M101 |
Rotation of a rigid body |
Mechanics
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M102
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Energy transformations in the movement of pendulum
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Mechanics
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M103
|
Atwood’s machine – uniformly accelerated motion
|
Mechanics
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M104
|
Free fall and slide on an inclined plane
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Mechanics
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E101
|
Study of the resonance in RLC circuits
|
Electricity and magnetism
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E102
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Study of the magnetic hysteresis
|
Electricity and magnetism
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E103
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Study of the Faraday's law of induction
|
Electricity and magnetism
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E104
|
Characteristics of diodes and transistors
|
Electricity and magnetism
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|
E106 |
RL and RC circuits in alternate current circuits |
Electricity and magnetism |
|
E 107 |
Resonance in RLC circuits (non - radiative dipole coupling) |
Electricity and magnetism |
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E201
|
RL and RC circuits in alternate current circuits (programing)
|
Electricity and magnetism
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E202
|
Electromagnetic induction – Faraday’s effect (programing) |
Electricity and magnetism |
|
E203
|
Radiationless coupling in RLC circuits (programing)
|
Electricity and magnetism
|
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D101
|
Properties of sound waves. Sound velocity and beats
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Vibrations and waves
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D102
|
Mechanical damped oscillator
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Vibrations and waves
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D103
|
Coupled physical pendulums
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Vibrations and waves
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D104
|
Doppler’s effect
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Vibrations and waves
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K1A, K1B |
Data accumulation by measuring charts UIA UIB |
LabView |
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K2A, K2B |
Music chart |
LabView |
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K3A, K3B |
Programing of NI PCI-6014 chart |
LabView |
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K4A, K4B |
The use of serial communication physical interface |
LabView |
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