When the burner on a hot air balloon is turned on the air inside the balloon is heated making it less dense. This will cause the balloon to be more buoyant and climb.
The size of the balloon in a hot air balloon is crucial because it determines the amount of hot air it can hold, which in turn affects its ability to lift the basket and passengers. A larger balloon can hold more hot air and generate more lift, while a smaller balloon will have less lift capacity. Finding the right balance in size is essential for the balloon to safely and effectively carry its load.
I presume you mean without an airborne heater. The answer is, there is no fixed time! It could range from a few minutes to the best part of a day. It all depends on the rate the balloon loses heat, which in turn depends on the size of the balloon, the weight of the balloon, the insulation and porosity properties of the balloon fabric, and the amount of solar heating, if any, that it receives.
Going up!Hot air is actually less dense than cold air. So, in turn the hot air rises causing the balloon to float up.Because hot air has a lower density than cold air, causing hot air to rise. When the hot air is trapped in a balloon, the push of the rising air causes the balloon to float.
I would say it is a 180. on a clock if the hand is on 12 half a turn would be six. a full turn is 360,so half is 180....i think thats what you mean.
In the Northern Hemisphere, a high pressure system typically rotates in a clockwise direction due to the Coriolis effect, which is the deflection of air currents caused by the Earth's rotation. In the Southern Hemisphere, it would rotate in a counterclockwise direction.
It all depends on the rate the balloon loses heat, which in turn depends on the size of the balloon, the weight of the balloon, the insulation and porosity properties of the balloon fabric, and the amount of solar heating, if any, that it receives. THough, when the air heats the molecules are literally expanding and thus filling the vacancy of the balloon! This is due to the effect of physical conditions that molecules undergo.
To make the balloon descend gradually, the balloonist can release some hot air from the envelope by opening the top valve. This will allow the balloon to cool down slightly and start descending. Adjusting the burner flame to produce less heat can also help with a gradual descent.
Balloonists can control the descent of a hot air balloon by releasing some hot air to cool the temperature inside the balloon. This decreases the buoyancy and allows the balloon to descend slowly. Additionally, the pilot can use different wind currents at different altitudes to control the descent rate.
The on button
To turn off a Bunsen burner, first close the air hole at the base of the burner by turning the metal collar clockwise until it's fully closed. Then turn the gas knob on the burner clockwise until it stops to shut off the gas supply. Let the burner cool down before handling it.
yes it would, because when the opponent attacked, it was his turn and the effect carries on until the end of the next turn which would then be your turn. For e.g, if your opponent activated the effect then the effect would end at the end of your end phase. If you activated the effect, then it would end at the end of your opponents end phase.
You take a match, light it up and turn the knob on the side of the burner.
When you leave the gas cock open when you turn off the burner valve, and someone moves the burner to another gas port, there would be a serious gas leak until you turned off the gas at the gas cock.
You take a match, light it up and turn the knob on the side of the burner.
Putting a water balloon over fire would cause the balloon to burst due to the intense heat. The water inside the balloon would quickly turn to steam, increasing the pressure until the balloon can no longer contain it. This could lead to a small explosion.
An example of volume and pressure of an object would be a balloon. When you blow air into a balloon, you are increasing its volume which in turn increases the pressure inside the balloon. If you release the air from the balloon, the volume decreases and the pressure decreases as well.
No, you wont turn into a balloon, But the gas will find a way out and just go out the other end.