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Phoenix [80]
4 years ago
9

What feature of a DMM allows you to connect the test probes in the circuit, remove the probes, and then read the measured value

on the display?
A. Diode tester
B. Minimum/maximum feature
C. Delta feature
D. Touch/hold feature


Which direction do electrons travel?

A. They don't move; they simply exchange charge.
B. In either direction, depending on the circuit
C. From positive to negative
D. From negative to positive


A circuit contains a 40 ohm resistor and a 60 ohms resistor connected in parallel. If you test this circuit with a DMM, you should read a total resistance value of

A. 40 ohms.
B. 24 ohms.
C. 2400 ohms.
D. 2.5 ohms
Physics
1 answer:
Elena L [17]4 years ago
4 0

B. 24 ohms. D. Touch/hold feature

D. From negative to positive =negative charges

B. 24 ohms.

in parallel, combined resistance is less than the lowest resistance

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Use the data below to compute the gravitational force that the Sun exerts on Jupiter. (Use G = 6.67 x 10^-11 N · m²/kg².)
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The gravitational force on two objects can be determined by the following equation:

F=G\frac{m_{1}m_{2}}{r^2}

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Big Ben, a large artifact in England, has a mass of 1x10^8 kilograms and the Empire State Building 1x10^9 kilograms. The distanc
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Explanation:

The question relates to the force of gravity experienced between two bodies

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The mass of the Empire State Building, M₂ = 1 × 10⁹ kg

The distance between the two Big Ben and the Empire State Building, r = 5,000,000 meters

By Newton's Law of gravitation, we have;

F=G \times \dfrac{M_{1} \times M_{2}}{r^{2}}

Where;

F = The force exerted by Big Ben on the Empire State Building and vice versa

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M₁, M₂, and r are the given parameters

By plugging in the values of the parameters and the constant into the equation for Newton's Law of gravitation, we have;

F=6.67430 \times 10^{-11} \times \dfrac{1 \times 10^8 \times 1 \times 10^9}{(5,000,000)^{2}} = 2.66972 \times 10^{-7}

The force, 'F', exerted by Big Ben on the Empire State Building is F = 2.66972 × 10⁻⁷ N.

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