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Liquid fuel-Apex

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5y ago

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If an engineer's greatest concern is specific impulse what type of fuel should she use?

Liquid fuel. (apex chemistry questionn)


If an engineer greatest concern is specific impulse witch type of fuel should she use?

If an engineer's greatest concern is specific impulse, she should consider using liquid hydrogen and liquid oxygen (LH2/LOX) as propellants. This combination offers one of the highest specific impulses among conventional rocket fuels, making it highly efficient for space propulsion. Additionally, alternative options like methane or other advanced propellants may also be evaluated for specific applications, but LH2/LOX remains a top choice for maximizing efficiency.


Which term refers to the efficiency of a rocket's engine?

Specific impulse


When is impulse the greatest?

When you make the object bounce.


Why do rockets drop there fuel tanks?

the efficiency of rocket propellant is called specific impulse the more the specific impulse the more the performance .


The velocity of nerve impulse conduction is greatest in?

Heavily myelinated, large diameter fibers


To have the greatest impulse there should be?

there should be a large force acting for a long time. D.


What refers to the efficiency of a rockets engine?

Specific impulse


Which term describes the amount of thrust created per unit of mass of an engine and fuel?

Specific impulse :)


What term refers to the efficiency of a rocket's engine?

Specific impulse


When the receptor have registered a the energy is converted to a electrochemical impulse?

Yes, when a receptor detects a stimulus, it triggers an electrochemical impulse to be sent along a nerve cell. This impulse travels to the brain where it is interpreted as a specific sensation or perception.


An impulse is the product of the on an object and the time during which it is applied?

What happens when an impulse acts on an object? Impulse is defined as force acting on an object for a specific time. Impulse = Force * time If you push on a object for a specific time, the object's velocity will change. Equation = F* t = mass * ∆ v This equation is derived from F = m* a, a = ∆v ÷ t