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netineya [11]
3 years ago
10

Jared made a study chart about heat, temperature, kinetic energy, and thermal energy. A chart with 2 columns and 5 rows. The fir

st column is labeled term with entries heat, temperature, kinetic energy, thermal energy. The second column is labeled description with entries part of internal energy that can be transferred, average kinetic energy of particles, energy of motion, energy that flows due to temperature differences. Which change would correct the error in his chart? Add "potential energy" to the description of temperature. Switch the term "heat" with the term "thermal energy." Change kinetic energy description from "energy of motion" to "stored energy."
Physics
2 answers:
avanturin [10]3 years ago
8 0

Answer:

Switch the term “heat” with the term “thermal energy.”

Explanation:

if this helped leave a thank you and go follow me

Maurinko [17]3 years ago
7 0

Answer:

Switch the term "heat" with the term "thermal energy."

Explanation:

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Green light (λ = 518 nm) strikes a single slit at normal incidence. What width slit will produce a central maximum that is 3.00
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Answer:

6.9066 × 10⁻⁵ m

Explanation:

For constructive interference, the expression is:

d\times sin\theta=m\times \lambda

Where, m = 1, 2, .....

d is the distance between the slits.

The formula can be written as:

sin\theta=\frac {\lambda}{d}\times m ....1

The location of the bright fringe is determined by :

y=L\times tan\theta

Where, L is the distance between the slit and the screen.

For small angle , sin\theta=tan\theta

So,  

Formula becomes:

y=L\times sin\theta

Using 1, we get:

y=L\times \frac {\lambda}{d}\times m

Thus, the distance between the central maximum is 3.00 cm

First bright fringe , m = 1 occur at 3.00 / 2 = 1.50 cm

Since,

1 cm = 0.01 m

y = 0.0150 m

Given L = 2.00 m

λ = 518 nm

Since, 1 nm = 10⁻⁹ m

So,

λ = 518 × 10⁻⁹ m

Applying the formula as:

0.0150\ m=2.00\ m\times \frac {518\times 10^{-9}\ m}{d}\times 1

<u>⇒ d, distance between the slits = 6.9066 × 10⁻⁵ m</u>

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