In a model of the hydrogen atom, the electron travels in circular orbits around the proton. What is the electric potential, in volts, due to the proton on an electron in an orbit with radius 3.82 x 10-10 m? V=

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In a model of the hydrogen atom, the electron travels in circular orbits around the proton.
What is the electric potential, in volts, due to the proton on an electron in an orbit with radius 3.82 x 10-10 m?
V=
sin()
cos()
colan()
asin()
atan() acotan()
cosh()
tan() 11 (
E
acos
sinh()
tinh( coanh()
Degrees O Radians
Submit
sin()
cotan
atan
cosh())
Hint
cos()
asin()
acotan
Lanh
Degrees O Radians
Sunnose the electric field between two conducting plates has a strength of 45 x 10³ V/m.
+
VO
& How far apart, in meters, are the two conducting plates if their potential difference is 0.14 kV?
da
tan() T(
acos() E
sinh)
cotanh).
7 8 9
4 5 6
123
0
VO
I give up!
7 8 9
456
123
0
FACE
AXE
Transcribed Image Text:In a model of the hydrogen atom, the electron travels in circular orbits around the proton. What is the electric potential, in volts, due to the proton on an electron in an orbit with radius 3.82 x 10-10 m? V= sin() cos() colan() asin() atan() acotan() cosh() tan() 11 ( E acos sinh() tinh( coanh() Degrees O Radians Submit sin() cotan atan cosh()) Hint cos() asin() acotan Lanh Degrees O Radians Sunnose the electric field between two conducting plates has a strength of 45 x 10³ V/m. + VO & How far apart, in meters, are the two conducting plates if their potential difference is 0.14 kV? da tan() T( acos() E sinh) cotanh). 7 8 9 4 5 6 123 0 VO I give up! 7 8 9 456 123 0 FACE AXE
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