it would help if you had a slecer more flat surface apposed to a boxy type that would just have more air hitting the surface of the car and slow you down
To reduce drag, you can: Streamline the shape of the object to minimize resistance. Smoothen the surface to reduce friction. Eliminate unnecessary protrusions or features that contribute to drag.
It has it's shape to reduce drag and alow it to fly
to reduce drag you must make your shape more streamlined and more aerodynamic this meaning reducing drag so that there is less resistance therefore creating speed
Drag is useful in aeronautics and automotive design to reduce air resistance and improve fuel efficiency. In sports such as cycling and skiing, minimizing drag can increase speed and performance. Drag is also important in the design of structures to ensure stability and reduce wind loads.
To reduce drag, you can streamline the shape of the object, minimize surface roughness, and reduce the frontal area exposed to the flow of air or water. Additionally, reducing speed can also help decrease drag forces.
Change the shape / Reduce the size / smooth the surface texture.
aerodynamic.
To reduce drag and therefore improve performance and efficiency.
An object can be designed to reduce air friction or drag by improving its aerodynamics, such as streamlining its shape to minimize resistance. Additionally, adding smooth or flatter surfaces can help reduce turbulence and drag. Employing materials with low friction coefficients can also help reduce air resistance.
An object's shape can reduce drag by minimizing surface area exposed to the flow of air or water, which reduces friction and resistance. Streamlined shapes, such as teardrops or airfoil designs, can also redirect airflow more efficiently, reducing turbulence and drag. Additionally, shaping an object to create lift can help counteract drag forces, as seen in airplane wings.
Resistance can affect the shape of a rocket by increasing drag, which can slow down the rocket and reduce its efficiency in reaching its intended destination. To minimize resistance, rockets are typically streamlined with pointed fronts and smooth surfaces to reduce drag and improve aerodynamics.
To reduce turbulence drag, you can streamline the shape of the object to allow air to flow smoothly over it. Using aerodynamic designs such as airfoils and fairings can help minimize turbulence. Additionally, maintaining a smooth surface finish and reducing surface roughness can also help reduce turbulence drag.