Definitions and examples▪ Global horizontal irradiance▪ Normal direct irradiance▪ Horizontal diffuse irradiation▪ Ratio between diffuse and global irradiance.▪ Optimal irradiance of photovoltaic modules.
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Definitions and examples
▪ Global horizontal irradiance
▪ Normal direct irradiance
▪ Horizontal diffuse irradiation
▪ Ratio between diffuse and global irradiance.
▪ Optimal irradiance of photovoltaic modules.

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- Give 2 examples of applications that use piezoelectricity?What are very rough estimates of the graphs of capacitor voltage vs. time and resistor voltage vs. time while charging and discharging?If the pulse must exist for 1 second in monostable mode, what must be the capacitance given a resistance of 9090.909091 ohms? _____ uF Your answer
- by High Voltagequick pleaseThe Chocolate Crumb Mystery Explosions ignited by electrostatic discharges (sparks) constitute a serious danger in facilities handling grain or powder. Such an explosion occurred in chocolate crumb powder at a biscuit factory in the 1970s. Workers usually emptied newly delivered sacks of the powder into a loading bin, from which it was blown through electrically grounded plastic pipes to a silo for storage. Somewhere along this route, two conditions for an explosion were met: 1. The magnitude of an electric field became 3.0 x 106 N/C or greater, so that electrical breakdown and thus sparking could occur. 2. The energy of a spark was 150 mJ or greater so that it could ignite the powder explosively. Let us check for the first condition in the powder flow through the plastic pipes. Suppose a stream of negatively charged powder was blown through a cylindrical pipe of radius R = 5.0 cm. Assume that the powder and its charge were spread uniformly through the pipe with a volume charge density…
- A series circuit consisting of a 50 – ohm resistor, 0.5 – henry inductor, and a 100 – microfarad capacitor is connected to a 110 – volt, 50 cycle source. Calculate the following: a.) TOTAL IMPEDANCE b.) CURRENT c.) VOLTAGE DROP ACROSS THE RESISTOR d.) VOLTAGE DROP ACROSS THE INDUCTOR e.) VOLTAGE DROP ACROSS THE CAPACITOR f.) AVERAGE POWER g.) APPARENT POWER h.) REACTIVE POWER i.) POWER FACTOR j.) POWER FACTOR ANGLE DRAW THE PHASOR DIAGRAM IF POSSIBLE AND ROUND OFF TO FOUR DECIMAL PLACES6. Peak to peak ripple is defined as a) the difference between zero voltage and maximum b) the difference between average dc voltage and peak value c) the difference between maximum and minimum dc voltage d) the difference between maximum ac and average de voltages e) the difference between ac (rms) and average dc voltages f) none of above 7. a belt speed of 1.5 m/s, charge density of 12 µc/m2 and a belt width 2 m. The maximum charging current is: a ) 45 μΑ b) 50 μΑ c) 72 µA d) 81 µA e) 115μA f) None of above 8. In a Cockroft-Walton circuit, input voltage 100 kV load current 25 mA, supply frequency 100 Hz, each capacitor 10 nF. The optimum no. of stages for maximum output voltage is а) 1 b) 2 c) 10 d) 35 е) 45 f) None of above 9. If D is the diameter of the sphere, for better measurements, the gaps 'S' should be such that, a) 0.05 DA 150 – microfarad capacitor is connected to a 220 – volt, 60 – cycle source. Calculate (a) the capacitive reactance, (b) the current in the circuit, (c) the average power taken by the capacitor, and (d) the maximum power delivered to the capacitor. DRAW THE PHASOR DIAGRAM IF POSSIBLE. ROUND OFF TO FOUR DECIMAL PLACESv. What is the purpose of a capacitor in electronic circuits?A solid dielectric specimen of dielectric constant of 4.0 has internal void of thickness 0.05 mm. The specimen is 0.5 cm thick and is subjected to a voltage of 40 kV (rms). If the void is filled with air and if the breakdown strength of air can be taken as 30 kV (peak)/cm, find the voltage at which an internal discharge can occur.PLEASE SHOW COMPLETE SOLUTION.

