Positively charged ions enter perpendicularly crossed fields at an electric field strength of E₁ = 250 V/m and a magnetic flux density of B₁ = 10-3 T at the position Po. One part of the ions straightly traverses the setup and passes an aperture P₁ into a magnetic field at a flux density B₂ = 1 T. The ions are deflected there and impinge on a screen at P₂ (P₁P₂ = 10 cm). 3 a) Calculate the velocity of the ions, which straightly traverse the crossed fields and exit at P₁. b) Calculate the specific charge q/m of the ions, which impinge on the screen at P₂. P X EX X P₁ X X HIH XB₁ X X B₂ XX X X X a X X X

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Positively charged ions enter perpendicularly crossed fields at an electric field strength of E₁ =
250 V/m and a magnetic flux density of B₁ = 10-³ T at the position Po. One part of the ions
straightly traverses the setup and passes an aperture P₁ into a magnetic field at a flux density
B₂ = 1 T. The ions are deflected there and impinge on a screen at P₂ (P₁ P₂ = 10 cm).
3
a) Calculate the velocity of the ions, which straightly
traverse the crossed fields and exit at P₁.
b) Calculate the specific charge q/m of the ions, which
impinge on the screen at P2.
Pl
P
X
E₁ X
||₁
X
X
X B₁
XX
X X
|||
X
B₂
X
X
X X
XX
Transcribed Image Text:Positively charged ions enter perpendicularly crossed fields at an electric field strength of E₁ = 250 V/m and a magnetic flux density of B₁ = 10-³ T at the position Po. One part of the ions straightly traverses the setup and passes an aperture P₁ into a magnetic field at a flux density B₂ = 1 T. The ions are deflected there and impinge on a screen at P₂ (P₁ P₂ = 10 cm). 3 a) Calculate the velocity of the ions, which straightly traverse the crossed fields and exit at P₁. b) Calculate the specific charge q/m of the ions, which impinge on the screen at P2. Pl P X E₁ X ||₁ X X X B₁ XX X X ||| X B₂ X X X X XX
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