Aerospace
Civil Engineer
Petroleum Engineer
Flight Engineer
Bio chemical Engineer
100

What is aerospace engineering?

Aerospace engineering is the field of engineering focused on aircraft, spacecraft, and the systems that make them work.

100

What is civil engineering?


  1. Civil engineering is the field of engineering that deals with designing, building, and maintaining infrastructure and structures such as buildings, roads, bridges, dams, and water systems


100

 What is petroleum engineering?

Petroleum engineering is the field of engineering focused on finding, extracting, and producing oil and natural gas from underground reservoirs.

100

 What are the four main forces acting on an aircraft during flight?

lift, weight, thrust, and drag.

100

What is biochemical engineering?

 Biochemical engineering combines biology, chemistry, and engineering to develop processes that use living cells, enzymes, or biological materials to make useful products such as medicines, vaccines, biofuels, and food ingredients.

200

What are the four main forces acting on an airplane?

Lift, weight, thrust, and drag

200

What does a civil engineer do?

Civil engineers plan, design, analyze, and help construct infrastructure while considering safety, cost, materials, and environmental impact.

200

What is natural gas?

 Natural gas is a fossil fuel found underground that is made mostly of methane (CH₄). It can be used for heating, generating electricity, and industrial processes.

200

How does changing the angle of attack affect an aircraft’s lift?

Increasing the angle of attack generally increases lift up to a certain point. If the angle becomes too large, the airflow separates from the wing and the aircraft can stall, causing lift to decrease significantly.

200

What is a bioreactor, and what is it used for?

 Engineers use it to grow cells or microorganisms and control conditions such as temperature, pH, oxygen, and nutrient levels.

300

What is weight?

Weight is the force of gravity pulling an aircraft toward Earth. 

300

 What is concrete?

Concrete is a construction material made primarily from cement, water, and aggregates such as sand and gravel.

300

What is a well?

A well is a hole drilled into the Earth to reach underground oil or gas.

300

Why does an aircraft stall, and what happens aerodynamically during a stall?

angle of attack exceeds the critical angle.

300

Why is controlling temperature and pH important in a bioreactor?

Cells and microorganisms work best within specific temperature and pH ranges. If conditions become too hot, cold, acidic, or basic, the organisms may grow poorly or die, reducing the amount of desired product.

400

What is an engine's purpose on an aircraft?

  1. An engine provides thrust to overcome drag and move the aircraft


400

What is tension?

Tension is a force that pulls or stretches a material.

400

What does a petroleum engineer do?

Petroleum engineers help determine how to drill, produce, and recover oil and gas efficiently and safely.

400

How does a swept-wing design improve an aircraft’s performance at high speeds, and what are its disadvantages?

Sweeping the wings backward reduces the component of airflow traveling directly over the wing, which helps delay compressibility effects and shock waves at high speeds.

400

How would you increase the production of a desired protein using genetically engineered bacteria?

 nutrient concentration, temperature, pH, oxygen, and gene expression

500

Why does an airplane need to move through the air to fly?

Moving through air allows the wings to generate aerodynamic forces, including lift.

500

What is the basic goal of civil engineering?

The goal is to design and build safe, reliable, durable, and useful infrastructure while considering cost, environmental impact, and the needs of society.

500

What is water saturation?

  1. Water saturation is the percentage of the pore space occupied by water.



500

How would you determine the optimum altitude and airspeed for maximum fuel efficiency during a long-distance flight?

 Engineers consider engine efficiency, aerodynamic drag, aircraft weight, air density, wind, and altitude.

500

How would you design and scale up a bioreactor from laboratory scale to industrial scale while maintaining the same production efficiency?

oxygen transfer, mixing, heat transfer, nutrient distribution, cell growth, and energy consumption.