On Women's Cloudmonster 2 Road Running Shoes (3WE10110106)
On Women's Cloudmonster 2 Road Running Shoes (3WE10110106) - Black/Eclipse / 6.5 Pre-order product (please refer to the product description for the pre-order time)
                    
                      
Size chart/Size Guide
                      
                    
                  
                  Size chart/Size Guide
| US | EU | UK | JP | 
| 5 | 36 | 3 | 22 | 
| 5.5 | 36.5 | 3.5 | 22.5 | 
| 6 | 37 | 4 | 23 | 
| 6.5 | 37.5 | 4.5 | 23.5 | 
| 7 | 38 | 5 | 24 | 
| 7.5 | 38.5 | 5.5 | 24.5 | 
| 8 | 39 | 6 | 25 | 
| 8.5 | 40 | 6.5 | 25.5 | 
| 9 | 40.5 | 7 | 26 | 
| 9.5 | 41 | 7.5 | 26.5 | 
| 10 | 42 | 8 | 27 | 
| 10.5 | 42.5 | 8.5 | 27.5 | 
| 11 | 43 | 9 | 28 | 
                        
                          Description
                          
                        
                      
                      Description
The Cloudmonster 2 is an all-new running shoe that delivers more cushioning, propulsion and energy return. This maximum-cushioned, maximum-energy road running shoe is designed to supercharge your every run.
-  Enhanced Cushioning: Provides exceptional comfort for long distance running.
 
-  Propulsion and Energy Return: Designed to promote an efficient running experience.
 
-  Upper Material: 100% recycled polyester, environmentally friendly and durable.
 
-  Sizing advice: We recommend sizing down half a size from the original Cloudmonster shoe size.
 
- Heel to toe drop: 6 mm
-  Weight: 250 g
 
-  Nylon Blend Speedboard®: Provides kinetic energy and a powerful launch.
 
-  Max CloudTec®: Provides superior shock absorption.
 
-  Maximum cushioning, maximum energy return: designed to power every step.
 
-  Redesigned dual-density Helion™ Ultra Foam: Increases bounce and rebound.
 
-  Speedboard® Construction: Made from a nylon blend designed for propulsion.
 
- Forefoot foam insert: effectively absorbs shock and enhances comfort.
 This shoe is ideal for athletes seeking comfort and performance, especially for runners who require maximum cushioning and energy return.
 
                 
              
            
 
      
 
      
 
      
 
      
 
      
