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1. From the Blank section (below), copy the template tags and parameters to your article. 2. In the template tags, set the Debug parameter to Yes.This will setup the template to display the correct player positions that are needed depending on the Offensive and Defensive schemes that are chosen (OScheme and DScheme parameters) below:
If the template has a separate documentation page (usually called "Template:template name/doc"), add [[Category:Open-wheel and formula racing templates]] to the <includeonly> section at the bottom of that page. Otherwise, add <noinclude>[[Category:Open-wheel and formula racing templates]]</noinclude>
If the tire is not checked, it has the potential to cause vibration in the suspension of the vehicle on which it is mounted. In tire retail shops, tire/wheel assemblies are checked on a spin-balancer, which determines the amount and angle of unbalance. Balance weights are then fitted to the outer and inner flanges of the wheel. [2]
The detailed data provided by 3D systems allows for more intricate adjustments and a more thorough understanding of the vehicle's alignment geometry, particularly suited to 4 wheel drive cars or those needed 4 wheel alignment. Drive-over, Drive-on or Drive Through Wheel Alignment Systems: Next Generation Alignment
Caster displacement moves the steering axis ahead of the axis of wheel rotation, as with the front wheels of a shopping cart. Caster angle moves the steering axis from vertical. [3] In automobile racing, the caster angle may be adjusted to optimize handling characteristics for a particular venue. This is all connected to the front wheels.
No description. Template parameters Parameter Description Type Status name name The article title, e.g. 4-4-0 (The most commonly used name of the wheel arrangement, in brackets) Example 4-8-2 (Mountain) Line optional image (schematic) image Wheel arrangement schematic File optional image size (schematic) imagesize image_size no description Unknown optional alt alt Alternative text for the ...
The 1960 Milliken MX1 Camber Car has a large negative camber. Camber angle is one of the angles made by the wheels of a vehicle; specifically, it is the angle between the vertical axis of a wheel and the vertical axis of the vehicle when viewed from the front or rear.
Especially in steam days, wheel arrangement was an important attribute of a locomotive because there were many different types of layout adopted, each wheel being optimised for a different use (often with only some being actually "driven"). Modern diesel and electric locomotives are much more uniform, usually with all axles driven.