This problem is referred to as line balancing.
The minimum number of seismic stations needed to determine the location of an earthquake's epicenter is THREE.
The minimum number of seismic stations needed to determine the location of an earthquake's epicenter is THREE.
The minimum number of seismic stations needed to determine the location of an earthquake's epicenter is THREE.
The minimum number of seismic stations needed to determine the location of an earthquake's epicenter is THREE.
Three seismographs stations are needed to pinpoint the location of the epicentre of an earthquake.
The minimum number of seismographs needed to locate an epicenter of an earthquake is 3.
The number of MLAs needed for a majority in a legislative assembly depends on the total number of seats in the assembly. A majority is generally considered to be one more than half of the total number of seats. For example, if there are 100 seats, then 51 MLAs would be needed for a majority.
you need to have 3 seismic stations to triangulate the location of the earthquake and remember a earthquake can be from the inside of the earth but not necessarily at the epicenter because no epicenter is a straight line down.
Three seismograph stations are needed to locate the epicenter of an earthquake. By measuring the arrival times of seismic waves at three different stations, scientists can use triangulation to pinpoint the earthquake's epicenter.
3
2
A minimum of three seismograph stations are needed to triangulate and accurately locate the epicenter of an earthquake. By measuring the arrival times of seismic waves at the stations, the intersection of three circles of possible epicenter locations can pinpoint the exact location where the earthquake originated.