Focus on the second nuclear equation shown below (vanadium on the left side of the arrow, titanium and a blank on the right). To balance the bottom numbers (total electric charge) on both sides of the arrow, the charge of the blank must be Symbol(s) Representation Description Nuclear Equation fill in the gaps Name (High-energy) helium nuclei consisting of two protons and two neutrons "V→Cr+B Ge->Ga+e* Alpha particle He or a V→Ti + Beta particle fe or 9B (High-energy) electrons "C"N +
Focus on the second nuclear equation shown below (vanadium on the left side of the arrow, titanium and a blank on the right). To balance the bottom numbers (total electric charge) on both sides of the arrow, the charge of the blank must be Symbol(s) Representation Description Nuclear Equation fill in the gaps Name (High-energy) helium nuclei consisting of two protons and two neutrons "V→Cr+B Ge->Ga+e* Alpha particle He or a V→Ti + Beta particle fe or 9B (High-energy) electrons "C"N +
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Focus on the second nuclear equation shown below (vanadium on the left side of
the arrow, titanium and a blank on the right). To balance the bottom numbers
(total electric charge) on both sides of the arrow, the charge of the blank must
be
Symbol(s)
Nuclear Equation fill in the gaps
Name
Representation
Description
S'v→ Cr+B "Ge Ga+e*
70
He or fa
(High-energy) helium nuclei consisting of two protons
and two neutrons
Alpha particle
24
fe or B
V→Ti+
"C→"N +
Beta particle
(High-energy) electrons
fe or B
Particles with the same mass as an electron but with
1 unit of positive charge
Positron
105
105
50 Sn +
92
IH or tp
Proton
Nuciei of hydrogen atoms
2Th Th+y 20 Po Pb+ a
234
Particles with a mass approximately equal to
that of a proton but with no charge
Neutron
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