Newton's Law - For every action there is an equal and opposite reaction. In order for you to move forward, there must be a force going backward. That is evidenced by the backward motion of the log.
When you walk on the stones at the water's edge, the pressure from your body weight makes the stones feel harder and more painful on your feet. However, as you walk into deeper water, your body becomes buoyant and the water helps support your weight, reducing the pressure on the stones and making them feel less painful to walk on.
A water strider can effectively walk on water due to its long, thin legs and the surface tension of the water. The water strider's legs are covered in tiny hairs that help distribute its weight and prevent it from breaking the water's surface tension. This allows the water strider to stay on top of the water and move quickly across its surface.
It is easier to walk through air than through water because air is less dense than water, resulting in less resistance and making movement easier. In water, the increased density creates more drag, making it harder to move through. Additionally, water has a higher viscosity compared to air, further increasing resistance.
One example of a bug that can walk on water is the water strider. Water striders have long, thin legs that help them distribute their weight and create surface tension on the water, allowing them to glide and walk on the surface without sinking.
Bugs can walk on water due to a phenomenon called surface tension. The surface tension of water allows certain insects, like water striders, to distribute their weight evenly on the water's surface, enabling them to walk on it without sinking.
Most of the time, meal worms walk forwards, but sometimes they walk backwards. They often do this when they dislike something. For example, when blown on with a straw, the meal worm will walk backwards because it dislikes being blown on. So, in simpler words, they walk backwards sometimes because of fear.
Yes, chickens can and do move backwards. When they scratch the ground for food they move backwards to see what they have uncovered.
Members of the kangaroo family cannot walk backwards. This includes the larger kangaroos, wallabies, wallaroos, quokkas, pademelons and so on. On land, their legs are unable to move independently of each other, and this is necessary for walking backwards.Emus are also said to be unable to walk backwards. This is said to be because of the way the joints in their legs are structured. However, emus have not been proven to be unable to walk backwards.
water animalsAll of them that have legs. i think he/she was asking on water like floating!
no it is physically impossible for a snake to go backwards unless it is being pulled by a force from its tail. you can say what you want ill send you a video of my retic going backwards
Members of the kangaroo family cannot walk backwards. This includes the larger kangaroos, wallabies, wallaroos, quokkas, pademelons and so on. On land, their legs are unable to move independently of each other, and this is necessary for walking backwards.
Dogs have the ability to move in a variety of ways. They can jump. walk on hind legs, run, walk backwards, and roll over.
Yes ants can walk backwards but most of them do not.
yes. they can. they wont just do it though. they will only do it if you were to scare them. they would step backwards in suprise.
Many birds can walk backwards. Parrots, ostriches, doves and pigeons are just some birds which are able to walk backwards.
In the chat box, type in /moonwalk your character will walk backwards instead of foward, but you must log out to undo it.
Yes almost every animal can, except for a few, like the kangaroo cannot move backwards at all. The humming bird is known to be the only bird that can fly in reverse. The stick insect can also walk forwards and backwards. Hope this helps. :)