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An Electron Is Released from Rest at a Distance Of 9.00

question 86

Multiple Choice

An electron is released from rest at a distance of 9.00 cm9.00 \mathrm {~cm} from a fixed proton. How fast will the electron be moving when it is 3.00 cm3.00 \mathrm {~cm} from the proton? (k=1/4πε0=8.99×109 Nm2/C2,e=1.60\left( k = 1 / 4 \pi \varepsilon _ { 0 } = 8.99 \times 10 ^ { 9 } \mathrm {~N} \cdot \mathrm { m } ^ { 2 } / \mathrm { C } ^ { 2 } , e = 1.60 \right. ×1019C,melectron =9.11×1031 kg,mproton =1.67×1027 kg) \left. \times 10 ^ { - 19 } \mathrm { C } , m _ { \text {electron } } = 9.11 \times 10 ^ { - 31 } \mathrm {~kg} , m _ { \text {proton } } = 1.67 \times 10 ^ { - 27 } \mathrm {~kg} \right)


Definitions:

(Z)-4-Bromo-3-Heptene

A type of alkene with a bromo substituent positioned on the fourth carbon atom in a Z (cis) configuration relative to a double bond.

IUPAC Name

The systematic naming convention for chemical substances designed by the International Union of Pure and Applied Chemistry.

Alkene

Organic compounds that contain at least one carbon-to-carbon double bond, characterized by the formula CnH2n.

Alkene

A hydrocarbon that contains at least one carbon-carbon double bond, characterized by the general formula CnH2n.

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