Answer:
The value is

Step-by-step explanation:
From the question we are told that
The diameter of each wheel is

The mass of the motorcycle is

The rotational kinetic inertia is

The mass of the rider is

The velocity is

Generally the radius of the wheel is mathematically represented as

=>

=>

Generally from the law of energy conservation
Potential energy attained by system(motorcycle and rider ) = Kinetic energy of the system + rotational kinetic energy of both wheels of the motorcycle
=>

=>

Here
is the angular velocity which is mathematically represented as

So

Here



![395 * 9.8 * h = 0.5 * 395 * (23.61)^2 + 2.1 *[( 23.61)/( 0.26) ] ^2](https://img.qammunity.org/2021/formulas/physics/college/1qncwmy17dp0rdbka7w46bzyt2i8fr1kv5.png)
=>
