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Ничто не возникает из ничего и ничто не пропадает бесследно.
Если где-то чего-то убудет, то в другом месте добавится.
(Закон сохранения).
An electron with a speed of 100 m/s enters a capacitor through a hole in the negative plate.
The electric field strength in the capacitor = 3.8*10^(-6) N/C
The distance between the plates is 1 mm
The electron has a mass of approximately 9*10^(-31) kg and a charge of 1.6*10^(-19) C.
How deep into the capacitor can the electron fly?
The electron will experience a force equal to the electric field strength multiplied by its charge. This force will slow it down. To find the deceleration, this force must be divided by its mass. Furthermore, the distance it travels before stopping will be equal to the square of its initial velocity divided by twice the deceleration. However, it certainly cannot travel further than the distance between the plates. I will now calculate the values and try to create a diagram.
Added 2 minutes ago
The field strength is directed from the negative plate to the positive plate, and since the electron's charge is negative, the field will slow it down.
Added 25 minutes ago
The force that will slow down the electron: F = 3.8*10-6*1.6*10-19 = 6.08*10-25 N
The deceleration will be: a = F/m = 6.08*10-25/9*10-31 = (6.08/9)*106 m/s2
And the distance will be: s = v2/(2a) = 1002/(2*(6.08/9)*106) = 104/(106*2*6.08/9) = 9/(100*2*6.08) = 9/1216 = 0.0074013157895 m. In short, it will reach the opposite plate :)
It will get stuck in the dielectric between the plates.
Can an electron fly in?
Unfortunately, there is still no answer to the question.
Added 2 minutes later
Well, 1 millimeter is the answer.
It seems like it won't even enter the capacitor...
No, it will fly through it from one plate to the other, and it doesn't matter which plate it enters through. Even if it entered with such speed through the positive plate, it would still reach the negative plate.
Added after 42 seconds
Well, half a millimeter, if it goes deep, if it goes to the very center of the capacitor.
Well, half a millimeter, if going deeper, and if the deepest point is the middle of the capacitor.
A more obvious riddle: "How deep into the forest can a deer run?"
Hermit, please, ask the next riddle.
The force that will slow down the electron: F = 3.8 * 10-6 * 1.6 * 10-19 = 6.08 * 10-25 N
The deceleration will be: a = F/m = 6.08 * 10-25 / 9 * 10-31 = (6.08/9) * 106 m/s2
And then we'll calculate the distance: s = v2 / (2a) = 1002 / (2 * (6.08/9) * 106) = 104 / (106 * 2 * 6.08/9) = 9 / (100 * 2 * 6.08) = 9 / 1216 = 0.0074013157895 m
Due to the abnormally high temperatures expected in the city within 24 hours, 240 tanks of kvass were brought in. Five criminals poisoned one of the kvass tanks; they were all caught and sentenced to death... They don't remember which tank they poisoned... Is it possible, by experimenting on the convicted, to identify the poisoned kvass tank, if it is known that even a negligible dose of poison is fatal, and the poison begins to take effect within 12 hours of entering the body?
The answer must be justified. An answer without justification will not be accepted.
Amendment: the poison will definitely kill the convicted person within 12 hours, but it may start to take effect at different times.
Update: So, we divide 240 by 5 and by 12. This means they need to be watered every 4 minutes, marking the tank.