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100 days to go until FIFA U-17 World Cup Qatar 2026

100 days to go until FIFA U-17 World Cup Qatar 2026

Doha, Qatar: With just 100 days to go until the FIFA U-17 World Cup Qatar 2026, excitement is building for the prestigious youth tournament taking place in Qatar from November 19 to December 13, 2026. raccoongame.org

This year marks the second of five consecutive editions that Qatar will host annually through 2029, reaffirming its commitment to delivering world-class sporting events while strengthening the country’s long-term football legacy.

Building on the success of the landmark 2025 tournament, which saw Qatar host the first-ever FIFA competition featuring 48 teams, this year’s edition will once again welcome 48 nations competing across 104 matches. Fans can look forward to up to eight matches per day during an action-packed group stage.

The FIFA U-17 World Cup has long served as a launching pad for many of football’s biggest stars, most notably, Egyptian forward and FC Barcelona player Hamza Abdelkarim, who made his debut at the FIFA World Cup 2026 following a breakout performance at the FIFA U-17 World Cup Qatar 2025. The tournament will once again provide the world’s most promising young players with the opportunity to showcase their talent on football’s biggest stage.

The FIFA U-17 World Cup Qatar 2026 will be held at the Aspire Zone Competition Complex, with the final taking place at the iconic Khalifa International Stadium, where Portugal lifted the trophy last year in front of a crowd of 38,901 spectators.

With all matches being held in a centralised venue, fans will be treated to an exciting festival-like atmosphere under the theme of TMRW’s GOAT, celebrating young stars as well as exploring a number of cultural and entertainment activities taking place at the Fan Zone.

This year’s tournament coincides with a significant milestone for Khalifa International Stadium, which celebrates the 50th anniversary of its inauguration in 1976. One of Qatar’s most iconic sporting venues, the stadium has previously hosted a number of major sporting events, including matches during the historic FIFA World Cup Qatar 2022.

Gym Equipment Repair Costs in Qatar: What to Expect

Gym equipment repair costs in Qatar vary widely depending on the type of machine, the extent of damage, and whether you’re working with an authorized dealer or a third-party technician. For gym owners and fitness center managers, understanding these cost factors upfront helps avoid budget surprises and makes it easier to decide when to repair versus replace equipment.

What Determines Gym Equipment Repair Costs in Qatar

Several factors influence how much you’ll pay for repairs:

  • Equipment type: Cardio machines with electronic consoles typically cost more to repair than simple strength equipment.
  • Brand and parts availability: Genuine parts from authorized distributors may cost more upfront but prevent recurring issues.
  • Severity of damage: A worn belt or loose bolt is inexpensive to fix compared to a failed motor or damaged frame.
  • Technician expertise: Certified technicians familiar with specific brands often resolve issues faster, reducing labor costs.
  • Equipment age: Older machines may need harder-to-source parts, which can push repair costs higher than newer models.

Understanding these variables is the first step toward controlling gym equipment repair costs in Qatar across your facility.

Common Gym Equipment Repairs and What They Typically Involve

Treadmill Repairs

Treadmills see the heaviest daily use in most gyms, making them one of the most common sources of repair calls. Typical issues include belt slippage, motor wear, and console malfunctions — all of which vary in cost depending on severity.

Cross Trainer and Elliptical Repairs

These machines rely on multiple moving parts working in sync, so cross trainer repair Qatar requests often involve pedal arm alignment, resistance system checks, or bearing replacement.

Strength Equipment Repairs

Selectorized and plate-loaded machines generally have lower repair costs than cardio equipment, since issues are usually mechanical — cable replacement, pulley wear, or pin adjustments — rather than electronic.

Electronic Console and Sensor Issues

Modern gym equipment consoles handle everything from heart rate tracking to workout data. When these fail, gym equipment electronic repair costs can climb quickly if specialized diagnostic tools are required.

Repair vs Replace: Making the Right Call

Not every repair is worth the investment. Consider these guidelines:

  1. Repair if: The machine is under 5 years old, the issue is isolated, and repair cost is under 30-40% of replacement value.
  2. Replace if: The equipment has recurring issues, parts are difficult to source, or repair costs approach half the price of a new unit.
  3. Consult a professional if: You’re unsure — a technician can often assess whether a repair will hold long-term or is a temporary fix.

Making this decision correctly protects your fitness equipment budget Qatar from unnecessary spending on aging machines that are better replaced.

How to Reduce Gym Equipment Repair Costs Over Time

Lowering long-term gym equipment repair costs in Qatar starts with prevention rather than reaction:

  • Schedule routine preventive servicing instead of waiting for breakdowns
  • Use genuine manufacturer parts rather than cheaper alternatives that wear out faster
  • Train staff to spot early warning signs like unusual noise or console errors
  • Keep a maintenance log to track recurring issues by machine
  • Work with an authorized dealer familiar with your specific equipment brands

Gyms that follow a structured commercial gym repair Qatar approach consistently spend less over time than those relying purely on reactive fixes.

Why Working With an Authorized Dealer Matters

Choosing where to source repairs significantly affects both cost and quality. An authorized gym equipment technician Doha has direct access to genuine parts and manufacturer specifications, which reduces the chance of recurring failures from mismatched or low-quality components.

Sports Village Qatar has been supplying and servicing commercial gym equipment across Doha since 2006, as an authorized distributor for Precor, Torque, Concept 2, and other leading global brands. Our team provides transparent, itemized quotes for repairs on the commercial gym equipment we supply, so facility managers know exactly what they’re paying for before work begins.

For gym owners who want to avoid repeated repair costs altogether, our gym equipment maintenance programs are designed to catch issues early, often at a fraction of what a full repair would cost later.

Budgeting for Gym Equipment Repairs in Qatar

Most facilities benefit from setting aside an annual repair and maintenance budget rather than treating repairs as unplanned expenses. As a general guideline:

  • Small gyms with basic equipment: lower annual repair budget, mostly mechanical fixes
  • Mid-size commercial gyms: moderate budget covering cardio and strength equipment servicing
  • Large facilities or hotel gyms: higher budget accounting for high machine count and premium equipment

Getting an accurate, facility-specific quote is always more reliable than relying on generic online estimates, since pricing depends heavily on your exact equipment mix.

FAQs About Gym Equipment Repair Costs in Qatar

1. What is the average cost to repair a treadmill in Qatar? Costs vary significantly based on the issue — a belt replacement is far less expensive than a motor or console repair. A technician assessment gives the most accurate figure for your specific machine.

2. Is it cheaper to repair or replace old gym equipment? It depends on machine age and repair cost relative to replacement value. As a rule of thumb, if repair costs exceed 40-50% of a new unit’s price, replacement is usually more cost-effective.

3. Do repair costs differ between brands? Yes, brands with widely available parts and local authorized dealers typically have lower and more predictable repair costs than less common brands.

4. How can gyms reduce repair costs long-term? Consistent preventive maintenance, genuine parts, and early issue detection significantly reduce the frequency and severity of repairs over time.

5. Should I use an authorized dealer for repairs? Yes, authorized dealers have access to genuine parts and manufacturer specifications, which generally results in more reliable, longer-lasting repairs.

Get a Transparent Repair Quote in Doha

Understanding gym equipment repair costs in Qatar helps you plan budgets accurately and avoid unnecessary downtime. Sports Village Qatar has over 18 years of experience repairing and maintaining commercial gym equipment across Doha, backed by genuine parts and manufacturer-trained technicians.

📍 Address: Sports Village, Building No 86, Street 340, Zone 39, Near Jarir Book Store, Ramada Signal, Salwa Road, Doha, Qatar

👉 REQUEST YOUR REPAIR QUOTE NOW

Celebrating the women of the nation this Emirati Women’s Day

The Emirati women behind it all If there’s one thing we know for sure, there’s no mountain high enough for a woman’s ambitions. And Emirati women are no exception to this rule. The Emirati Women’s Day was launched as a means to celebrate the women who have helped shape the nation through their contributions. Launched […]

The post Celebrating the women of the nation this Emirati Women’s Day appeared first on What's On.

STRESS FRACTURES: WHAT ATHLETES NEED TO KNOW

Of all running injuries, stress fractures are among the most important to understand and the most dangerous to ignore. Unlike soft tissue injuries that can often be managed with modified training, stress fractures involve actual bone damage that requires careful management. The good news is that with the right approach, most runners recover fully and return to training stronger than before.

1

WHAT IS A STRESS FRACTURE?

A stress fracture is a small crack or severe bruising within a bone caused by repetitive mechanical loading that exceeds the bone's capacity to remodel and repair itself. Unlike acute fractures caused by a single traumatic event, stress fractures develop gradually over time through accumulated microdamage. They sit at the severe end of a bone stress injury (BSI) continuum that begins with a stress reaction, progresses to a stress fracture, and if unmanaged, can result in a complete cortical break.

In runners, the bones most commonly affected are the tibia (accounting for approximately 50% of stress fractures in runners), metatarsals, navicular, fibula, femur, and pelvis. High-risk sites including the navicular, femoral neck, and anterior cortex of the tibia require significantly more conservative management than low-risk sites such as the fibula or metatarsal shaft.

Stress fractures account for up to 10% of all orthopaedic injuries and up to 20% of injuries seen in sports medicine clinics. Among runners specifically, they are consistently identified as one of the most frequently reported running-related musculoskeletal injuries. Female athletes have a greater incidence of stress fractures than males in both military and athletic populations (Wentz et al., 2011).

50% - Of running stress fractures involve the tibia

20% - Of sports medicine clinic injuries are stress fractures

Top Reported - One of the most frequently reported running injuries alongside PFPS

2

UNDERSTANDING STRESS FRACTURES IN RUNNERS

Stress fractures develop when repetitive mechanical loading produces microdamage in bone faster than the bone's remodeling process can repair it. Bone is a dynamic tissue that constantly undergoes resorption and new formation in response to mechanical stress. When loading is progressive and recovery is adequate, bone adapts and becomes stronger. When loading spikes faster than remodeling can keep pace, microdamage accumulates and a stress fracture can result.

Understanding the risk classification of stress fractures is essential for runners:

LOW-RISK SITES
Generally manageable
Fibula, metatarsal shaft (2nd-4th), calcaneus, medial tibia. These sites have good blood supply and lower risk of displacement or non-union. Typically managed with relative rest and graded return to activity.
WARNING SIGNS - SEEK CLINICAL ASSESSMENT IMMEDIATELY
Sharp, focal pain at a specific point on the bone rather than diffuse aching
Pain that worsens progressively during a run rather than easing with warmup
Pain present during walking, at rest, or at night
Visible swelling or tenderness directly over a bone
Positive hop test: pain reproduced by hopping on the affected leg
Pain that does not ease significantly between training sessions
HIGH-RISK SITES
Require specialist care
Femoral neck, navicular, anterior tibial cortex, 5th metatarsal base, sesamoids. These sites carry risk of complete fracture or non-union. Often require non-weight-bearing and specialist review.

Any runner with suspected stress fracture symptoms should seek clinical assessment and imaging before continuing to run. MRI is the most sensitive diagnostic tool and can identify bone stress injuries before they appear on X-ray. Do not attempt to run through suspected stress fracture symptoms without medical clearance.

3

HOW STRESS FRACTURES DEVELOP IN RUNNERS

Stress fractures in runners are multifactorial. They arise from the intersection of mechanical loading, bone health, and recovery capacity. They typically emerge when multiple contributing factors converge simultaneously.

Sudden mileage increases

Low bone density

Low energy availability

Menstrual irregularity

Low calcium and vitamin D

Hard surface running

Female sex

Previous stress fracture

One of the most important and underrecognized contributors to stress fractures in runners is low energy availability, described clinically as Relative Energy Deficiency in Sport (RED-S). RED-S refers to a syndrome of impaired physiological functioning caused by relative energy deficiency, including impairments of metabolic rate, menstrual function, bone health, immunity, protein synthesis and cardiovascular health (Mountjoy et al., 2018). When a runner consistently consumes insufficient calories to meet the demands of training, bone remodeling is compromised and stress fracture risk rises substantially. Bone health is so significantly disrupted by low energy availability that stress fractures cannot be managed adequately without addressing those underlying deficiencies (Tenforde et al., 2023).

From a mechanical standpoint, running biomechanics also play a significant role. Research has identified that lower step rate, greater vertical ground reaction force, and certain gait characteristics are associated with higher bone stress injury risk. Runners who land with a longer stride and lower cadence generate higher peak impact forces, increasing the mechanical stress on load-bearing bones with each foot contact (Kliethermes et al., 2021).

"Stress fractures are not just a training load problem. They are often a bone health problem. Addressing energy availability, nutrition, and hormonal health is as important as managing the mechanical loading side of the equation."

4

CAN YOU KEEP RUNNING WITH A STRESS FRACTURE?

This question has a clear answer: it depends entirely on the location and severity of the fracture, and must be guided by clinical assessment. Unlike soft tissue injuries where modified running is often appropriate, stress fractures involve actual bone damage. Running through a stress fracture without appropriate management risks progression to a complete fracture, non-union, or the need for surgical intervention.

The goal of stress fracture management is not to eliminate all physical activity. It is to eliminate the specific loading stimulus causing ongoing bone damage, while maintaining as much fitness as possible through alternative training.

STOP RUNNING IMMEDIATELY IF: High-risk fracture site confirmed on imaging
Pain present during normal walking
Any suspected femoral neck involvement
Clinician has advised non-weight-bearing
Every stress fracture management plan must be individually guided by a sports medicine physician or orthopaedic specialist. Do not self-manage a suspected or confirmed stress fracture without clinical guidance.REDUCED LOADING MAY BE OK IF: Low-risk site confirmed by clinical assessment
Pain-free during walking
Clinician has approved modified activity
Appropriate unloading strategy in place

5

EVIDENCE-BASED TREATMENT OPTIONS

Stress fracture management is more complex than other running injuries because it involves both mechanical and systemic factors. An effective treatment plan must address both sides of the equation.

Relative Rest and Activity Modification

The primary intervention for stress fractures is eliminating or dramatically reducing the loading stimulus driving ongoing bone damage. For low-risk sites this typically means stopping running for 4-8 weeks while maintaining fitness through non-impact cross-training. For high-risk sites, complete non-weight-bearing with crutches may be required.

Nutrition and Energy Availability

Addressing energy availability is essential for runners with stress fractures, particularly female athletes. Strategies to prevent recurrent bone stress injury include optimizing nutrition and energy intake, physical therapy to address biomechanical factors, and ensuring adequate sleep (Tenforde et al., 2023). Adequate calcium and vitamin D are important components of bone health support during recovery. Any runner with a stress fracture should be screened for RED-S and nutritional deficiencies by a clinician who can advise on specific supplementation targets.

Non-Impact Cross-Training

Pool running, swimming, and cycling allow cardiovascular fitness to be maintained during the rest phase without loading the injured bone. Deep water running in particular allows runners to maintain running-specific neuromuscular patterns and cardiovascular fitness simultaneously. This is a critical component of stress fracture management.

Strength Training

Progressive strength work targeting the hip, glute, and calf musculature can be initiated early in rehabilitation, provided it does not load the injured bone site. Building muscular strength reduces the mechanical stress placed on bones during running by improving shock absorption and force distribution. Treatment should be individualized based on fracture site and current pain levels.

Gait and Biomechanical Assessment

Addressing the biomechanical factors that contributed to the fracture is essential for preventing recurrence. Increasing running cadence, addressing hip weakness, and correcting footwear all reduce the mechanical demand on bones during running. Return-to-run should include gait retraining to reduce recurrence risk.

Graded Return-to-Run

Once the fracture has healed sufficiently and the athlete is pain-free during walking and daily activities, a structured return-to-run program is initiated. This involves systematically reintroducing ground reaction force loading in small increments, guided by symptoms and clinical milestones rather than a fixed timeline.

"Stress fractures cannot be fully managed without addressing their underlying drivers. For many runners this means examining energy availability, nutrition, hormonal health, and training load simultaneously, not just reducing mileage and waiting."

Adapted from IOC consensus on RED-S and bone stress injury management

6

HOW BODY-WEIGHT SUPPORT RUNNING HELPS STRESS FRACTURE RECOVERY

For runners managing low-risk stress fractures, or in the later stages of recovering from higher-risk injuries once cleared for weight-bearing activity by a clinician, body-weight support (BWS) treadmill systems offer a uniquely valuable tool. The fundamental challenge with stress fracture return-to-run is that the transition from no running to full-weight running must be managed in very small, controlled increments. Any sudden jump in bone loading risks re-injury.

BWS systems address this directly. By reducing effective body weight during running, they proportionally reduce the ground reaction force per foot contact, allowing bone loading to be titrated with precision that is otherwise impossible to achieve. A runner transitioning back from a tibial stress fracture can begin running at 20-30% body-weight support and progress in small increments toward full weight bearing over several weeks.

This approach is particularly important for stress fractures because it preserves real running mechanics throughout recovery. Pool running and cycling, while valuable for fitness maintenance, do not replicate the neuromuscular demands of running. BWS treadmill running allows the athlete to maintain running-specific movement patterns at a bone loading level appropriate to their current healing stage.

🏃Real running mechanics
Running-specific neuromuscular patterns preserved throughout, unlike pool running or cycling
❤Fitness maintained
Aerobic fitness preserved when full-weight running is contraindicated by fracture status
⚡Bone loading controlled
Ground reaction force per stride reduced proportionally to body-weight support level
📈Precise progression
Support level reduced in measured increments as healing progresses and symptoms allow

IUsed at the right stage of rehabilitation, it offers a level of loading precision that is uniquely well-suited to the demands of stress fracture return-to-run.

7

HOW ATHLETES USE LEVER DURING STRESS FRACTURE RETURN-TO-RUN

LEVER is a body-weight support system designed for treadmill running that allows precise control over how much load goes through the legs during training. For runners returning from a stress fracture, once cleared for weight-bearing activity by their clinician, LEVER can create a structured and measurable bridge between no running and full-weight running.

A typical stress fracture return-to-run with LEVER might begin at 20-30% body-weight support once clinical clearance is received. For a 70 kg runner, this means experiencing the ground reaction force equivalent of a 49-56 kg person per stride, allowing the healing bone to be progressively reloaded without risking re-injury.

Start at 20-30% support provides a significant reduction in bone loading per stride while still allowing actual running mechanics to be practiced and maintained.

Progress in small increments reduce support by 5% at a time, guided by symptoms and clinical milestones, creating a measured pathway toward full weight-bearing running.

Preserve running mechanics natural cadence, foot strike, and running gait maintained throughout. Unlike pool running, this is actual running with full neuromuscular specificity.

Maintain aerobic fitness cardiovascular demand preserved at reduced support levels, significantly reducing the deconditioning that typically occurs during mandatory rest from running.

Reduce recurrence risk the gradual, controlled nature of BWS progression avoids the sudden loading spikes that are the most common cause of stress fracture recurrence during return-to-run.

Used at the right stage of rehabilitation and with appropriate clinical oversight, LEVER provides a level of precision in bone loading management that is uniquely suited to the demands of stress fracture recovery.

8

EXAMPLE RETURN-TO-RUN PROGRESSION

The following is a sample framework for a runner returning from a low-risk stress fracture who has been cleared for weight-bearing activity by their clinician and is pain-free during walking. This is not appropriate for high-risk fracture sites. All progressions must be individually guided by a sports medicine physician or physiotherapist.

PHASEBWS LEVELSESSION STRUCTUREKEY MILESTONES
Week 1-225-30%Walk/run intervals: 1 min run / 2 min walk x 6-8. Flat surface only. Very easy pace. 15-20 min total. Pain must be zero throughout.Zero pain during and after. No soreness at fracture site next morning. Full pain-free walking maintained.
Week 3-420%Continuous easy running: 15-20 min. Flat surface, easy pace. Focus on cadence. Continue strength program off treadmill.Consistent pain-free sessions. No post-run soreness at fracture site. Tolerating continuous running comfortably.
Week 5-610-15%20-30 min easy runs. Add 4 x 20-second strides at end of 2 sessions. Soft surface preferred. Progressive strengthening continued.Comfortable with strides. No pain response. Clinical assessment confirms healing progression.
Week 7-80-10% to FullTransition sessions: begin with 5-10% support, finish final 10-15 min at full weight. Progress toward full weight-bearing 30 min runs on normal surfaces.Full weight-bearing running pain-free. Clinical clearance confirmed. Ready to resume structured training with ongoing load monitoring.

Important: This progression is appropriate for low-risk fracture sites only, after clinical clearance for weight-bearing activity. The timeline is a guide only. Any pain at the fracture site during a session means stopping immediately and returning to the previous phase. High-risk fractures require specialist guidance and longer timelines. Always work with a sports medicine physician and physiotherapist to individualize your return-to-run program.

9

KEY TAKEAWAYS FOR RUNNERS MANAGING STRESS FRACTURES

🦴Get imaging firstAny suspected stress fracture must be clinically assessed and imaged before making return-to-run decisions. Fracture site determines management. ⚠High vs low risk mattersNot all stress fractures are managed the same way. High-risk sites require non-weight-bearing and specialist care. Low-risk sites may allow earlier return to modified activity.
🍎Address the whole pictureEnergy availability, calcium, vitamin D, hormonal health, and sleep all affect bone remodeling. Treating only the mechanical side without addressing systemic factors leads to recurrence. 🏊Maintain fitness during restPool running, swimming, and cycling allow cardiovascular fitness to be maintained during mandatory rest. Do not accept complete inactivity.
🎯BWS enables precise return-to-runFor low-risk fractures once cleared for weight-bearing, body-weight support running allows bone loading to be reintroduced in small, controlled increments. ✅Full recovery is the normWith appropriate management, most runners recover fully from stress fractures and return to their previous training levels. Patience and proper progression are the keys.

A stress fracture is not the end of your running career. It is a signal that your bone's adaptive capacity has been exceeded, and that your approach to training load, nutrition, and recovery needs attention.

Get the right diagnosis, address the whole picture, progress carefully, and use every available tool to return to running as safely and completely as possible.


References
Dempster J, et al. (2021). The prevalence of lower extremity injuries in running and associated risk factors: a systematic review. Phys Act Health. doi:10.5334/paah.109
Kliethermes SA, et al. (2021). Lower step rate is associated with a higher risk of bone stress injury in collegiate cross-country runners. Br J Sports Med. doi:10.1136/bjsports-2020-102946
Mountjoy M, et al. (2018). IOC consensus statement on relative energy deficiency in sport (RED-S): 2018 update. Br J Sports Med.doi:10.1136/bjsports-2018-099193
Rizzone KH, et al. (2017). The epidemiology of stress fractures in collegiate student-athletes, 2004-2005 through 2013-2014 academic years. J Athl Train. doi:10.4085/1062-6050-52.8.01
Tenforde AS, et al. (2023). Relative energy deficiency in sport and bone stress injuries. Clin Sports Med.doi:10.1016/j.csm.2022.11.002
Warden SJ, et al. (2015). Risk factors associated with lower extremity stress fractures in runners: a systematic review with meta-analysis. Br J Sports Med. doi:10.1136/bjsports-2014-094517
Wentz L, et al. (2011). Females have a greater incidence of stress fractures than males in both military and athletic populations: a systematic review. Mil Med. doi:10.7205/milmed-d-10-00322

Fakhira impresses again at Liwa International Stakes in France

Doha, Qatar: Fakhira (Al Mamun Monlau), a four-year-old Purebred Arabian filly, recorded another major success by winning the Gr.1 (PA) Liwa International Stakes – Wathba Stallions over 2000m at La Teste, France, yesterday.

The race was reserved for fillies and mares aged four and older and attracted a field of five runners.

Trained by Thomas Fourcy, ridden by Alexandre Gavilan and carrying the colours of Khalifa bin Sheail Al Kuwari, the four-year-old filly, Fakhira confirmed her position among the leading fillies and mares of her generation with another impressive performance.

Fakhira came into the race after winning the Gr.1 (PA) Criterium des Pouliches – Yas Racing over the same course last month.

This latest success gave Fakhira her second Gr.1 (PA) victory and took her career record to four wins from only five starts.

Fakhira broke well and was quickly positioned on the outside, racing just behind Labwa Al Cham (Al Mourtajez), who led that part of the field while staying away from the inside rail.

El Bnoud (Azadi), meanwhile, headed the group racing closer to the rail, with Shagaf (Al Mourtajez) just behind her.

The connections of Fakhira celebrate after the Khalifa bin Sheail Al Kuwari-owned filly won the Gr.1 Liwa International Stakes.

The positions remained much the same approaching the final turn, with Labwa Al Cham still leading Fakhira on the outside.

As they entered the turn, the runners on the outside moved across towards the horses racing near the rail, bringing the field together.

Fakhira was still travelling very comfortably at this stage while most of her rivals were already being asked for an effort. Inside the final 300m, the race quickly developed into a battle between Fakhira and El Bnoud. But approaching the final 200m, Fakhira clearly had more to offer. She changed gear again and pulled away strongly from her rival to score by four lengths.

El Bnoud finished second while Labwa Al Cham held on for third place.

Bred by Sheail bin Khalifa Al Kuwari, Fakhira is by Al Mamun Monlau out of Falsafah (AF Albahar), a winner over 1200m in Qatar at the age of four.

In brief

بدء العد التنازلي لـ 100 يوم على انطلاق بطولة كأس العالم تحت 17 سنة FIFA قطر 2026 مع بدء العد التنازلي لـ 100 يوم على انطلاق بطولة كأس العالم تحت 17 سنة FIFA قطر 2026™️، تتصاعد وتيرة الحماس للحدث العالمي الذي تستضيفه دولة قطر خلال الفترة من 19 نوفمبر إلى 13 ديسمبر 2026. وتشهد نسخة هذا العام إقامة البطولة للمرة الثانية ضمن خمس نسخ متتالية تستضيفها قطر

أمين عام مجلس التعاون: الاعتراف الكولومبي بسيادة الاحتلال على الجولان مخالف لكل القوانين أكد السيد جاسم محمد البديوي الأمين العام لمجلس التعاون لدول الخليج العربية،أن الاعتراف الكولومبي بسيادة قوات الاحتلال الإسرائيلي على هضبة الجولان السورية المحتلة مخالف لكل القوانين والمعاهدات الدولية. وأدان البديوي، في بيان، بأشد العبارات هذا الاعتراف، مجددا التأكيد على أن أي قرارات واعترافات لا تلامس الواقع والحقيقة …

Gym Equipment Warranty Guide for Doha Gym Owners This gym equipment warranty guide breaks down everything gym owners, fitness center managers, and equipment operators in Qatar need to know before signing a purchase agreement or filing a claim. Warranty terms can vary significantly between brands and dealers, and misunderstanding the fine print often costs facilities…