The balance of forces that keep a star from collapsing is called hydrostatic equilibrium. This equilibrium is maintained between the inward force of gravity and the outward force generated by gas pressure within the star.
Balance forces are important in everyday life to keep objects at rest or in motion moving smoothly without acceleration or deceleration. Unbalanced forces are crucial for creating changes in motion, such as starting, stopping, or changing the direction of an object. Both types of forces work together to maintain equilibrium and drive the motion of objects around us.
Inertia
Planes stay in the air and keep flying due to a balance of forces. The lift force generated by the wings counteracts the weight of the plane, keeping it in the air. Thrust from the engines propels the plane forward, while drag slows it down. By adjusting the balance of these forces, pilots can control the plane's speed and altitude.
The cyclist must keep pedaling to maintain their constant velocity because they are overcoming forces like air resistance and friction. These forces act in the opposite direction of motion, so the cyclist needs to continuously apply force through pedaling to balance them out and keep moving at a steady pace. If they stop pedaling, these forces will eventually slow them down.
The Balanced Rock in Idaho is believed to be kept in balance by a combination of gravity, friction, and the rock's shape. Its narrow connection to the base provides stability and prevents it from toppling over. Additionally, the rock's center of mass is situated low, further aiding in its balance.
Like a camera has a case, the eye is surrounded by tissues and are filled with fluid called "humours" to keep it from collapsing.
don't know by keeping the structure good collapsing
Gravity pulls the particles in a nebula towards the center, trying to collapse it. However, pressure from gas and radiation within the nebula counteracts gravity, creating a balance that prevents collapse. This balance is crucial for the formation of stars from a nebula.
safety because the team collapsing the scrum has lost the ball
Gravitational force pulls the dust and gas inward, trying to collapse the nebula, while outward gas pressure from nuclear fusion reactions occurring in the core of the nebula pushes back, preventing the collapse. These two forces are in equilibrium, keeping the nebula stable.
Gravity
They keep the tree from falling or collapsing.
True
To keep them from collapsing due to negative pressure on an exhale.
The function of residual volume is to keep enough pressure in the lungs to keep them from collapsing.
biodiversity?
The pressure caused by the thermal energy of the gas within the nebula pushes outward in all directions, preventing the nebula from collapsing under its own gravity. This pressure acts to counterbalance the force of gravity, maintaining the nebula's size and structure.