The car industry used a wind tunnel to find out how to make cars more wind resistant. Things like gaps in the doors and wing panels can even cause drag on a vehicle. Rubber on a car can cause drag. the smoother the surface the less the drag will be, even the wrong polish on a car can cause drag.
By giving it a streamlined shape.
A streamlined shape, such as a teardrop or an airfoil, is designed to reduce air resistance by minimizing drag. This shape allows air to flow smoothly around the object, reducing turbulence and friction with the air.
You can reduce air resistance on a moving object by streamlining its shape to reduce turbulence, minimizing surface area exposed to the air, and using smooth, aerodynamic materials. Additionally, increasing the object's speed can help decrease the impact of air resistance.
Reducing the frontal area of an object, smoothing its surface to minimize roughness, and streamlining its shape can all help reduce air resistance. Additionally, decreasing the speed at which the object is moving through the air can also lower air resistance.
inclined
You can reduce air resistance by changing the shape of the object to be more streamlined, decreasing the surface area exposed to the air, and using smooth surfaces to minimize turbulence. Additionally, reducing the speed at which the object moves through the air can also help decrease air resistance.
To decrease air resistance, you can streamline the shape of the object moving through the air, reduce its surface area exposed to the air, and minimize any protruding or irregular features that would create drag. Additionally, you can increase the object's speed to help reduce the impact of air resistance.
By moving in a vacuum. Other than that, basically you can't. You can reduce air resistance, by building vehicles so they have an aerodynamic shape - but you can't eliminate air resistance entirely, for any moving object.
To reduce air resistance, you can streamline the shape of an object to minimize surface area, use aerodynamic materials to reduce friction, and orient the object in the direction of airflow. Additionally, adjusting the speed and angle of the object can also help minimize the effects of air resistance.
To reduce air resistance and make things go faster, you can streamline the shape of the object to minimize drag, such as making it more aerodynamic. You can also decrease the surface area exposed to the air by making the object smaller or smoother. Additionally, reducing the object's speed can help reduce air resistance.
The shape of a parachute can affect the drop time by influencing air resistance. A larger surface area or a more streamlined shape can increase air resistance, slowing down the descent. Conversely, a smaller surface area or more irregular shape can reduce air resistance, leading to a quicker descent.
Terminal velocity is determined by several factors including an object's shape, size, and weight, as well as external forces like air resistance. Terminal velocity can be altered by changing these factors, such as by increasing or decreasing an object's weight or by adjusting its shape to reduce air resistance.