by using its sails and if theres no wind they use oars
Newton's Third Law: For every force there is an equal and opposite reaction force. The boat (and man) would receive an impulse force opposite to the direction of firing. The boat would move opposite to the direction of firing. To determine how much, you would need to consider the relative masses of the boat/man vs the bullet, and include the duration of the impulse. (The boat would probably not move far, but it would move.)
I would think a fiberglass boat is better than a wooden boat because a wooden one can rot and would be hevy to move weres the fiberglass boat wont rot and is light so would be easy to move.
It allowed them to travel long distances faster than others on the time. wich allowed them to sail to distant countrys to raid or trade with the villagers there. Some info: Vikings were the best boat builders during this time. vikings also produced the best steel in the world.
The Viking longboats were long, open boats that had many sets of oars used to row the ships close to shore, or in calm winds. They used large square sails for long voyages.
what ever floats your boat you could make him move now or in a month or whenever
In theory yes you can. As long as the engine will fit in the boat, is waterproofed, and can be rigged to move the boats propeller.
Queequeq
The force used when you step from a boat creates an equal reaction on the boat, which has very little friction with the water. If the boat were on the beach, friction with the sand would prevent it from moving very much.
In theory yes you can. As long as the engine will fit in the boat, is waterproofed, and can be rigged to move the boats propeller.
The boat has a motor and it spins to make it move
Te they moved by travelling on water
Water moves the boat by exerting a force on it in the opposite direction to the movement of the boat. When the propeller of the boat rotates, it pushes water backwards, which, in turn, propels the boat forward. This reaction force from the water helps move the boat through the water.