As the original design did not work as required then it is back to the drawing board to redo the design
Excitation tables helps to know the input conditions of the flip flops that will cause the required transition from the present state to the next state.
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Excitation frequency can be calculated as the reciprocal of the excitation period, which is the time interval between two consecutive excitations. The formula is: Excitation frequency = 1 / Excitation period. Alternatively, if you know the excitation waveform (e.g., sine wave), you can determine the excitation frequency from the period of that waveform.
When the SEM's primary electron beam hits the specimen, it causes excitation of atoms in the specimen. This excitation leads to the emission of secondary electrons, backscattered electrons, characteristic X-rays, and Auger electrons, which are then detected by various detectors in the SEM for imaging and analysis.
To test the excitation current of a transformer, you can perform an open-circuit test, where the primary winding is connected to the rated voltage while the secondary winding is left open. Measure the current flowing through the primary winding using an ammeter; this current is the excitation current. It's essential to ensure the transformer is at the specified voltage and frequency during the test for accurate results. Additionally, record the voltage and power factor for further analysis if needed.
Increasing the excitation current in an electrical machine, such as a generator or motor, typically raises the magnetic field strength. This can lead to an increase in output voltage for generators or enhance the torque and performance in motors. However, excessive excitation can cause saturation of the magnetic core, leading to diminished returns and potential overheating. Proper management of excitation current is essential for optimal machine performance and longevity.
The neuron adds up all the excitatory and inhibitory inputs and fires when they reach its threshold of excitation.
no it wasn't the primary cause for the Enlightment
Excitation theory is a misattribution of arousal.
Yes, there is an excitation current that flows through the primary side of the transformer which is located in the magnetic ballast's casing.
Excitation can lead to two primary outcomes: the emission of energy in the form of light or heat, and the increase in energy levels of particles or atoms. For example, when electrons are excited to higher energy states, they may release energy as photons when they return to their original states, resulting in visible light. Additionally, excitation can lead to changes in the physical properties of materials, such as increased conductivity or reactivity.
Zillman's Excitation Transfer Effect http://doctordigger.blogspot.com/2005/07/zillmans-excitation-transfer-effect.html