An earthquake occurs 7,375 km from a seismograph. The P-waves arrive 12.2 minutes later. How fast is the P-wave traveling (in km/s)? If the lag time between P- and S-waves is 10.6 minutes, how fast are the S-waves traveling (in km/s)? Using the shadow of S-waves you determine that the radius of the core is 55% of the Earth's 6,378-km radius. How many kilometers from the surface is this (in km)? art 1 of 3 To calculate how fast the P-waves are traveling, we need to divide the distance the waves travel by the time. d. Vp = Make sure you are dividing by the time in seconds. s Vp = Make sure you are dividing by the time in seconds. km/s

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Chapter11: Earth: The Active Planet
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An earthquake occurs 7,375 km from a seismograph.
The P-waves arrive 12.2 minutes later. How fast is the
P-wave traveling (in km/s)?
If the lag time between P- and S-waves is 10.6 minutes,
how fast are the S-waves traveling (in km/s)?
Using the shadow of S-waves you determine that the
radius of the core is 55% of the Earth's 6,378-km radius.
How many kilometers from the surface is this (in km)?
Part 1 of 3
To calculate how fast the P-waves are traveling, we
need to divide the distance the waves travel by the
time.
d
Vp =
Make sure you are dividing by the time in seconds. s
Vp =
Make sure you are dividing by the time in seconds. km/s
Transcribed Image Text:Tutorial An earthquake occurs 7,375 km from a seismograph. The P-waves arrive 12.2 minutes later. How fast is the P-wave traveling (in km/s)? If the lag time between P- and S-waves is 10.6 minutes, how fast are the S-waves traveling (in km/s)? Using the shadow of S-waves you determine that the radius of the core is 55% of the Earth's 6,378-km radius. How many kilometers from the surface is this (in km)? Part 1 of 3 To calculate how fast the P-waves are traveling, we need to divide the distance the waves travel by the time. d Vp = Make sure you are dividing by the time in seconds. s Vp = Make sure you are dividing by the time in seconds. km/s
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