Beech 95-B55 (T42A) accident near Leyden, Massachusetts, January 14, 2024
On January 14, 2024 at about 11:25 am local time, a 1974 Beech 95-B55 (T42A), registered N7345R, was substantially damaged in an accident during maneuvering near Leyden, Massachusetts. It was an instructional flight under general aviation rules (Part 91). 3 people were killed. The weather was visual conditions (good weather).
The NTSB's probable cause their words, unchanged
The flight instructor’s failure to maintain airplane control during a stall, which resulted in an inadvertent spin from which the airplane was not recovered. Contributing to the accident were the overall effect of the flight instructor’s use of multiple central nervous system depressants, the associated underlying conditions they treated, or both.
Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.
What the record shows
- Date
- January 14, 2024 · about 11:25 am local time
- Place
- Leyden, Massachusetts · map
- Type
- Accident
- Injuries
- 3 people were killed.
- Weather
- visual conditions (good weather)
- Aircraft
- Beech 95-B55 (T42A), built 1974 · all 95-B55 (T42A)s on the register
- Registration
- N7345R · registry record · serial TC-1707
- Damage
- Substantial damage
- Flight
- Instructional flight · general aviation rules (Part 91)
The NTSB's narrative final · quoted from the NTSB record
The flight instructor, commercial-certificated/multi-engine-rated pilot receiving instruction, and a passenger departed on a local flight to practice maneuvers so the pilot could obtain currency in a multi-engine airplane. The pilot receiving instruction had not flown a twin-engine airplane in almost 11 years. This was his first time flying this make/model airplane, and with this flight instructor. Shortly after departure, the airplane climbed to about 3,000 to 3,300 ft mean sea level (msl) and made four alternating left and right 360° turns. After the fourth 360° turn, the airplane began to climb, reaching an altitude of about 4,000 ft msl. The airplane then entered a rapid descent and impacted terrain. Witnesses described that the airplane “corkscrewed” or “spiraled” as it descended nose-down toward the ground. Other witnesses said the airplane sounded as if it were having engine trouble. The airplane came to rest upright with evidence of little forward movement, consistent with the airplane being in a flat attitude at the time of impact. All major components of the airplane were accounted for at the site, and there was no postimpact fire. Photos taken by first responders revealed some airframe icing on the airplane’s left wing, left engine cowling, and nose baggage area. Weather at the time included wind gusts up to 23 kts, with an active AIRMET (Airman Meteorological Information) for icing and a SIGMET (Significant Meteorological Information) for severe turbulence between 3,000 and 16,000 ft msl. A postaccident examination of the airplane and engines revealed no preimpact mechanical deficiency that would have precluded normal operation. Based on the witness’ description of the airplane’s descent and the condition of the wreckage, the airplane entered a spin from which it was not recovered. Since an airplane must first be in a stalled condition before it can spin, either an inadvertent or deliberate stall must have immediately preceded the spin. Further, because a spin entry requires the presence or introduction of a yawing moment at the stall, the NTSB conducted an airplane performance study that considered possible conditions and scenarios that could affect the airplane’s stall performance and produce a yawing moment. These considerations included airframe ice contamination, operation of the engines at different thrust levels (such as during a Vmc demonstration, which is commonly performed during multi-engine airplane instructional flights to demonstrate the airplane’s minimum control airspeed with one engine deliberately shut down or set to minimum thrust), and improper stall recovery technique. The study determined that the airplane entered two stalls in the minute before the accident. The airplane was successfully recovered from the first stall but not the second, during which the spin developed and continued to ground impact. The study determined that, during each stall, the airplane achieved the nominal flaps-up stall speed outlined in the airplane flight manual (AFM). As such, there was no evidence that airframe icing contamination adversely affected the airplane’s stall speed or other aerodynamic characteristics, such as asymmetric stall behavior (one wing stalling before the other). In addition, the study determined that the computed engine power required during the time surrounding the first stall exceeded the power available from one engine, indicating that both engines must have been operating at the time of the first stall. This was inconsistent with a scenario involving a Vmc demonstration. The study determined that, at the time of the second stall, the required engine power was reduced compared to the first stall. Given that this second stall occurred less than 30 seconds after the first, the performance study concluded that it was unlikely that the second stall was associated with an attempted Vmc demonstration. Having excluded an asymmetrical aerodynamic condition and asymmetrical engine thrust as potential sources of the yawing moment that induced the airplane’s spin, the study concluded that the spin may have resulted from an improper stall recovery technique, possibly involving an excessive or inadvertent rudder input. FAA guidance for pilots related to spin avoidance in multi-engine airplanes emphasizes initiating stall recovery (reducing the airplane’s angle of attack) as soon as the airplane reaches the stall warning, such as an aural alert or buffet. The guidance references stall practice among the scenarios in which “spin awareness must be at its greatest.” Toxicological testing of the flight instructor identified that he had used multiple central nervous system (CNS) depressants, including medications for anxiety and depression. Although postmortem drug levels do not reliably predict specific impairing effects in this case, the presence of multiple CNS depressants increased the risk of adverse CNS effects, such as increased sedation, decreased alertness, slowed reflexes, and impaired concentration; these effects can potentially occur despite chronic use. The status of the flight instructor’s underlying condition and its response to treatment could not be determined. As pilot-in-command, the flight instructor had ultimate responsibility for the safety of the flight. It is possible that the flight instructor’s judgment may have been adversely affected by his substance use or underlying condition, or both. Also, despite the predictable need to be immediately ready to react to prevent a spin, the experienced flight instructor failed to prevent the spin. The adverse effects of his substance use, the associated underlying condition, or both likely diminished his capacity to act in a timely and appropriate manner, although a more specific determination of the individual contributions of specific medical factors is not possible based on the available evidence.
The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.
The factual record from the NTSB's investigation tables, in plain English
What happened, in order
- Loss of control in flight during maneuvering defining event
- Collision with terrain or object (not controlled flight into terrain) during uncontrolled descent
The NTSB's findings
- Personnel issues › Task performance › Use of equip/info › Aircraft control › Instructor/check pilot
- Aircraft › Aircraft oper/perf/capability › Performance/control parameters › Airspeed › Not attained/maintained
- Aircraft › Aircraft oper/perf/capability › Performance/control parameters › Yaw control › Not attained/maintained
- Personnel issues › Physical › Impairment/incapacitation › Prescription medication › Instructor/check pilot
Flight instructor
- Certificate: airline transport pilot, flight instructor, commercial pilot
- Ratings: multi-engine land; single-engine land; single-engine sea; instructor: airplane multi-engine; instructor: airplane single-engine; instructor: glider; instructor: gyroplane; instructor: helicopter; instructor: instrument airplane; instructor: instrument helicopter; instrument: airplane; instrument: helicopter; rotorcraft: balloon; rotorcraft: glider; rotorcraft: gyroplane; rotorcraft: helicopter
- Flight time: 11,662 hours in all; 50.1 in this make and model; 115.6 in the last 90 days; 24.1 in the last 30 days
- Last flight review: December 25, 2022
- Medical certificate: Class 2 (with waivers/limitations)
- Seat: rgt
- Injury: fatal
Pilot
- Certificate: commercial pilot
- Ratings: multi-engine land; single-engine land; instrument: airplane
- Flight time: 352.7 hours in all; 0 in this make and model; 0 in the last 90 days; 0 in the last 30 days
- Last flight review: July 22, 2023
- Medical certificate: Class 1
- Seat: left
- Injury: fatal
The aircraft
- Airframe total time: 5,315 hours
- Last inspection: annual inspection, September 1, 2023
- Maximum gross weight: 5,100 lb
- Seats: 6
- Landing gear: retractable
- Engine 1: Cont Motor IO-470-L2B (piston); 0 hours total
- Engine 2: Cont Motor IO-470 SERIES (piston); 0 hours total
The flight
- Departed from: BAF Westfield MA at 4:06 pm
- Flight plan: none
- A second pilot was aboard
Weather at the time
- Light: daylight
- Wind: from 220° at 11 knots, gusting 23
- Visibility: 10 statute miles
- Sky: broken clouds at 4,600 ft
- Temperature: 36°F (2°C), dew point 19°F (-7°C)
- Altimeter: 29.68 inHg
- Observation at 11:25 am from KORE, 12 miles away
Weather report (METAR): KORE 141652Z AUTO 22011G23KT 10SM BKN046 02/M07 A2968 RMK AO2 PK WND 19029/1555 SLP057
Injuries
| Fatal | Serious | Minor | None | |
|---|---|---|---|---|
| Flight crew | 2 | |||
| Passengers | 1 |
Photographs from the investigation 11 pictures from the NTSB's docket, as the NTSB released them
Photograph 1 – Front Left View of Airplane at Accident Site
Photograph 2 – Right Front View of Airplane at Accident Site
Photograph 3 – Rear View of Airplane at Accident Site
Photograph 4 – Ice on Leading Edge of Left Wing (outboard)
Photograph 5 - Ice on Leading Edge of Right Wing (outboard)
Photograph 6 – Ice on Leading Edge of Left Horizontal Stabilizer
Photograph 7 - Ice on Leading Edge of Right Horizontal Stabilizer
MA STATE POLICE INITIAL ON-SCENE PHOTOGRAPHS Photograph 1 – Front View of Airplane (Courtesy MA State Police)
MA STATE POLICE INITIAL ON-SCENE PHOTOGRAPHS Photograph 2 – Left Side View of Airplane
MA STATE POLICE INITIAL ON-SCENE PHOTOGRAPHS Photograph 3 – Front View of Airplane
MA STATE POLICE INITIAL ON-SCENE PHOTOGRAPHS Photograph 4 – Front View of AirplaneThe NTSB's photographs with the NTSB's captions, at screen size. Open a picture to see it full size or to report one that should not be shown.
Documents from the investigation the NTSB's docket: the evidence folder behind the report
19 documents, released by the NTSB on March 4, 2026. View them here, or download them; the NTSB redacts some personal details before release, and this site shows the NTSB's own titles rather than its file names.
Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.
