GO The following two waves are sent in opposite directions on a horizontal string so as to creating a standing wave in a vertical plane: y 1 ( x , t ) = (6.00 mm) sin(4.00 πx − 400 πt ) y 2 ( x , t ) = (6.00 mm) sin(4.00 πx + 400 πt ), with x in meters and t in seconds. An antinode is located at point A. In the time interval that point takes to move from maximum upward displacement to minimum downward displacement, how far does each wave move along the siring?
GO The following two waves are sent in opposite directions on a horizontal string so as to creating a standing wave in a vertical plane: y 1 ( x , t ) = (6.00 mm) sin(4.00 πx − 400 πt ) y 2 ( x , t ) = (6.00 mm) sin(4.00 πx + 400 πt ), with x in meters and t in seconds. An antinode is located at point A. In the time interval that point takes to move from maximum upward displacement to minimum downward displacement, how far does each wave move along the siring?
GO The following two waves are sent in opposite directions on a horizontal string so as to creating a standing wave in a vertical plane:
y1(x, t) = (6.00 mm) sin(4.00πx − 400πt)
y2(x, t) = (6.00 mm) sin(4.00πx + 400πt),
with x in meters and t in seconds. An antinode is located at point A. In the time interval that point takes to move from maximum upward displacement to minimum downward displacement, how far does each wave move along the siring?
The cylindrical beam of a 12.7-mW laser is 0.920 cm in diameter. What is the rms value of the electric field?
V/m
Consider a rubber rod that has been rubbed with fur to give the rod a net negative charge, and a glass rod that has been rubbed with silk to give it a net positive charge. After being charged by contact by the fur and silk...?
a. Both rods have less mass
b. the rubber rod has more mass and the glass rod has less mass
c. both rods have more mass
d. the masses of both rods are unchanged
e. the rubber rod has less mass and the glass rod has mroe mass
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