Lab Questions: 1. Complete the following nuclear equations: 234 U 234 Np + 92 93 214...
12. For the following nuclear reactions, write and balance the nuclear equation for each. Then identify [15 pt] each the type of nuclear reaction. a) K (z 19, A 40)Ar (z -18, A 40)? c) U(z 92, A 238) Th (z -90, A 234)
(7) The diagram below shows a chart of nuclides (isotopes of elements) in the radioactive decay series of U-238 to Pb-206 There are 14 nuclear reactions in this series. Write and balance each one: 128 130 132 134 136 138 140 142 144 146 124 126 Ura 34 92 ? emitter ? 230 234 90 emitter a stable nucleus 226 86 210 214 218 84 210 Number of neutrons
Question 3 Complete the following nuclear equation: 224 Th 90 4 He + ? 2 О 220 Th 90 220 U 92 20 Ra 88 228 U 92
) Write and complete the following reactions using the isotope 23892 U 238 U A) Alpha decay → 234 + 4 He sure how to do this are B) Nuclear Fission producing 2 neutrons and the isotope 12050 Sn. What is the other isoptope produced? 90 Tht te . I wasn't
Complete the following nuclear fission equations
Part 1 (1point) 2351 Part 2 (1point) 235TT1 92 90 5735 Part3 (1point) +20 Uton 92 54
1. Complete the following nuclear reactions: (a) 150 + 150 → He + (b) 299 + 58 Fe→ 266 Mt + (c) 208 Pb+ Ni → +6 in 2. Thorium-223 is an alpha emitter. Write an equation for this nuclear reaction.
Pitcher 1
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1. Complete and balance the following equations for nuclear reactions that are used in particle accelerators to make elements beyond uranium: (a) He + 25. Es ? +2.n (b) 249CF +? 187 Lr + 2n (c) 235 U + C Cf + ?
Nuclear Reactions 1. Complete these nuclear equations. Indicate the symbol, the mass number, and the atomic number 13 27Al +,H→ 22Mg+ 12 2. Fill in the missing particle and establish a type of radioactive decay (alpha, beta, gamma). Twe 28Ni + Ra 204 Pb 3. Balance the following nuclear equations. Indicate if it is a fusion or fission reaction. +3 n 56 140 54 + o n
9. What mass of Mg (AM: 24.3) ia formed by passing a cunrent of 45 A through a moben MgChy for 4 50 days?-96485 C/mol e) the balanced half-cell reaction 10. Electrolysis of 11. Calculate the bieding energy in k/mol for He-3.(c 2.998x10 ms. Nuclear mass: He 3 3.01493 p 1.00728, n 1.00867 12. For the folowing nuclear reactions, write and balance the nuclear equation for each. Then identity 15 pt) each the type of nuclear reaction H(z. 1, A....