force = mass x acceleration
acceleration = force/mass = 1000N/50kg = 20m/s2
The force required to lift an object is equal to the weight of the object, which is determined by its mass and the acceleration due to gravity. This force can be calculated using the formula: Force = mass x acceleration due to gravity.
A hot air balloon is balanced because the upward lift force from the hot air inside the balloon is equal and opposite to the downward force of gravity on the balloon and its contents. This balance allows the hot air balloon to float in the air.
what happens is when the hot airballonis unbalanced it stats moving around eventually going to fall when its balanced it stays perfect and doesn't wobble
Buoyancy lifts a balloon due to the difference in density between the air inside the balloon and the surrounding air. The balloon is filled with a gas that is less dense than the air, creating an upward force. This force, known as buoyant force, pushes the balloon upwards until it reaches a point where the forces are balanced and the balloon can float.
The forces acting on a hot air balloon are lift, weight, thrust (provided by wind), and drag. Lift is generated by the heated air inside the balloon being lighter than the surrounding air, causing the balloon to rise. Weight is the force of gravity pulling the balloon downward. Thrust is the horizontal force provided by wind to move the balloon in a certain direction, and drag is the resistance the balloon encounters as it moves through the air.
Measure how much it can lift.
The force required to lift an object is equal to the weight of the object, which is determined by its mass and the acceleration due to gravity. This force can be calculated using the formula: Force = mass x acceleration due to gravity.
A hot air balloon is balanced because the upward lift force from the hot air inside the balloon is equal and opposite to the downward force of gravity on the balloon and its contents. This balance allows the hot air balloon to float in the air.
The free lift of the Pilot Balloon is defined as the difference between the total lift and the weight of the balloon and its load. The free lift is really the net buoyancy of the balloon. Thus free lift is the force tending to drive the balloon (Hydrogen filled) upward, which depends upon the amount of hydrogen gas filled in it. If a hydrogen balloon is inflated until it floats with certain weight attached to it, than it indicates that the attached weight balances the upward force acting on it. This weight is called free lift of the balloon and if weight is removed, the balloon rises up (with fixed rate of ascent corresponding to weight attached while inflating).
what happens is when the hot airballonis unbalanced it stats moving around eventually going to fall when its balanced it stays perfect and doesn't wobble
Buoyancy lifts a balloon due to the difference in density between the air inside the balloon and the surrounding air. The balloon is filled with a gas that is less dense than the air, creating an upward force. This force, known as buoyant force, pushes the balloon upwards until it reaches a point where the forces are balanced and the balloon can float.
The forces acting on a hot air balloon are lift, weight, thrust (provided by wind), and drag. Lift is generated by the heated air inside the balloon being lighter than the surrounding air, causing the balloon to rise. Weight is the force of gravity pulling the balloon downward. Thrust is the horizontal force provided by wind to move the balloon in a certain direction, and drag is the resistance the balloon encounters as it moves through the air.
The force required to lift an object is equal to the weight of the object, which is the mass of the object multiplied by the acceleration due to gravity (F = m * g). The force must overcome the gravitational force acting on the object in order to lift it.
because helium has less density
To overcome gravity, an object must generate lift equal to or greater than its weight. This means that the lift force must be at least equal to the gravitational force acting on the object, which is calculated using the formula ( F = m \cdot g ), where ( F ) is the weight, ( m ) is the mass, and ( g ) is the acceleration due to gravity (approximately 9.81 m/s² on Earth). For example, if an object weighs 1000 N, it would need at least 1000 N of lift to ascend.
The amount of force needed to lift an object depends on its weight and the acceleration due to gravity. This force can be calculated using the formula F = m * g, where F is the force, m is the mass of the object, and g is the acceleration due to gravity (approximately 9.81 m/s^2 on Earth).
An airplane experiences lift due to the difference in air pressure above and below its wings, not buoyant force like a balloon or boat in water. The lift force is greatest when the aircraft is at the optimal angle of attack which allows for maximum lift to overcome weight.