The gravity of the orbiting object raises tidal bulges in the primary, and since below the synchronous orbit the orbiting object is moving faster than the body's surface the bulges lag a short angle behind it.
12.
That centrifugal force throws the water on the side OPPOSITE to the moon outwards-hence there are TWO tidal bulges-one that is strongest when the moon is overhead-and the other that's strongest when the moon is directly below your feet.
13.
If the friction and heat dissipation were not present, the Moon's gravitational force on the tidal bulge would rapidly ( within two days ) bring the tide back into synchronization with the Moon, and the Moon would no longer recede.
14.
Moulton and Chamberlin suggested that a star had passed close to the Sun early in its life to cause tidal bulges and that this, along with the internal process that leads to solar prominences, resulted in the ejection of filaments of matter from both stars.
15.
:: : : : Since both the Earth and Moon have a tidal bulge, meaning more gravitational attraction is experienced towards the bulge, any attempt by either body to rotate, even slightly, from the position where the two bulges point towards each other should be resisted.
16.
:: " Tidal friction, caused by the movement of the tidal bulge around the Earth, takes energy out of the Earth and puts it into the Moon's orbit, making the Moon's orbit bigger ( but, a bit pardoxically, the Moon actually moves slower ! ) ."
17.
Given that the Med is regarded ( more or less ) as a tideless sea and that this is largely due to the influence of the Straits of Gibraltar which constrict the tidal bulge caused by the gravitational pull of the sun and / or the moon.
18.
Alternatively, if the accumulation of ice in a single cap ( without an impact ) created a positive gravity anomaly that reoriented Pluto prior to formation of a basin, the tidal bulge raised by Charon would tend to maintain Pluto's orientation even if the positive anomaly later disappeared.
19.
The theory was based on the idea that a star passed close enough to the sun early in its life to cause tidal bulges to form on its surface, which along with the internal process that leads to solar prominences, caused material to be ejected repeatedly from the sun.
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