Accelerometer
Definition
A sensor that measures acceleration of ground motion, critical for earthquake engineering. Modern strong-motion accelerometers can record the intense shaking close to large earthquakes.
Example
Modern smartphones contain accelerometers that can detect nearby earthquakes.
Related Terms
Related Guides
Can We Predict Earthquakes with Apps?
No app can predict earthquakes. Learn the difference between prediction and early warning, and which apps actually provide useful alerts.
How Seismographs Work: From Analog to Digital
Seismographs detect ground motion as small as a nanometer. Learn the mechanics from Milne's pendulum to modern broadband sensors.
MyShake App: Your Phone as a Seismometer
MyShake turns your smartphone into a seismometer and earthquake early warning receiver. Learn how this crowdsourced network detects earthquakes.
Smart Building Technology for Earthquake Resistance
Smart buildings use sensors and active systems to resist earthquakes. Learn about base isolation, active damping, and structural health monitoring.
How to Set Up Earthquake Alerts on Your Phone
Set up earthquake alerts on your phone using ShakeAlert, wireless emergency alerts, and apps. A step-by-step guide for Android and iOS.
Frequently Asked Questions
The epicenter is the point on the Earth's surface directly above the hypocenter (focus) where the earthquake rupture begins. It is typically reported as latitude and longitude coordinates. The strongest shaking usually occurs near the epicenter, though local soil conditions and fault geometry can shift the zone of maximum damage.
A seismograph (or seismometer) is an instrument that detects and records ground motion caused by seismic waves. Modern broadband seismometers can detect movements smaller than the width of an atom. Networks of seismographs around the world enable scientists to locate earthquakes and determine their magnitude within minutes.
P-waves (primary waves) are compressional waves that travel fastest through rock, arriving first at seismic stations. S-waves (secondary waves) are shear waves that arrive later but cause more ground shaking. P-waves travel through solids, liquids, and gases; S-waves only travel through solids. The time difference between them helps determine earthquake distance.
The hypocenter (or focus) is the point within the Earth where an earthquake rupture initiates. It is described by latitude, longitude, and depth. The vertical distance between the hypocenter and the surface directly above is the earthquake's depth, which strongly influences how the earthquake is felt at the surface.
Seismology is the scientific study of earthquakes and the propagation of seismic waves through the Earth. It encompasses earthquake detection, location, and characterization; Earth's internal structure; seismic hazard assessment; and earthquake engineering. Seismologists use data from global seismograph networks to study these phenomena.