a) Answer all statement as shown in Table Q1(a) Table Q1(a) No Statement True or False i. Electricity can be defined as the movement of electrons through a material while current can be defined as the rate of flow of electrons through a conductor. ii. Kirchhoff’s current law (KCL) stated that the algebraic sum of current around a circuit is equal zero. iii. The motion of an electric current creates electric charges iv. In an ideal parallel circuit, the circuit elements will have the same voltage across them. v. Two resistors a and b of the same value are connected in parallel; the equivalent resistance of the resistors is a/2.
a) Answer all statement as shown in Table Q1(a) Table Q1(a) No Statement True or False i. Electricity can be defined as the movement of electrons through a material while current can be defined as the rate of flow of electrons through a conductor. ii. Kirchhoff’s current law (KCL) stated that the algebraic sum of current around a circuit is equal zero. iii. The motion of an electric current creates electric charges iv. In an ideal parallel circuit, the circuit elements will have the same voltage across them. v. Two resistors a and b of the same value are connected in parallel; the equivalent resistance of the resistors is a/2.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter30: Magnetic Fields And Forces
Section30.3: Ørsted’s Discovery
Problem 30.2CE
Related questions
Question
(a) Answer all statement as shown in Table Q1(a)
Table Q1(a)
No Statement True or
False
i. Electricity can be defined as the movement of electrons through a material while current can be defined as the rate of flow of electrons
through a conductor.
ii. Kirchhoff’s current law (KCL) stated that the algebraic sum of
current around a circuit is equal zero.
iii. The motion of an electric current creates electric charges
iv. In an ideal parallel circuit, the circuit elements will have the same
voltage across them.
v. Two resistors a and b of the same value are connected in parallel;
the equivalent resistance of the resistors is a/2.
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