An electromagnetic wave from a wire antenna travels (from the reader) toward the plane of the paper. At time t = 0.0 s i
Posted: Mon May 16, 2022 7:52 pm
An electromagnetic wave from a wire antenna travels (from the
reader) toward the plane of the paper. At time t = 0.0 s it strikes
the paper at normal incidence. At point O and t = 0.0 s, the
magnetic field vector has its maximum value,
4.00×10-8 T, pointing in the negative y-direction.
The frequency of this wave is 2.57×106 Hz.
What is the x-component of the associated electric
field E at time t = 0.0 s? (Use the
right-hand rule to determine the direction
of E, and hence the sign of the
x-component.)
1.20×101 V/m
What is the magnitude of the Poynting vector of the wave at time
t = 0.0 s?
What is the y component of the magnetic field at point O at time
1.95×10-7 s?
4.00×10-8 T
I need the process of each question and also the response for
the second one!
An electromagnetic wave from a wire antenna travels (from the reader) toward the plane of the paper. At time t = 0.0 s it strikes the paper at normal incidence. At point o and t = 0.0 s, the magnetic field vector has its maximum value, 4.00x10-8 T, pointing in the negative y-direction. The frequency of this wave is 2.57x106 Hz. O B (t=0) х What is the x-component of the associated electric field E at time t = 0.0 s? (Use the right-hand rule to determine the direction of E, and hence the sign of the x-component.) 1.20x101 v/m You are correct. Previous Tries Your receipt no. is What is the magnitude of the Poynting vector of the wave at time t = 0.0 s? The intensity S can be calculated from either the E-field or the B-field. Submit Answer Incorrect. Tries 1/12 Previous Tries What is the y component of the magnetic field at point o at time 1.95x10-7 s? 4.00x10-81 You are correct. Your receipt no. is Previous Tries ©
reader) toward the plane of the paper. At time t = 0.0 s it strikes
the paper at normal incidence. At point O and t = 0.0 s, the
magnetic field vector has its maximum value,
4.00×10-8 T, pointing in the negative y-direction.
The frequency of this wave is 2.57×106 Hz.
What is the x-component of the associated electric
field E at time t = 0.0 s? (Use the
right-hand rule to determine the direction
of E, and hence the sign of the
x-component.)
1.20×101 V/m
What is the magnitude of the Poynting vector of the wave at time
t = 0.0 s?
What is the y component of the magnetic field at point O at time
1.95×10-7 s?
4.00×10-8 T
I need the process of each question and also the response for
the second one!
An electromagnetic wave from a wire antenna travels (from the reader) toward the plane of the paper. At time t = 0.0 s it strikes the paper at normal incidence. At point o and t = 0.0 s, the magnetic field vector has its maximum value, 4.00x10-8 T, pointing in the negative y-direction. The frequency of this wave is 2.57x106 Hz. O B (t=0) х What is the x-component of the associated electric field E at time t = 0.0 s? (Use the right-hand rule to determine the direction of E, and hence the sign of the x-component.) 1.20x101 v/m You are correct. Previous Tries Your receipt no. is What is the magnitude of the Poynting vector of the wave at time t = 0.0 s? The intensity S can be calculated from either the E-field or the B-field. Submit Answer Incorrect. Tries 1/12 Previous Tries What is the y component of the magnetic field at point o at time 1.95x10-7 s? 4.00x10-81 You are correct. Your receipt no. is Previous Tries ©