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ArbitrLikvidat [17]
4 years ago
9

What period of time did mammoths and saber tooth’s die out

Physics
2 answers:
Hunter-Best [27]4 years ago
7 0

Answer:

end of the late pleistocene, about 12,000 years ago. they died during the die-off called the quaternary extinction

Explanation:

svlad2 [7]4 years ago
4 0

Answer:

Explanation:

56billion years ago

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A discus thrower (Fig. P4.27, page 97) accelerates a discus from rest to a speed of 25.0 m/s by whirling it through 1.25 rev. As
Aleksandr-060686 [28]

The time interval needed for the disk to rev from leave to 25.0 m/s

= 0.57 s

<h3>What is the time interval?</h3>
  • A larger period of time can be split up into multiple shorter, equal-length segments.
  • These are referred to as time periods. Consider the scenario where you wished to gauge a car's speed over an hour-long trip. You could break up an hour into ten-minute segments.
  • In Hz, frequency is defined as the number of cycles per second. Simply divide 1 by the frequency to determine the time interval for a known frequency (e.g., a frequency of 100 Hz has a time interval of 1/(100 Hz) = 0.01 seconds; 500 Hz has a time interval of 1/(500Hz) = 0.002 seconds, etc.).

Given:

vo = 0

v = 25.4 m/s

r = 0.95 m

n = 1.21 rev

A.

r*ω = v

ω = v/r

= 25.4/.95

= 26.74 rad/s

B.

θ = 2πn

= 2π × (1.21)

= 7.6 m

Using equation of motion,

ωf^2 = ωi^2 + 2αθ

(26.74)^2 = 2 × α × (7.6)

α = 715.03/15.2

= 47.04 rad/s^2

C.

Using equation of motion,

θ = ωi*t + 1/2*α*t^2

θ = 0 + 1/2*α*t^2

7.6 = 47.04/2 × t^2

= sqrt(0.323)

= 0.57 s

Therefore the correct answer is 0.57 s

To learn more about time interval, refer to:

brainly.com/question/479532

#SPJ4

6 0
1 year ago
. Two identical blocks, each of mass M, are connected by a massless string over a pulley of radius R and moment of inertia I. Th
Dima020 [189]

The angular acceleration of a pulley is described under the equation,

\theta = (0.5) \alpha t^2

So things clearing,

\alpha = \frac{ 2\theta}{t^2}

b) For point B it is necessary to make a sum of Forces,

\sum F=0

In this way,

Mg - T_1 = Ma

T_1 = Mg - Ma (1)

For block 2, we have the following relationship,

T_2 = Ma (2)

So,

T_1 - T_2 = I \frac{a}{R} (3)

Substituting (1) and (2) in (3)

Mg - Ma - Ma = I \frac{a}{R}

So,

a = \frac{2\theta R}{t^2}

<em>**Note that</em> \alpha R = a

c) For this point we need to use (1)

T1 = Mg - Ma = Mg - \frac{M^2\theta R}{t^2}

using (2)

RT_2=RT_1-I\alpha

T_2= \frac{RM(g-\frac{2\theta R}{t^2})-I\frac{2\theta}{t^2}}{R}

T_2=\frac{RMgt^2-2R^2M\theta-2t\theta}{Rt^2}

5 0
3 years ago
A light body and a heavy body have the
Elena-2011 [213]

Answer:

The heavy body

Explanation:

The heavy body because it's heavier and the heavier something is the more kinetic energy it has.

Pretty sure this is correct

Hope it helps

7 0
3 years ago
Read 2 more answers
A light wave in space is described by the general function: u(r, t) = 1 (2π) 3/2 Z dk A(k) e i(k·r−ωt) . (1) (a) Find the partic
babunello [35]

Answer:

hello your question is incomplete attached below is the complete question

Answer : attached below

Explanation:

A) finding the particular solution at t = 0

attached below is the detailed solution of the particular solution knowing that t = 0

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3 years ago
I need help with this. -3x-7=18​
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the answer is

-8.33333333

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3 years ago
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