1. Which of the followings can be considered as the electric flux of a non-uniform electric field passing through an open surface? DĒ. AÃ Ulimy-+ D, E,. AA i=1 Sur face Sur face 2. Given that the net enclosed charge by the Gaussian surface is zero. Select all correct options. More than one answer can be true Electric field may or may not be zero. Electric field is always zero. Electrif flux is always zero. OSince oE = S Saur face È · dÁ = 0, flux and field both will be zero
1. Which of the followings can be considered as the electric flux of a non-uniform electric field passing through an open surface? DĒ. AÃ Ulimy-+ D, E,. AA i=1 Sur face Sur face 2. Given that the net enclosed charge by the Gaussian surface is zero. Select all correct options. More than one answer can be true Electric field may or may not be zero. Electric field is always zero. Electrif flux is always zero. OSince oE = S Saur face È · dÁ = 0, flux and field both will be zero
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![1. Which of the followings can be
considered as the electric flux of a
non-uniform electric field passing
through an open surface?
DË. AÃ
wi=1
| JJ Surface
Ē. dÃ
OSsur face Ë. îdA
2. Given that the net enclosed charge
by the Gaussian surface is zero.
Select all correct options.
More than one answer can be true
Electric field may or may not be zero.
Electric field is always zero.
Electrif flux is always zero.
Since oE = J Jsur face
= 0, flux
and field both will be zero](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F31c1e17c-1f45-4807-97e0-197cb494848e%2F28ae41ad-cb30-4add-84b8-2ba1473e867e%2Fq64hd9n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. Which of the followings can be
considered as the electric flux of a
non-uniform electric field passing
through an open surface?
DË. AÃ
wi=1
| JJ Surface
Ē. dÃ
OSsur face Ë. îdA
2. Given that the net enclosed charge
by the Gaussian surface is zero.
Select all correct options.
More than one answer can be true
Electric field may or may not be zero.
Electric field is always zero.
Electrif flux is always zero.
Since oE = J Jsur face
= 0, flux
and field both will be zero
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