1. An electric field of magnitude 2000 v/m can be produced by applying a potential difference of 10 V to a pair of parallel metal plates separated by a. 200 mm b. 50 mm c. 2.0 mm d. 5.0 mm 2. A charge of 1 x 10^-10 C placed between two plates 1.0 cm apart experiences a force of 1 x 10-5 N. The potential difference between the plates is а. 1X 10^3V b. 1x 10^-5 V с. 10 V d. 1X 10^5 V
1. An electric field of magnitude 2000 v/m can be produced by applying a potential difference of 10 V to a pair of parallel metal plates separated by a. 200 mm b. 50 mm c. 2.0 mm d. 5.0 mm 2. A charge of 1 x 10^-10 C placed between two plates 1.0 cm apart experiences a force of 1 x 10-5 N. The potential difference between the plates is а. 1X 10^3V b. 1x 10^-5 V с. 10 V d. 1X 10^5 V
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1. An electric field of magnitude 2000 V/m can be produced by applying a potential difference of 10 V to a pair of
parallel metal plates separated by
a. 200 mm
b. 50 mm
c. 2.0 mm
d. 5.0 mm
2.
A charge of 1 x 10^-10 C placed between two plates 1.0 cm apart experiences a force of 1 x 10-5 N. The
potential difference between the plates is
а. 1X 10^3 V
b. 1x 10^-5 V
с. 10 V
d. 1X 10^5 V
3. After charging a capacitor from a 100-V source, an insulating material with a dielectric constant of 2 is inserted
between its plates. If the source is removed, the potential difference across the capacitor
a. remains 100 V
b. drops to zero
c. decreases to 50 V
d. increases to 200 V"
Transcribed Image Text:Choose the correct letter
1. An electric field of magnitude 2000 V/m can be produced by applying a potential difference of 10 V to a pair of
parallel metal plates separated by
a. 200 mm
b. 50 mm
c. 2.0 mm
d. 5.0 mm
2.
A charge of 1 x 10^-10 C placed between two plates 1.0 cm apart experiences a force of 1 x 10-5 N. The
potential difference between the plates is
а. 1X 10^3 V
b. 1x 10^-5 V
с. 10 V
d. 1X 10^5 V
3. After charging a capacitor from a 100-V source, an insulating material with a dielectric constant of 2 is inserted
between its plates. If the source is removed, the potential difference across the capacitor
a. remains 100 V
b. drops to zero
c. decreases to 50 V
d. increases to 200 V
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