At the present time: zero, 0 0.0000000 or possibly so small that it cannot be measured yet.
Mars' gravitational pull is 3.7m/s^2(3.7 meters per second squared) as opposed to Earth's gravitational pull which is 9.81m/s^2(9.81 meters per second squared). The closest you can get to mars is in 2050 with 56 millon killometers
Gravity on Mars is about 38% that of Earth's gravity, so your weight would be significantly less on Mars. The 57 pounds weight on Mars is a result of the difference in gravitational pull between Mars and Earth.
The gravitational pull of Mars helps keep the Earth in it's orbit.
All celestial bodies exhibit some kind of gravitational pull on all other bodies. Hence, yes, it is very much possible to figure out the pull between the Earth and Mars. So yes, there can be, and is, gravity between our planets. Needless to say, the effect of Mars gravity on earth is overwhelmed by the effect of the suns gravity on earth. But it still exists.
Earth has the greater gravitational pull. Mars pulls with only about 38% of Earth's gravity.
Objects weigh less on Mars than on Earth because Mars has less mass than Earth, resulting in weaker gravitational pull on objects. This weaker gravitational pull means that objects weigh less on Mars compared to Earth.
Your weight on Mars would be about 38% of your weight on Earth. This is because Mars has a weaker gravitational pull than Earth.
The gravity on Mars is less than on Earth, so although the mass of the buggy is the same on Earth and Mars, its weight is different because weight is equal to mass multiplied by the gravitational force. The gravity of Mars is 38 percent less than that of the Earth's. So, something that weighs 100 pound on Earth will weigh 38 pounds on Mars.
Gravitational pull is less for Mercury, Venus, Mars and Uranus. And th eother planets have higher gravitational pull.
All bodies, from the largest object in the universe down to the smallest, exert gravitational pull on all other bodies. Gravity is not exclusive to Earth or Mars, it is a property of a body's mass.
Your weight on Mars would be about 38% of your weight on Earth because Mars has a weaker gravitational pull than Earth.
Essentially, mass = gravity Earth = 9.3 * mass of mars, standing at the same distance from both, earth would effect a force on you 9.3 times that of mars. Surface gravity comparison: weight of 100 kg on earth surface = 37.8 kg on mars surface