053A_2
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The conditions of stable, unstable and indifferent static equilibrium for a supported spherical rigid body. — 1032.051_1
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The equilibrium conditions for a suspended rigid body. — 1032.050_1
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Mechanical work, potential energy and kinetic energy in a mass and helical spring system. — 1032.056A_2
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The amount of horizontal movement of a sphere in a horizontal throw. — 1032.076_2C4
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Conservation of momentum, kinetic energy and coefficient of restitution in an elastic collision. — 1032.076_2C6
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The hydrostatic buoyant force, a quantity with direction, sense and module. — 1042.028A_2
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Archimedes' principle, buoyancy and its relation to the volume and density of the displaced liquid. — 1042.032A_2
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Laws of the simple pendulum. — 1032.013_2C4
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Observing the oscillating motion, MHS, in a mass and helical spring system. — 1072.008A_2
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Dynamic determination of the spring constant in an oscillating system of mass and helical spring, MHS. — 1032.012A_2
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The Magdeburg Hemisphere Experiment and Atmospheric Pressure. — 1032.093
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Inflating a balloon, decreasing the external pressure. — 1032.094C
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Significant figures and uncertainties. — 1032.003_0
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The relativity of motion according to the reference frame. — 1032.002
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The MCU, uniform circumferential motion. — 1032.060_1JM
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The combined movement of an MRU with an MCU. — 1032.060A0
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Reference, position, movement and trajectory. — 1032.001
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What are the features of MRU? — 1032.005B1JM
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The meeting of two pieces of furniture in MRU with opposite directions. — 1032.005C1JM
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The MRUV and its characteristics, displacement in one dimension. — 1032.006_DJM
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Free fall motion with a test specimen of 10 equal intervals. — 1032.010K1JM
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Free fall motion with test specimens from 10 different intervals. — 1032.010K4JM
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The simple machine called a fixed pulley — 1032.026_1P
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The simple machine called a movable pulley and its mechanical advantage. — 1032.026_2P
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Determining the mechanical advantages of fixed pulley. — 1032.026AFP
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A freight elevator system using fixed pulleys. — 1032.040EP
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The spring constant of a helical spring, Hooke's law, the restoring force. — 1032.052AFP
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The spring constant of a series association of springs, Hooke's law, the restoring force. — 1032.052AF_1P
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The spring constant of a parallel association of springs, Hooke's law, the restoring force. — 1032.052AF_2P
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Determination of the coefficients of static, kinetic and sliding friction on an inclined plane. — 1032.048
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Frictional forces and Newton's first law of motion. — 1032.046
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— 1032.086
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Kepler's laws of planetary motion. — 1072.003
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Work and mechanical energy in a mass and helical spring system. — 1032.056AFP
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Determining the translational kinetic energy and potential energy of a sphere rolling down a ramp. — 1032.072A4JM
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Conservation of mechanical energy, moment of inertia. — 1032.072A1JM
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The principle of conservation of mechanical energy in a falling cylinder. — 1032.010K3JM
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The principle of conservation of mechanical energy in a falling sphere. — 1032.010K5JM
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Mass, weight and determination of the local g value. — 1032.039_1P
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The composition of concurrent coplanar forces, 90° apart. — 1032.040F1P
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The composition and decomposition of concurrent coplanar forces with 60 — 1032.040F2P
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The composition and decomposition of concurrent coplanar forces at 120° to each other. — 1032.040FP
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The composition and decomposition of concurrent coplanar forces. — 1032.040F_0P
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The equilibrium conditions of a rigid body, Varignon's theorem. — 1032.035FP
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Checking the equilibrium conditions of a rigid body, Varignon's theorem. — 1032.035FAP
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Equilibrium of a rigid body, the interfixed lever, Varignon's theorem. — 1032.035AFP
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Equilibrium of a rigid body, the inter-resistant lever, Varignon's theorem. — 1032.035BFP
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Equilibrium of a rigid body applied, the interpotent lever, Varignon's theorem. — 1032.035CFP
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The equilibrium conditions of a mobile on an inclined plane. — 1032.043
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The driving force, the resisting force and the mechanical advantage of the inclined plane, simple machine. — 1032.034
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Isothermal transformation, Boyle-Mariotte law. — 1052.032Q2
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the simple pendulum and the laws of the simple pendulum. — 1032.013P
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The mass-spring oscillator and the dynamic determination of the elasticity constant. — 1032.012AFP
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The MHS from an MCU. — 1072.004B
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Main characteristics of waves in a long helical spring. — 1072.011
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Determining the average speed of propagation of a pulse in a long helical spring. — 1072.011_1
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The phenomenon of reflection and interference in a transverse wave in a spring, standing wave. — 1072.011_2
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Formation and propagation of two-dimensional waves on a liquid surface. — 1072.012H
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Determination of the propagation velocity of two-dimensional waves on a liquid surface. — 1072.013H
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The reflection of a two-dimensional wave from a liquid surface. — 1072.016H
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The refraction of two-dimensional waves at a liquid surface. — 1072.020H
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Diffraction of two-dimensional waves on a liquid surface. — 1072.024H
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The interference of two-dimensional waves on a liquid surface. — 1072.029H
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The Doppler effect in two-dimensional waves on a liquid surface. — 1072.030J
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The standing wave on a string. — 1072.032E_1A2
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Comparing standing waves on an elastic string at different tensions. — 1072.032E_2A2
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The standing wave on a composite string. — 1072.032E_3A2
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The influence of tension applied to a vibrating string on the frequency of the wave. — 1072.032E_4A2
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Heat, temperature, and the body's ability to store energy. — 1052.003K1T
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Thermal equilibrium. — 1052.003K2T
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The water equivalent and heat capacity of a calorimeter. — 1052.003K7
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The specific heat, mass heat capacity, of an aluminum solid. — 1052.003K8
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Determining the latent heat of fusion of ice. — 1052.003K9
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The thermoscope. — 1052.004B
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Heat and temperature. — 1052.004C2_1
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Heat and temperature. — 1052.004C2_2T
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The physical states of water. — 1052.008_A3A
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Boiling and condensation of water. — 1052.012AT
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Burning a candle produces light and heat. — 0001.235C
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Conduction, a means of propagation of heat, means of transmission, transfer of heat. — 1052.024A
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Convection, a means of heat propagation, means of heat transmission, heat transfer. — 1052.024C1
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Radiation, a means of propagating heat. — 1052.024C2
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The influence of color on thermal insulation. — 1052.024C3
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Some energy transformations, electrical, light, thermal and mechanical. — 1052.024C4
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The variation of volume and the variation of area of metallic bodies as a function of temperature. — 1052.019A
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The variation in the length of copper as a function of its initial length and the variation in temperature. — 1052.020AA1
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The variation in the length of brass as a function of its initial length and the variation in temperature. — 1052.020AA2
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The variation in the length of steel as a function of its initial length and the variation in temperature. — 1052.020AA3
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Determining the coefficient of linear expansion of copper. — 1052.020BA1
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Determining the coefficient of linear expansion of brass. — 1052.020BA2
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Determining the coefficient of linear expansion of steel. — 1052.020BA3
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The variation in the length of copper as a function of temperature, maintaining the initial length. — 1052.021F1A1
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The variation in the length of brass as a function of temperature, maintaining the initial length. — 1052.021F1A2
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The variation in the length of steel as a function of temperature, maintaining the initial length. — 1052.021F1A3
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Sound, a longitudinal mechanical wave. — 1072.059
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Sound, phenomena of interference, resonance and beat. — 1072.060
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Sound, Doppler effect. — 1072.061
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Light, the properties of rectilinear propagation and the independence of rays. — 1062.003E1B
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Reflection of light in a plane mirror and the laws of reflection. — 1062.003E2B
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An application of multiple reflections between plane mirrors. — 1062.003E3B
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Reflection in concave and convex spherical mirrors. — 1062.003E4B
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The refraction of light and its laws, the diopters. — 1062.003E5B
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Vision defects, correction of ametropia, hyperopia and myopia, with lenses. — 1062.003E7B
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Discharge into air under atmospheric pressure. — 1082.012_1
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Configurations of the lines of force between electrodes, the lightning rod, the Faraday cage and the coaxial cable. — 1082.020A_1
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The electric potential and the amount of charge accumulated in the generator. — 1082.027_1
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Spark extension in the Van de Graaff generator and dielectric strength. — 1082.027A_1
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The principle of operation of the foil electroscope and the distribution of charges in a conductor. — 1082.004_1
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Turning on a fluorescent lamp without contact with the generator. — 1082.026_1
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Lighting a neon lamp without contact with the generator. — 1082.026A_1
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Making an electric fountain. — 1082.026B_1
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Repelling paper strips with generator. — 1082.026C_1
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Simulating a lightning rod with the generator. — 1082.026D_1
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Hair-raising with the electrostatic generator. — 1082.026E_1
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The turnstile, effect of electric wind, with the generator. — 1082.026F_1
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Equipotential surfaces, lines of force and electric field vector between point electrodes. — 1082.029C
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Equipotential surfaces, lines of force and electric field vector, between flat and parallel electrodes. — 1082.030C
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The Faraday cage and electrostatic shielding. — 1082.031C
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Lamp associations in series and parallel. — 1082.044A
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The function of a fuse, the Joule effect. — 1082.044B
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The color code in the characterization of a resistor and its electrical resistance. — 1082.048
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The measurement of the potential difference between two points in a DC circuit. — 1082.053
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The measurement of electric current intensity in DC circuits. — 1082.054
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Ohm's law. — 1082.056A
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The identification of a non-ohmic resistor. — 1082.064A
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The association of capacitors in parallel. — 1082.065
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Series capacitors. — 1082.066
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Associations of electrical resistances, resistors. — 1082.076A
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Kirchhoff's laws of meshes and knots. — 1082.076A_2
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The electrical resistance offered by a diode and its polarization. — 1082.088A
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Measurements in mixed circuits and electrical power. — 1082.092A
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Electric current produces magnetic effects. — 1082.128
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Faraday's and Lenz's law of induction, electromagnetic phenomena. — 1082.128_1
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How the telegraph works. — 1082.144
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The operation of the electric bell. — 1082.148
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Oersted's experiment and electromagnetism, folding table, inverter switch. — 1082.160
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Biot-Savart law, electromagnetic phenomena. — 1082.164
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Magnetic induction around parallel circular coils carrying an electric current. — 1082.168
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Magnetic induction inside a solenoid carrying an electric current. — 1082.172
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Temporary magnet, electromagnet, ferromagnetic material. — 1082.176
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The electromagnet, a temporary magnet and magnetic permeability. — 1082.176_1
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The electrical voltage transformer. — 1082.176_3
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The action of the electromagnetic force on a conductor carrying an electric current, immersed in a magnetic field. — 1082.136
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The electromagnetic force acting on a moving conductor carrying electric current immersed in a magnetic field. — 1082.136_A
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A direct current electric motor. — 1082.152