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Listen to native speakers pronounce “airflow” in real conversational contexts with synchronized timestamps and subtitles.
You know, 'cause that's how we spin it up.But as the airflow starts, it's pointing itself in the direction that minimizes drag.
But as the airflow starts, it's pointing itself in the direction that minimizes drag.
We can model airflow over the wings to reduce the sonic boom.
We actually see the airflow starting to decrease and then we see the masseter activity increase.
So this is the airflow coming up through that fire, and the second row of air holes combusting all of those producer gases, the gases that are given off
There was airflow systems.
That means it stays pointed directly into the airflow, which minimizes drag.
So the ball is trying to process around the airflow direction, but that direction is constantly changing.
can see how much disturbance there is in the airflow and how much the riders towards the back of the tunnel, towards the back of the group,
Humidity, the airflow, all these things have to take place at the right time.
Some areas are going to have a lot more airflow than others.
which actually turns on the turns on the main of airflow that will provide the suction you might say for the solids and
The total drag force on the ball is proportional to the area presented to the airflow and the drag coefficient.
And the reverse sear technique will give you even color from the indirect convection airflow.
If it's constricted at all-- you want to make sure the airflow happens around it.
by the lips, and when you block off airflow through the mouth, it can come out through the nose.
So, obviously, you wanna minimize the amount of airflow that you're getting around your ice.
With the ball being thrown at 50 to 60 miles per hour, most of the airflow over the ball is due to its own motion,
In other sports, surfaces are engineered down to the smallest detail to control airflow.
And you can see at 5 meters, well, the airflow is significantly slower, hitting the rider in front.
They also have tattered feathers on the trailing edge of the wing span in order to disrupt airflow, and to create a nearly,
- First, we're gonna simulate one of Brady's throws where the ball travels straight into the airflow with his classic spiral.
So this cycle is going to repeat, but since this is happening continuously, the nose traces out a circle around the direction of airflow.
For example, by the time the ball has reached the bottom of the procession, the airflow has moved down too.
That controls this unidirectional airflow.
When we cook on a grill, you have air temp, which is the convection airflow.
That's air coming straight in to fuel the coal, and the coal is sitting on top of a metal grate just so you can get airflow.
Well you have airflow doing that.
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