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  2. A tidal force is the effect of an object’s gravitational force on another, nearby object, such as a planet or satellite. This force can influence the object’s shape, orbit, and other characteristics.
    www.allthescience.org/what-is-a-tidal-force.htm
    The tidal force is a gravitational effect that stretches a body along the line towards the center of mass of another body due to a gradient (difference in strength) in gravitational field from the other body; it is responsible for diverse phenomena, including tides, tidal locking, breaking apart of celestial bodies and formation of ring systems within the Roche limit, and in extreme cases, spaghettification of objects.
    en.wikipedia.org/wiki/Tidal_force
    Tidal forces are changes in the gravitational potential energy of the Sun, Moon and Earth. These forces cause the periodic motion of the seas which create a temporary change in water levels that vary depending on location.
    energyeducation.ca/encyclopedia/Tidal_force
     
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    What is the difference between tidal force and gravitational force?Figure 13.23 The tidal force is the difference between the gravitational force at the center and that elsewhere. In this figure, the tidal forces are shown at the ocean surface. These forces would diminish to zero as you approach Earth’s center. Why does the rise and fall of the tides occur twice per day? Look again at Figure 13.22.
    What is the tidal force?Figure 13.22 The tidal force stretches Earth along the line between Earth and the Moon. It is the difference between the gravitational force from the far side to the near side that creates the tidal bulge on both sides of the planet. Tidal variations of the oceans are on the order of few meters; hence, this diagram is greatly exaggerated.
    How do tidal forces affect Earth?Tidal forces create the oceanic tide of Earth 's oceans, where the attracting bodies are the Moon and, to a lesser extent, the Sun. Tidal forces are also responsible for tidal locking, tidal acceleration, and tidal heating. Tides may also induce seismicity .
    en.wikipedia.org
    Why is tidal force a differential force?It's all because the tidal force is a differential force—meaning that it comes from differences in gravity over Earth's surface. Here's how it works: On the side of Earth that is directly facing the moon, the moon's gravitational pull is the strongest. The water on that side is pulled strongly in the direction of the moon.
     
  4. 13.7: Tidal Forces - Physics LibreTexts

  5. 13.6 Tidal Forces - University Physics Volume 1 | OpenStax

  6. 11.1 Tidal Forces – Introduction to Oceanography

  7. 11.1: Tidal Forces - Geosciences LibreTexts

  8. 13.6 Tidal Forces | University Physics Volume 1

    WEBThe tidal force can be viewed as the difference between the force at the center of Earth and that at any other location. In (Figure), this difference is shown at sea level, where we observe the ocean tides. (Note that the …

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  9. Teach Astronomy - Tidal Forces

    WEBThe tidal force is a universal consequence of gravity. The force that causes our oceans to move operates elsewhere in the Solar System, and beyond. Even when there is no water to respond to the force, the solid …

  10. TIDAL FORCE Definition & Meaning | Dictionary.com

  11. Tides and Water Levels - NOAA's National Ocean Service

  12. 8.3: Tides and Tidal Currents - Geosciences LibreTexts

  13. What Causes Tides? | NOAA SciJinks – All About Weather

  14. Tidal Forces – University Physics Volume 1 - British …

  15. Tidal Forces - Concept | Physics | JoVe

  16. Cause and Effect: Tides - National Geographic Society

  17. What is Tidal Force - Force of Gravity One Celestial Body to Another

  18. 13.6 Tidal Forces – University Physics Volume 1

  19. Formulas - Tidal Forces - Astronomy Online

  20. 11.1: Tidal Forces - Geosciences LibreTexts

  21. 13.1.1: Tidal Forces - Geosciences LibreTexts