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motikmotik
3 years ago
7

What are the features of general adaptation syndrome? help Guys!!

Physics
2 answers:
Romashka-Z-Leto [24]3 years ago
4 0
Features or stages? Because according to Hans Selye, there are three stages of GAS (general adaption syndrome)

1. The alarm stage
2. The resistance stage
3. The exhaustion stage
just olya [345]3 years ago
4 0

ON EDGEN: The three steps in the general adaptation syndrome are alarm, resistance, and exhaustion. Alarm is the fight-or-flight response. Your hormones surge, breathing becomes rapid and shallow, glucose is released, your heart rate increases, and your pupils dilate. The second part is resistance, which includes either fighting, where a stressor is taken head on, or flight, where a stressor is avoided. It includes how your body uses stored energy, hormones, minerals, and glucose to react. The final stage is exhaustion, also known as burn out. After prolonged stress, exhaustion kicks in and the ability to manage stress becomes low. At this point, the system of the body can become compromised due to prolonged exposure to the hormones involved with stress.

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A solid uniform sphere and a thin-walled, hollow sphere have the same mass M and radius R. If they roll without slipping up a ra
elixir [45]

Answer:Hollow sphere

Explanation:

Given

same mass for solid and hollow sphere

same v_{cm} before they start up incline

Moment of inertia of solid Sphere

I_1=\frac{2}{5}Mr^2

Moment of inertia of hollow sphere

I_2=\frac{2}{3}Mr^2

Conserving Energy at bottom and top point for solid sphere

kinetic energy +Rotational Energy=Potential energy

\frac{1}{2}Mv_{cm}^2+\frac{1}{2}I\omega ^2=mgh_1

for pure rolling v_{cm}=\omega r

\frac{1}{2}Mv_{cm}^2+\frac{1}{2}\times \frac{2}{5}Mr^2=Mgh_1

\frac{7}{10}Mv_{cm}^2=Mgh_1

h_1=\frac{7v_{cm}^2}{10g}

For hollow sphere

\frac{1}{2}Mv_{cm}^2+\frac{1}{2}\times \frac{2}{3}Mr^2=Mgh_2

h_2=\frac{5v_{cm}^2}{6g}

therefore height gained by hollow sphere is more

6 0
4 years ago
Which of the following are common sorces of radio waves ?
alexgriva [62]
It would help if there are some options, but some common sources:
Televisions
Microwave Ovens
Cell Phones
Satellites
Wired Computers
CD players
etc.
5 0
3 years ago
A hiker walks due east for a distance of 25.5 km from her base camp. On the second day, she walks 41.0 km northwest till she dis
GarryVolchara [31]

Resultant displacement is 29.2 km at 83.1^{\circ} north of west

Explanation:

To solve the problem, we have to use the rules of vector addition, resolving first each vector along the x- and y- direction.

Taking east as positive x direction and north as positive y- direction, we have:

- First displacement is 25.5 km east, therefore its components are

A_x = 25.5 km\\A_y = 0 km

- Second displacement is 41.0 km northwest, so its components are

B_x = (41.0)cos(135^{\circ})=-29.0 km\\B_y =(41.0)sin(135^{\circ})=29.0 km

So, the components of the resultant displacement are

R_x=A_x+B_x=25.5+(-29.0)=-3.5 km\\R_y=A_y+B_y=0+29.0=29.0 km

And so, the magnitude is calculated using Pythagorean's theorem:

R=\sqrt{R_x^2+R_y^2}=\sqrt{(-3.5)^2+(29.0)^2}=29.2 km

And the direction is given by

\theta=tan^{-1}(\frac{R_y}{|R_x|})=tan^{-1}(\frac{29.0}{3.5})=83.1^{\circ}

Where the angle is measured from the west direction, since Rx is negative.

Learn more about displacement:

brainly.com/question/3969582

#LearnwithBrainly

3 0
3 years ago
Describe the movement of a compass needle when a magnet is placed in proximity to it, then moved away again.
Schach [20]
When the magnet is near, the compass turns and points to it. When the magnet is moved away, the compass turns back to point north and south.
4 0
3 years ago
The distance covered by a car at a time, t is given by x = 20t + 6t4, calculate
Anni [7]

Answer:

(i) v = 44 m/s

(ii) a = 72 m/s^2

Explanation:

You have the following equation for the potion of a car:

x=20t+6t^4

(i) The instantaneous velocity is the derivative of x in time:

\frac{dx}{dt}=20+(6)(4)t^3=20+24t^3

for t = 1 is:

v(t=1)=\frac{dx}{dt}=20+24(1)^3=44m/s

(ii) The instantaneous acceleration is the derivative of the velocity:

\frac{dv}{dt}=24(3)t^2=72t^2

for t = 1

a(t=1)=\frac{dv}{dt}=72(1)^2=72m/s^2

8 0
4 years ago
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