ANSWER:
Angular displacement is analogous to distance.
Angular velocity is analogous to velocity.
EXPLANATION:
FOR ANGULAR DISPLACEMENT AND DISTANCE
Angular displacement = theta
theta = s/r
s = linear dispalcement/distance
r= radius.
so ,
linear displacement/distance s = theta * r.
FOR ANGULAR VELOCITY AND VELOCITY
Angular velocity = w
w = v/r
v = velocity
r = radius
so,
velocity v = w * r.
The affinity of hemoglobin for oxygen is <u>increased</u> as the partial pressure of oxygen is raised.
Hemoglobin is the most vital constituent of red blood cells.
It is a kind of protein found in red blood cells that transfers oxygen to all parts of your body.
Hemoglobin is made up of proteins called 'heme' to which oxygen molecules become attached and travel throughout the body.
The blood carrying oxygen is called oxygenated blood and when it reaches the lungs, oxygen molecules detach and brings carbon dioxide along to remove it from the body through respiration.
If you need to learn more about hemoglobin click here:
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The object is initially at temperature of 70 ºF . When it is moved into the room at 90 º F, the temperature of the object is lower than the temperature of the surroundings, so the air in the room starts to release heat to the object, until they both (the room and the object) will reach thermal equilibrium. After thermal equilibrium is reached, the temperatures of the room and the object will be equal, at some value between 70 ºF and 90 º F.
Answer:
Explanation:
We shall apply newton's law equation valid for rotational motion .
ωt = ω₀ + α t where ωt is angular velocity after time t , ω₀ is angular velocity at t= 0 and α is angular acceleration
145 = 0 + α x 5.8
α = 25 rad / s²
B )
θ = ω₀ t + 1/2 α t²
= 0 + .5 x 25 x 5.8 x 5.8
= 420.5 rad .