Operation of an Inkjet Printer
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle. The pattern on the paper is controlled by an electrostatic valve that determines at each nozzle position whether ink is squirted onto the paper or not.

The ink drops have a mass m = 1.00x10-11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 21.0 m/s. The drops pass through a charging unit that gives each drop a positive charge g by causing it to lose some electrons. The drops then pass between parallel deflecting plates of length D0 = 2.05 cm, where there is a uniform vertical electric field with magnitude E= 8.05x104 N/C. (Figure 1)
Part A
If a drop is to be deflected a distance d = 0.310 mm by the time it reaches the end of the deflection plate, what magnitude of charge g must be given to the drop? Assume that the density of the ink drop is 1000 kg/m3, and ignore the effects of gravity.
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle.
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle. The pattern on the paper is controlled by an electrostatic valve that determines at each nozzle position whether ink is squirted onto the paper or not. The ink drops have a mass m = 1.00×10−11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 17.0 m/s . The...
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle. The pattern on the paper is controlled by an electrostatic valve that determines at each nozzle position whether ink is squirted onto the paper or not. The ink drops have a mass m = 1.00×10−11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 15.0 m/s . The...
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle. The pattern on the paper is controlled by an electrostatic valve that determines at each nozzle position whether ink is squirted onto the paper or not. The ink drops have a mass m = 1.00�10-11kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 25.0m/s . The drops pass...
In an inkjet printer, letters and images are created by squirting drops of ink horizontally at a sheet of paper from a rapidly moving nozzle. The pattern on the paper is controlled by an electrostatic valve that determines at each nozzle position whether ink is squirted onto the paper or not.The ink drops have a mass m = 1.00×10-11kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 18.0m/s . The drops pass through...
In an inkjet printer, letters and images are created by
squirting drops of ink horizontally at a sheet of paper from a
rapidly moving nozzle. The pattern on the paper is controlled by an
electrostatic valve that determines at each nozzle position whether
ink is squirted onto the paper or not.The ink drops have a mass m = 1.00×10−11 kg each and
leave the nozzle and travel horizontally toward the paper at
velocity v = 22.0 m/s . The drops...
Inkjet printers can be described as either continuous or drop-on-demand. In a continuous inkjet printer, letters are built up by squirting drops of ink at the paper from a rapidly moving nozzle You are part of an engineering group working on the design of such a printer. Each ink drop will have a mass of 1.6x10-8 g. The drops will leave the nozzle and travel toward the paper at 50 m/s, passing through a charging unit that gives each drop...
The ink drops have a mass m = 1.00×10−11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 20.0 m/s . The drops pass through a charging unit that gives each drop a positive charge q by causing it to lose some electrons. The drops then pass between parallel deflecting plates of length D0 = 1.90 cm , where there is a uniform vertical electric field with magnitude E = 7.65×104 N/C ....
The ink drops have a mass m = 1.00×10−11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 20.0 m/s . The drops pass through a charging unit that gives each drop a positive charge q by causing it to lose some electrons. The drops then pass between parallel deflecting plates of length D0 = 2.35 cm , where there is a uniform vertical electric field with magnitude E = 8.20×104 N/C ....
The ink drops have a mass m = 1.00×10−11 kg each and leave the nozzle and travel horizontally toward the paper at velocity v = 15.0 m/s . The drops pass through a charging unit that gives each drop a positive charge q by causing it to lose some electrons. The drops then pass between parallel deflecting plates of length D0 = 2.20 cm , where there is a uniform vertical electric field with magnitude E = 7.55×104 N/C If...