Examples of using Interplanetary space in English and their translations into Italian
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So LOFAR is an ideal instrument for studies of the launch of CMEs heading towards interplanetary space.
experiments to determine the nature and properties of low-energy particles within the Earth's magnetosphere and interplanetary space.
In interplanetary space at the orbit of Earth,
Insight separated from the launch vehicle that took it from Earth into interplanetary space, leaving two micro-satellites in orbit to facilitate communications with the base and braved a dangerous descent through the atmosphere of Mars.
There has never been any evidence represents any interplanetary space vehicle of any kind.
The escape velocity required to pull free of Earth's gravitational field altogether and move into interplanetary space is about 11,200 m/s 40,300 km/h; 25,100 mph.
Represents any interplanetary space vehicle of any kind. or discovered by the United States Air Force,
a provocative vision that imagines real ecosystems- able to travel thanks to an interplanetary space station. These ecosystem ara able to provide environmental
discovered by the United States Air Force, represents any interplanetary space vehicle of any kind.
Since no interplanetary space probes had been launched at the time,
I was being thrown into interplanetary space in the form of eruptive rock.
When a fast coronal mass ejection travels through interplanetary space(ICME), driving a shock wave in front of it,
Interplanetary space is defined by the solar wind,
The corona is visible to the naked eye only during an eclipse. Image courtesy of NSO/ AURA/ NSF The simulated solar wind travels from the Sun(figure 7A) through interplanetary space to Earth(B).
which can flood interplanetary space for some hours, even at the Earth's orbit and beyond it.
ejected at high energies into interplanetary space, they must travel along the interplanetary magnetic field.
Seeds on Mars is the“New Shanghai” that could be born thanks to the rooting on Mars's surface of real“eco-systemic seeds”(which would travel through an interplanetary space station) within which to create an atmosphere
A“New Shanghai” that could be born thanks to the rooting on Mars's surface of real“eco-systemic seeds”(which would travel through an interplanetary space station) within which to create an atmosphere
LWS is composed of three major components: scientific investigations on spaceflight platforms study different regions of the Sun, interplanetary space, and geospace; an applied science Space Environment Testbeds program where protocols
traveling across interplanetary space for seven years,