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UNO [17]
4 years ago
15

Testable hypotheses that lead to experiments usually describe a relationship between two measurable variables. a measurable vari

able and a subjective opinion. more than two subjective opinions. more than two measurable variables.
Physics
1 answer:
ivann1987 [24]4 years ago
6 0
I believe the correct answer from the choices listed above is the first option. Testable hypotheses that lead to experiments usually describe a relationship between two measurable variables. <span>A </span>testable hypothesis<span> is a form of </span>hypothesis<span> that can either be supported or else falsified from data or experience. </span>
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A pitcher throws a 0.144-kg baseball toward the batter so that it crosses home plate horizontally and has a speed of 42 m/s just
Solnce55 [7]

(a) 12.8 kg m/s

The impulse delivered by the bat on the baseball is equal to the change in momentum of the baseball:

I=\Delta p = m(v-u)

where we have

m = 0.144 kg is the mass of the ball

v = -47 m/s is the final velocity of the ball

u = 42 m/s is the initial velocity of the ball

Substituting into the equation, we find

I=(0.144 kg)(-47 m/s-(42 m/s))=-12.8 kg m/s

And since we are interested in the magnitude only,

I=12.8 kg m/s

(b) 2.78 kN

The impulse exerted on the ball is also equal to the product between the average force and the contact time:

I=F\Delta t

where

F is the average force exerted on the ball

\Delta t=0.0046 s is the contact time

Solving the formula for F, we find

F=\frac{I}{\Delta t}=\frac{12.8 kg m/s}{0.0046 s}=2783 N = 2.78 kN

(c) The force exerted on the ball is much larger (1988 times more) than the weigth of the ball

The weight of the ball is given by

W=mg

where

m = 0.144 kg is the mass of the ball

g = 9.8 m/s^2 is the acceleration due to gravity

Solving the equation for W, we find

W=(0.144 kg)(9.8 m/s^2)=1.4 N

So as we see, the force exerted on the ball (2783 N) is almost 2000 times larger than the weight of the ball (1.4 N):

\frac{F}{W}=\frac{2783 N}{1.4 N}=1988

8 0
3 years ago
A 0.676 m long section of cable carrying current to a car starter motor makes an angle of 57.7º with the Earth’s 5.29 x 10^−5T f
Studentka2010 [4]

Answer:

The current in the wire under the influence of the force is 216.033 A

Solution:

According to the question:

Length of the wire, l = 0.676 m

\theta = 57.7^{\circ}

Magnetic field of the Earth, B_{E} = 5.29\times 10^{- 5} T

Forces experienced by the wire, F_{m} = 6.53\times 10^{-3} N

Also, we know that the force in a magnetic field is given by:

F_{m} = IB_{E}lsin\theta

I = \frac{F_{m}}{B_{E}lsin\theta}

I = \frac{6.53\times 10^{-3}}{5.29\times 10^{- 5}\times 0.676sin57.7^{\circ}

I = 216.033 A

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To which series would the emitted light belong if an electron in a hydrogen atom underwent a transition from level n = 5 to leve
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