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Boeing 737 MAX 10 vs. Airbus A321-200

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737 MAX 10

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A321-200

Price (USD)
$116 Million$115 Million
First Flight
20211996
Body Type
Narrow-bodyNarrow-body
Length
43 m143 ft
44 m146 ft
Wingspan
35 m117 ft
35 m117 ft
Wing Area
127 m²1,367 ft²
122 m²1,317 ft²
Fuselage Width
3 m12 ft
4 m13 ft
Height
12 m40 ft
11 m38 ft
Max Takeoff Weight
89,800 kg197,975 lbs
93,500 kg206,132 lbs
Number of Engines
22
Engine Options
CFMI LEAP-1BCFMI CFM56 / IAE V2500
Max Thrust Per Engine
130 kN29,300 lbf
142 kN32,000 lbf
Max Total Thrust
260 kN58,600 lbf
284 kN64,000 lbf
Fuel Capacity
25,800 l6,816 gal
30,030 l7,933 gal
Range
6,110 km3,299 nm
5,950 km3,213 nm
Cruise Speed
839 km/h521 mph
840 km/h522 mph
Typical Seating
188 pax185 pax
Max Seating
230 pax220 pax

What Are the Differences Between the Boeing 737 MAX 10 and Airbus A321-200

Boeing 737 MAX 10 vs Airbus A321-200 Size Comparison

  • At 44.50 meters, the Airbus A321-200 is 0.70 meters longer than the Boeing 737 MAX 10.
  • With a wingspan of 35.90 meters, the Boeing 737 MAX 10 is 0.10 meters wider from wingtip to wingtip.
  • The Boeing 737 MAX 10 and Airbus A321-200 have heights of 12.30 meters and 11.80 meters respectively - making the Boeing 737 MAX 10 0.50 meters taller.

Boeing 737 MAX 10 vs Airbus A321-200 Range

  • Boeing 737 MAX 10’s range of 6,110 kilometers is greater than Airbus A321-200’s range of 5,950 kilometers. Therefore, the Boeing 737 MAX 10 can fly nonstop approximately 160 kilometers further.
  • The Airbus A321-200 can hold 7,933 gallons of fuel, which is 1,117 gallons more than the Boeing 737 MAX 10’s tank capacity of 6,816 gallons.

Boeing 737 MAX 10 vs Airbus A321-200 Seating

  • In a typical seating configuration, the Boeing 737 MAX 10 can accommodate 188 passengers, which is about 3 passengers more than Airbus A321-200’s seating capacity.
  • The Boeing 737 MAX 10’s max seating capacity is 230 passengers, compared to 220 passengers of the Airbus A321-200.

About the Boeing 737 MAX 10

The Boeing 737 MAX 10 is the largest variant in the 737 MAX series, representing Boeing's expansion of its narrow-body, twin-engine offerings for the commercial aviation market. Launched in 2017, the MAX 10 was developed in response to airlines demanding a larger model than the MAX 9. The announcement for the MAX 10 was quickly followed by 240 orders and commitments from more than ten customers. The United States' aviation regulator, the FAA, cleared Boeing to begin certification flight testing of its 737 MAX 10 in November of 2023. Deliveries are being anticipated for early 2025.

The 737 MAX 10, with its extended fuselage, offers a greater passenger capacity compared to its siblings in the MAX series at 143 feet (43.79 meters). This increase in size allows airlines to accommodate more passengers per flight, optimizing efficiency and profitability, particularly on popular short to medium-haul routes. Equipped with advanced CFM International LEAP-1B engines, the MAX 10 delivers over 58,000 pounds of thrust. The slight stretch of the MAX 10 allows the jet to retain the existing wing design and LEAP engines from the MAX 9, with a trailing-link main landing gear being the only major change.

In the market, the Boeing 737 MAX 10 competes with aircraft like the Airbus A321neo. Both are very similar in terms of seating capacity, and range, but the MAX 10 does fall short in terms of field performance. Boeing predicts that the MAX 10 will yield a 5% lower trip cost and seat cost compared to the A321neo. It provides airlines with an alternative option in the narrow-body segment, offering a balance of capacity, range, and efficiency.

Various airlines have shown interest in the 737 MAX 10 for its ability to meet the demands of modern air travel. It is expected that United Airlines, Korean Air, Alaska Airlines, and Ryanair will have some of the largest fleets of MAX 10s. The MAX 10's capabilities make it an attractive choice for carriers looking to expand their network and serve densely populated routes efficiently.

About the Airbus A321-200

The Airbus A321-200, an extended version within the Airbus A320 family, stands out as a narrow-body, twin-engine aircraft tailored for medium to long-haul flights. This variant distinguishes itself from the A321 with enhanced range and payload capabilities.

Spanning 146.5 feet (44.6 meters) in length and with a wingspan of 117.5 feet (35.8 meters), the A321-200 has the distinction of being the longest aircraft in the A320 family. It accommodates up to 220 passengers in a standard two-class configuration, with options for denser seating in single-class layouts. This model has been particularly noted for its stretched fuselage, which allows for more seating without significantly increasing operational costs. Thanks to its Door-Over-Wing (DOW) exit design, the aircraft was able to increase passenger capacity while adhering to safety regulations. The A321-200 is powered by CFM56 or IAE V2500 engines, known for their reliability and efficiency. It has a maximum takeoff weight of about 206,000 lbs and can cover distances up to 3,200 nautical miles (5,930 kilometers). Equipped with Airbus's innovative fly-by-wire system and a glass cockpit, the A321-200 reflects the technological lineage of the A320 family. These systems contribute to enhanced pilot control and navigational accuracy.

Key operators of the Airbus A321-200 include American Airlines, Lufthansa, and British Airways. Each airline has utilized the A321-200 in ways that leverage its specific capacities and range, from transcontinental routes to high-traffic short-haul flights. The Airbus A321-200's development was partly driven by airline demand for a more efficient and higher capacity aircraft within the single-aisle market. One of the notable achievements of the A321-200 is its operational flexibility, which has allowed airlines to deploy it on a variety of routes, optimizing for both passenger volume and flight distance.

In operational use, the A321-200 has been recognized for its ability to effectively serve both densely trafficked routes and specialized markets requiring additional range. This flexibility makes it a valuable asset in the fleets of airlines looking to balance capacity and efficiency in their operations.

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Values shown may not be 100% accurate, as some metrics are averages or only represent certain production years and configurations. Engine specs are based on the best options available.

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