I think it’s A but I’m really sorry if I’m wrong :/
The outcomes would remain unchanged, with the majority of particles passing through the foil undisturbed and only a small number being deflected at broad angles.
<h3>Deflected angles? What do you mean by that? </h3>
A deflection angle is the angle created by the forward extension of the previous leg and the line ahead. From the tangent at the PC or PT to any other desired point on the curve, the deflection angle is calculated. When determining the refractive index of the prism, the angle of deflection () between the incident and emerging rays is crucial. In gunnery, the deflection angle is crucial. In this context, it alludes to the angle formed by the lines of sight to the aiming point and a moving target. The charge to mass ratio of a particle determines the angle of deflection it experiences in an electric field. Greater deflection results from a stronger attraction between the particle and electric field at higher charges.
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I don’t see the picture to answer